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<front>
<journal-meta>
<journal-id journal-id-type="publisher-id">Front. Plant Sci.</journal-id>
<journal-title>Frontiers in Plant Science</journal-title>
<abbrev-journal-title abbrev-type="pubmed">Front. Plant Sci.</abbrev-journal-title>
<issn pub-type="epub">1664-462X</issn>
<publisher>
<publisher-name>Frontiers Media S.A.</publisher-name>
</publisher>
</journal-meta>
<article-meta>
<article-id pub-id-type="doi">10.3389/fpls.2016.01440</article-id>
<article-categories>
<subj-group subj-group-type="heading">
<subject>Plant Science</subject>
<subj-group>
<subject>Original Research</subject>
</subj-group>
</subj-group>
</article-categories>
<title-group>
<article-title>Growth and Productivity Response of Hybrid Rice to Application of Animal Manures, Plant Residues and Phosphorus</article-title>
</title-group>
<contrib-group>
<contrib contrib-type="author" corresp="yes">
<name><surname>Amanullah</surname></name>
<xref ref-type="aff" rid="aff1"><sup>1</sup></xref>
<xref ref-type="author-notes" rid="fn001"><sup>&#x0002A;</sup></xref>
<uri xlink:href="http://loop.frontiersin.org/people/74493/overview"/>
</contrib>
<contrib contrib-type="author">
<name><surname>Khan</surname> <given-names>Shams-ul-Tamraiz</given-names></name>
<xref ref-type="aff" rid="aff1"><sup>1</sup></xref>
</contrib>
<contrib contrib-type="author">
<name><surname>Iqbal</surname> <given-names>Asif</given-names></name>
<xref ref-type="aff" rid="aff1"><sup>1</sup></xref>
</contrib>
<contrib contrib-type="author">
<name><surname>Fahad</surname> <given-names>Shah</given-names></name>
<xref ref-type="aff" rid="aff2"><sup>2</sup></xref>
<uri xlink:href="http://loop.frontiersin.org/people/350386/overview"/>
</contrib>
</contrib-group>
<aff id="aff1"><sup>1</sup><institution>Department of Agronomy, University of Agriculture</institution> <country>Peshawar, Pakistan</country></aff>
<aff id="aff2"><sup>2</sup><institution>National Key Laboratory of Crop Genetic Improvement, MOA Key Laboratory of Crop Ecophysiology and Farming System, College of Plant Science and Technology, Huazhong Agricultural University</institution> <country>Wuhan, China</country></aff>
<author-notes>
<fn fn-type="edited-by"><p>Edited by: Travis Idol, Hawaii University, USA</p></fn>
<fn fn-type="edited-by"><p>Reviewed by: Paul John Hunter, University of Warwick, UK; Karl Kunert, University of Pretoria, South Africa</p></fn>
<fn fn-type="corresp" id="fn001"><p>&#x0002A;Correspondence: Amanullah <email>amanullah&#x00040;aup.edu.pk</email></p></fn>
<fn fn-type="other" id="fn002"><p>This article was submitted to Agroecology and Land Use Systems, a section of the journal Frontiers in Plant Science</p></fn>
</author-notes>
<pub-date pub-type="epub">
<day>18</day>
<month>10</month>
<year>2016</year>
</pub-date>
<pub-date pub-type="collection">
<year>2016</year>
</pub-date>
<volume>7</volume>
<elocation-id>1440</elocation-id>
<history>
<date date-type="received">
<day>10</day>
<month>05</month>
<year>2016</year>
</date>
<date date-type="accepted">
<day>09</day>
<month>09</month>
<year>2016</year>
</date>
</history>
<permissions>
<copyright-statement>Copyright &#x000A9; 2016 Amanullah, Khan, Iqbal and Fahad.</copyright-statement>
<copyright-year>2016</copyright-year>
<copyright-holder>Amanullah, Khan, Iqbal and Fahad</copyright-holder>
<license xlink:href="http://creativecommons.org/licenses/by/4.0/"><p>This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.</p></license>
</permissions>
<abstract>
<p>The objective of this research was to evaluate the impact of organic sources (animal manures vs. plant residues at the rate of 10 t ha<sup>&#x02212;1</sup> each) on the productivity of hybrid rice (<italic>Oryza sativa</italic> L.) production under different levels of phosphorus (0, 30, 60, and 90 kg P ha<sup>&#x02212;1</sup>) fertilization. Two separate field experiments were conducted. In experiment (1), impact of three animal manures sources (cattle, sheep, and poultry manures) and P levels were studied along with one control plot (no animal manure and P applied) was investigated. In experiment (2), three plant residues sources (peach leaves, garlic residues, and wheat straw) and P levels were studied along with one control plot (no plant residues and P applied). Both the experiments were carried out on small land farmer field at District Swabi, Khyber Pakhtunkhwa Province (Northwest Pakistan) during summer 2015. The results revealed that in both experiments the control plot had significantly (<italic>p</italic> &#x02264; 0.05) less productivity than the average of all treated plots with organic sources and P level. The increase in P levels in both experiments (animal manure vs. plant residues) resulted in higher rice productivity (90 &#x0003E; 60 &#x0003E; 30 &#x0003E; 0 kg P ha<sup>&#x02212;1</sup>). In the experiment under animal manures, application of poultry manure increased rice productivity as compared with sheep and cattle manures (poultry &#x0003E; sheep &#x0003E; cattle manures). In the experiment under plant residues, application of peach leaves or garlic residues had higher rice productivity than wheat straw (peach leaves &#x0003D; garlic residues &#x0003E; wheat straw). On average, rice grown under animal manures produced about 20% higher grain yield than rice grown under crop residues. We conclude from this study that application of 90 kg P ha<sup>&#x02212;1</sup> along with combined application of animal manures, especially poultry manure increases rice productivity. Also, the use of either garlic residues or peach leaves, never applied before as organic manures, can increase crop productivity and will help in degraded soil for sustainable soil management.</p>
</abstract>
<kwd-group>
<kwd>animal manures</kwd>
<kwd>plant residues</kwd>
<kwd>phosphorus levels</kwd>
<kwd>hybrid rice</kwd>
<kwd>growth</kwd>
<kwd>yield components</kwd>
<kwd>grain yield</kwd>
<kwd>Northwest Pakistan</kwd>
</kwd-group>
<counts>
<fig-count count="0"/>
<table-count count="8"/>
<equation-count count="0"/>
<ref-count count="89"/>
<page-count count="10"/>
<word-count count="7796"/>
</counts>
</article-meta>
</front>
<body>
<sec sec-type="intro" id="s1">
<title>Introduction</title>
<p>Rice (<italic>Oryza sativa</italic> L.) is one of the most important staple foods for nearly half of the world&#x00027;s population, most of them living in developing countries. Rice provides 50&#x02013;60% of the calories to 2.7 billion people (Belder et al., <xref ref-type="bibr" rid="B30">2004</xref>; Metwally et al., <xref ref-type="bibr" rid="B63">2011</xref>). Rice occupies about 11% of world&#x00027;s agricultural land and ranks second in terms of cultivated area (Tumrani et al., <xref ref-type="bibr" rid="B83">2015</xref>). Rice is the second most widely consumed cereal in the world next to wheat. It is the staple food for two thirds of the world&#x00027;s population. Rice protein, though small in amount, is of high nutritional value (Chaudhary and Tran, <xref ref-type="bibr" rid="B34">2001</xref>). In Pakistan, rice is the third largest crop after wheat (<italic>Triticum aestivum</italic> L.) and cotton (<italic>Gossypium hirsutum</italic> L.) on the basis of cultivated area and ranked second after wheat on production basis. It accounts for 5.9% of value added in agriculture and 1.3% of Pakistan&#x00027;s gross domestic product (Federal Bureau of Statistics, <xref ref-type="bibr" rid="B43">2008&#x02013;2009</xref>). Rice production in Pakistan occupies an area of 2.96 million hectares with a total production of 6.95 million tons and average yield of 2.35 t ha<sup>&#x02212;1</sup> (Federal Bureau of Statistics, <xref ref-type="bibr" rid="B43">2008&#x02013;2009</xref>). The average yield of rice in Pakistan has increased as a result of many research activities by more than 2% per year. This is still far less than other leading rice growing countries (Ito et al., <xref ref-type="bibr" rid="B55">1989</xref>; Amanullah and Hidayatullah, <xref ref-type="bibr" rid="B7">2016</xref>; Amanullah and Inamullah, <xref ref-type="bibr" rid="B10">2016a</xref>).</p>
<p>One major reason for low rice yield in Pakistan is imbalanced nutrient application (Amanullah and Hidayatullah, <xref ref-type="bibr" rid="B7">2016</xref>; Amanullah and Inamullah, <xref ref-type="bibr" rid="B10">2016a</xref>,<xref ref-type="bibr" rid="B11">b</xref>). Integrated use of chemical fertilizers along with organic manure has been widely recommended for sustaining agricultural production in Northwest Pakistan (Amanullah and Inamullah, <xref ref-type="bibr" rid="B9">2015</xref>; Amanullah and Khan, <xref ref-type="bibr" rid="B16">2015</xref>; Amanullah and Khalid, <xref ref-type="bibr" rid="B14">2016</xref>). Improved management practices such as incorporation of crop residue, animal manures along with chemical fertilizers application increase soil organic carbon and improve crop productivity (Six et al., <xref ref-type="bibr" rid="B81">2002</xref>; Vanden et al., <xref ref-type="bibr" rid="B85">2003</xref>; Rakshit et al., <xref ref-type="bibr" rid="B72">2008</xref>; Amanullah and Hidayatullah, <xref ref-type="bibr" rid="B7">2016</xref>; West and Post, <xref ref-type="bibr" rid="B87">2002</xref>). Management of organic manures and chemical fertilizers account for 50&#x02013;60% of the increase in field crop productivity (Dipa, <xref ref-type="bibr" rid="B35">2006</xref>). Studies from different parts of the world have suggested that application of animal manures increase the yield of various crops (Olayinka, <xref ref-type="bibr" rid="B66">1996</xref>; Olayinka et al., <xref ref-type="bibr" rid="B67">1998</xref>; Ismail et al., <xref ref-type="bibr" rid="B54">1990</xref>; Adepetu et al., <xref ref-type="bibr" rid="B1">2005</xref>; Ayoola and Makinde, <xref ref-type="bibr" rid="B24">2008</xref>; Hidayatullah et al., <xref ref-type="bibr" rid="B49">2013</xref>; Iqbal et al., <xref ref-type="bibr" rid="B53">2015</xref>; Amanullah and Khalid, <xref ref-type="bibr" rid="B14">2016</xref>). Animal manure can serve as an important source for improving crop production and restoring essential nutrients depleted due to intensive cropping practices (Obi and Ebo, <xref ref-type="bibr" rid="B65">1995</xref>; Sharpley and Smith, <xref ref-type="bibr" rid="B78">1995</xref>; Bahman and James, <xref ref-type="bibr" rid="B26">1999</xref>; Ano and Agwu, <xref ref-type="bibr" rid="B23">2005</xref>; Materechera, <xref ref-type="bibr" rid="B62">2010</xref>). Incorporation of crop residues also can improve soil fertility and increase crop yield (Singh et al., <xref ref-type="bibr" rid="B80">2000</xref>; Prassad et al., <xref ref-type="bibr" rid="B70">2002</xref>; Yadvinder et al., <xref ref-type="bibr" rid="B88">2005</xref>; Bi et al., <xref ref-type="bibr" rid="B31">2009</xref>; Olk et al., <xref ref-type="bibr" rid="B68">2009</xref>; Kim et al., <xref ref-type="bibr" rid="B57">2011</xref>; Huang et al., <xref ref-type="bibr" rid="B51">2012</xref>). Nutrients from organic manures (animal manures and crop residues) are released more slowly and are stored for a longer time in the soil, thereby ensuring a long residual effect (Sharma et al., <xref ref-type="bibr" rid="B77">1991</xref>; Ge et al., <xref ref-type="bibr" rid="B45">2010</xref>; Hidayatullah et al., <xref ref-type="bibr" rid="B49">2013</xref>; Amanullah and Khalid, <xref ref-type="bibr" rid="B14">2016</xref>). However, application of large quantities of plant residues under anaerobic soil conditions may lead to the accumulation of phytotoxic substances (e.g., reducing substances and organic acids) that can inhibit rice growth and reduce grain yield (Bijay-Singh et al., <xref ref-type="bibr" rid="B32">2008</xref>). Recently, Amanullah and Hidayatullah (<xref ref-type="bibr" rid="B7">2016</xref>) found reduction in hybrid rice productivity with application of wheat straw as compared with animal manures (poultry, cattle, and sheep manures) and plant residues (onion and berseem residues).</p>
<p>Phosphorus is the second most required plant nutrient for field crops. It plays a vital role in several physiological processes of plants (Mandal and Khan, <xref ref-type="bibr" rid="B61">1972</xref>; Singh and Sale, <xref ref-type="bibr" rid="B79">2000</xref>; Chang et al., <xref ref-type="bibr" rid="B33">2007</xref>; Amanullah, <xref ref-type="bibr" rid="B5">2011</xref>; Vahed et al., <xref ref-type="bibr" rid="B84">2012</xref>). It is always inadequate under rice based system in Northwest Pakistan to meet the requirement of rice plants (Amanullah and Inamullah, <xref ref-type="bibr" rid="B10">2016a</xref>,<xref ref-type="bibr" rid="B11">b</xref>). Recent research conducted on different field crops suggested that low organic matter content (Materechera, <xref ref-type="bibr" rid="B62">2010</xref>; Verhulst et al., <xref ref-type="bibr" rid="B86">2011</xref>; Enujeke, <xref ref-type="bibr" rid="B36">2013</xref>; Hidaytaullah and Amanulla, <xref ref-type="bibr" rid="B47">2015</xref>; Iqbal et al., <xref ref-type="bibr" rid="B53">2015</xref>; Amanullah and Hidayatullah, <xref ref-type="bibr" rid="B7">2016</xref>; Amanullah and Khalid, <xref ref-type="bibr" rid="B14">2016</xref>) and low availability of phosphorus (Garg and Bahla, <xref ref-type="bibr" rid="B44">2008</xref>; Alam et al., <xref ref-type="bibr" rid="B3">2009</xref>; Bakhsh et al., <xref ref-type="bibr" rid="B27">2012</xref>; Rasavel and Ravichandran, <xref ref-type="bibr" rid="B74">2013</xref>; Yoseftabar, <xref ref-type="bibr" rid="B89">2013</xref>; Amanullah and Khan, <xref ref-type="bibr" rid="B16">2015</xref>; Amanullah and Inamullah, <xref ref-type="bibr" rid="B10">2016a</xref>,<xref ref-type="bibr" rid="B11">b</xref>; Amanullah and Khalid, <xref ref-type="bibr" rid="B14">2016</xref>) reduce crop productivity all over the world. Integrated use of mineral phosphorus along with animal manures or plant residues can improve rice growth and yield. We designed two field experiments to find out the best combination of inorganic phosphorus fertilization level with locally available sources of animal manures or plant residues for improving growth and yield of hybrid rice.</p>
</sec>
<sec sec-type="materials and methods" id="s2">
<title>Materials and methods</title>
<sec>
<title>Site description</title>
<p>Field experiments were conducted to evaluate the impact of different organic sources, each applied at the rate of 10 t ha<sup>&#x02212;1</sup>, on the growth and yield of rice hybrid (<italic>Oryza sativa</italic> L., Almas) under different levels of phosphorus (0, 30, 60, and 90 kg P ha<sup>&#x02212;1</sup>) fertilization along with one control plot in each experiment (no organic source and no P applied). Two field experiments were conducted in District Swabi Village Marghuz during summer-2015. Marghuz Village is at an altitude of 319 m (Latitude &#x0003D; 34.07, Longitude &#x0003D; 72.53). The village has a population of approximately 25,000, and consists of two parts: Marghuz Yara Khel and Marghuz Aka Khel (Wikipedia.org). District Swabi is situated at a distance of 100 km north-east of Peshawar, the provincial capital of Khyber Pakhtunkhwa. Soil texture is alluvium clay loam, low in organic matter (0.87%), extractable phosphorus (6.57 mg kg<sup>&#x02212;1</sup>), exchangeable potassium (121 mg kg<sup>&#x02212;1</sup>), and alkaline (pH 8.2) and is calcareous in nature (Amanullah et al., <xref ref-type="bibr" rid="B17">2009</xref>). The climate of the Swabi is semiarid where the mean annual rainfall is 300&#x02013;500 mm with 60&#x02013;70% occurring in summer and 30&#x02013;40% in winter (Amanullah et al., <xref ref-type="bibr" rid="B6">2010a</xref>).</p>
</sec>
<sec>
<title>Experimentation</title>
<p>Two field experiments were conducted in a simple randomized complete block design having three replications in each experiment. In the first experiment, the impact of three different animal manures (cattle, sheep, and poultry manures) in combination with three P levels along with one control plot (no animal manure and P applied) was studied (3 &#x000D7; 3 &#x0003D; 9 &#x0002B; 1 &#x0003D; 10 treatments per replication, randomly assigned). In the second experiment, the impact of three different plant residues (peach leaves, garlic residues, and wheat straw) in combination with three P levels along with one control plot (no plant residues and P applied) was studied (3 &#x000D7; 3 &#x0003D; 9 &#x0002B; 1 &#x0003D; 10 treatments per replication, randomly assigned). Details of the statistical analysis are in Table <xref ref-type="table" rid="T1A">1A</xref> for the first experiment and Table <xref ref-type="table" rid="T1B">1B</xref> for the second experiment.</p>
<table-wrap position="float" id="T1A">
<label>Table 1A</label>
<caption><p><bold>Analysis of variance for grain yield (kg ha<sup><bold>&#x02212;1</bold></sup>) of rice hybrid as affected by phosphorus levels and animal manures (experiment one)</bold>.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>Source of variance</bold></th>
<th valign="top" align="center"><bold><italic>DF</italic></bold></th>
<th valign="top" align="center"><bold><italic>SS</italic></bold></th>
<th valign="top" align="center"><bold><italic>MS</italic></bold></th>
<th valign="top" align="center"><bold><italic>F</italic>-Cal</bold></th>
<th valign="top" align="center"><bold>Significance</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Replications</td>
<td valign="top" align="center">2</td>
<td valign="top" align="center">3861.667</td>
<td valign="top" align="center">1930.833</td>
<td valign="top" align="center">0.026362</td>
<td valign="top" align="center">ns</td>
</tr>
<tr>
<td valign="top" align="left">Treatments</td>
<td valign="top" align="center">{9}</td>
<td valign="top" align="center">7,099,270</td>
<td valign="top" align="center">788,807.8</td>
<td valign="top" align="center">10.76989</td>
<td valign="top" align="center"><xref ref-type="table-fn" rid="TN1"><sup>&#x0002A;&#x0002A;&#x0002A;</sup></xref></td>
</tr>
<tr>
<td valign="top" align="left">Phosphorus (P)</td>
<td valign="top" align="center">(2)</td>
<td valign="top" align="center">1,119,289</td>
<td valign="top" align="center">559,644.4</td>
<td valign="top" align="center">7.641038</td>
<td valign="top" align="center"><xref ref-type="table-fn" rid="TN1"><sup>&#x0002A;&#x0002A;</sup></xref></td>
</tr>
<tr>
<td valign="top" align="left">Animal Manures (AM)</td>
<td valign="top" align="center">(2)</td>
<td valign="top" align="center">573,800</td>
<td valign="top" align="center">286,900</td>
<td valign="top" align="center">3.917154</td>
<td valign="top" align="center"><xref ref-type="table-fn" rid="TN1"><sup>&#x0002A;</sup></xref></td>
</tr>
<tr>
<td valign="top" align="left">AM &#x000D7; P</td>
<td valign="top" align="center">(4)</td>
<td valign="top" align="center">206,177.8</td>
<td valign="top" align="center">51,544.44</td>
<td valign="top" align="center">0.703756</td>
<td valign="top" align="center">Ns</td>
</tr>
<tr>
<td valign="top" align="left">Control vs. Rest</td>
<td valign="top" align="center">(1)</td>
<td valign="top" align="center">5,200,003</td>
<td valign="top" align="center">5,200,003</td>
<td valign="top" align="center">70.99761</td>
<td valign="top" align="center"><xref ref-type="table-fn" rid="TN1"><sup>&#x0002A;&#x0002A;&#x0002A;</sup></xref></td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Error-1</td>
<td valign="top" align="center">18</td>
<td valign="top" align="center">1,318,355</td>
<td valign="top" align="center">73,241.94</td>
<td/>
<td/>
</tr>
<tr>
<td valign="top" align="left">Total</td>
<td valign="top" align="center">29</td>
<td valign="top" align="center">8,421,487</td>
<td/>
<td/>
<td/>
</tr>
</tbody>
</table>
<table-wrap-foot>
<fn id="TN1">
<label>&#x0002A;, &#x0002A;&#x0002A;, and &#x0002A;&#x0002A;&#x0002A;</label>
<p><italic>indicates that data is significant at 5, 1, and 0.1% level of probability, respectively. The word ns stand for the non-significant data at 5% level of probability</italic>.</p></fn>
<p><italic>( ) stands for splits of {9} degrees of freedom (DF)</italic>.</p>
</table-wrap-foot>
</table-wrap>
<table-wrap position="float" id="T1B">
<label>Table 1B</label>
<caption><p><bold>Analysis of variance for grain yield (kg ha<sup><bold>&#x02212;1</bold></sup>) of rice hybrid as affected by phosphorus levels and plant residues (experiment two)</bold>.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>Source of variance</bold></th>
<th valign="top" align="center"><bold><italic>DF</italic></bold></th>
<th valign="top" align="center"><bold><italic>SS</italic></bold></th>
<th valign="top" align="center"><bold><italic>MS</italic></bold></th>
<th valign="top" align="center"><bold><italic>F</italic>-Cal</bold></th>
<th valign="top" align="center"><bold>Significance</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Replications</td>
<td valign="top" align="center">2</td>
<td valign="top" align="center">49,040</td>
<td valign="top" align="center">24,520</td>
<td valign="top" align="center">0.607912</td>
<td valign="top" align="center">ns</td>
</tr>
<tr>
<td valign="top" align="left">Treatments</td>
<td valign="top" align="center">{9}</td>
<td valign="top" align="center">16,080,803</td>
<td valign="top" align="center">1,786,756</td>
<td valign="top" align="center">44.29811</td>
<td valign="top" align="center"><xref ref-type="table-fn" rid="TN2"><sup>&#x0002A;&#x0002A;&#x0002A;</sup></xref></td>
</tr>
<tr>
<td valign="top" align="left">Phosphorus (P)</td>
<td valign="top" align="center">(2)</td>
<td valign="top" align="center">10,720,096</td>
<td valign="top" align="center">5,360,048</td>
<td valign="top" align="center">132.8889</td>
<td valign="top" align="center"><xref ref-type="table-fn" rid="TN2"><sup>&#x0002A;&#x0002A;&#x0002A;</sup></xref></td>
</tr>
<tr>
<td valign="top" align="left">Plant Residue (PR)</td>
<td valign="top" align="center">(2)</td>
<td valign="top" align="center">868,585.2</td>
<td valign="top" align="center">434,292.6</td>
<td valign="top" align="center">10.76719</td>
<td valign="top" align="center"><xref ref-type="table-fn" rid="TN2"><sup>&#x0002A;&#x0002A;&#x0002A;</sup></xref></td>
</tr>
<tr>
<td valign="top" align="left">PR &#x000D7; P</td>
<td valign="top" align="center">(4)</td>
<td valign="top" align="center">367,837</td>
<td valign="top" align="center">91,959.26</td>
<td valign="top" align="center">2.279898</td>
<td valign="top" align="center">ns</td>
</tr>
<tr>
<td valign="top" align="left">Control vs. Rest</td>
<td valign="top" align="center">(1)</td>
<td valign="top" align="center">4,124,285</td>
<td valign="top" align="center">4,124,285</td>
<td valign="top" align="center">102.2512</td>
<td valign="top" align="center"><xref ref-type="table-fn" rid="TN2"><sup>&#x0002A;&#x0002A;&#x0002A;</sup></xref></td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Error-1</td>
<td valign="top" align="center">18</td>
<td valign="top" align="center">726,026.7</td>
<td valign="top" align="center">40,334.81</td>
<td/>
<td/>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Total</td>
<td valign="top" align="center">29</td>
<td valign="top" align="center">16,855,870</td>
<td/>
<td/>
<td/>
</tr>
</tbody>
</table>
<table-wrap-foot>
<fn id="TN2">
<label>&#x0002A;&#x0002A;&#x0002A;</label>
<p><italic>indicates that data is significant at 0.1% level of probability. The word &#x0201C;ns&#x0201D; represent non-significant outcomes at 5% level of probability</italic>.</p></fn>
<p><italic>( ) stands for splits of {9} degrees of freedom (DF)</italic>.</p>
</table-wrap-foot>
</table-wrap>
<p>A sub-plot size of 9 m<sup>2</sup> (3 &#x000D7; 3 m) with hill to hill distance of 25 cm apart was used. A uniform dose of 120 kg N ha<sup>&#x02212;1</sup> as urea was applied to all treatments. The required nitrogen was applied in two equal splits: 50% each at transplanting and 30 days after transplanting, and P in the form of triple super phosphate (46% P<sub>2</sub>O<sub>5</sub>) was applied just before transplanting in a single dose at either 30, 60, or 90 kg P ha<sup>&#x02212;1</sup> according to Amanullah and Inamullah (<xref ref-type="bibr" rid="B10">2016a</xref>). The animal manures or plant residues (10 t ha<sup>&#x02212;1</sup> each) were applied to their respective plots 1 month before transplanting (Amanullah and Hidayatullah, <xref ref-type="bibr" rid="B7">2016</xref>). All subplots were separated by about 30-cm ridges to stop movement of water/nutrients among different treatments (Amanullah and Inamullah, <xref ref-type="bibr" rid="B10">2016a</xref>). Water to each treatment was separately applied from water channel. All other agronomic practices were carried out uniformly for all the experimental units throughout the rice growing season.</p>
</sec>
<sec>
<title>Data recording and statistical analysis</title>
<p>Data on various measures of phenological development, days to panicle initiation and days to physiological maturity (Inamullah, <xref ref-type="bibr" rid="B52">2014</xref>; Hidaytullah, <xref ref-type="bibr" rid="B48">2015</xref>) plant height (Hidaytaullah and Amanulla, <xref ref-type="bibr" rid="B47">2015</xref>); leaf characteristics, number of leaves tiller<sup>&#x02212;1</sup>, leaf area hill<sup>&#x02212;1</sup>, and leaf area index (Amanullah et al., <xref ref-type="bibr" rid="B12">2016a</xref>); yield components (number of tillers hill<sup>&#x02212;1</sup>, number of seeds panicle<sup>&#x02212;1</sup>, 1000 grains weight) and grain yield (Amanullah and Hidayatullah, <xref ref-type="bibr" rid="B7">2016</xref>); biological yield, straw yield, and harvest index (Amanullah and Inamullah, <xref ref-type="bibr" rid="B10">2016a</xref>) were recorded. Data on all parameters of rice hybrid were subjected to analysis of variance (ANOVA) according to the methods described for simple randomized complete block design (Steel et al., <xref ref-type="bibr" rid="B82">1996</xref>), and means between treatments were compared using LSD (least significant difference) test (<italic>p</italic> &#x0003C; 0.05). In both experiments the interactions between phosphorus and animal manures (experiment one), and between phosphorus and plant residues (experiment two) had no significant (<italic>P</italic> &#x02264; 0.05) effect on any parameters; therefore, it was excluded from the final model.</p>
</sec>
</sec>
<sec sec-type="results" id="s3">
<title>Results</title>
<sec>
<title>Experiment one (phosphorus and animal manures)</title>
<sec>
<title>Growth</title>
<p>Application of poultry manure enhanced days to panicle initiation, produced the tallest plants with more tillers and higher leaf area per hill (Table <xref ref-type="table" rid="T2">2</xref>). There were no significant differences among manure treatments for number of leaves per tiller and leaf area index at panicle initiation (Table <xref ref-type="table" rid="T2">2</xref>). Similarly, there were no significant differences among manure treatments for number of leaves per tiller at physiological maturity (Table <xref ref-type="table" rid="T3">3</xref>). At physiological maturity, application of poultry manure reduced the days to physiological maturity, produced the tallest plants with more tillers and higher leaf area per hill that resulted in higher leaf area index (Table <xref ref-type="table" rid="T3">3</xref>). Similarly, higher rates of P addition reduced the number of days to panicle ignition and days to physiological maturity, produced taller plants with more tillers per hill, more leaves per tiller with higher leaf area per hill and leaf area index at panicle initiation (Table <xref ref-type="table" rid="T2">2</xref>) and physiological maturity (Table <xref ref-type="table" rid="T3">3</xref>). Control plots took the longest to reach panicle initiation and physiological maturity, produced smallest plants with fewer tillers per hill, fewer leaves per tiller, lower leaf area per hill and lower leaf area index at both growth stages (Tables <xref ref-type="table" rid="T2">2</xref>, <xref ref-type="table" rid="T3">3</xref>).</p>
<table-wrap position="float" id="T2">
<label>Table 2</label>
<caption><p><bold>Days to panicle initiation (PI), plant height (cm), number of tillers hill<sup><bold>&#x02212;1</bold></sup>, number of leaves tiller<sup><bold>&#x02212;1</bold></sup>, leaf area hill<sup><bold>&#x02212;1</bold></sup> (cm<sup><bold>2</bold></sup>), and leaf area index at panicle initiation of rice hybrid as affected by phosphorus levels (P) and animal manures (AM)</bold>.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>Animal manures (10 t ha<sup>&#x02212;1</sup>)</bold></th>
<th valign="top" align="center"><bold>Days to panicle initiation</bold></th>
<th valign="top" align="center"><bold>Plant height (cm)</bold></th>
<th valign="top" align="center"><bold>Number of tillers hill<sup>&#x02212;1</sup></bold></th>
<th valign="top" align="center"><bold>Number of leaves tiller<sup>&#x02212;1</sup></bold></th>
<th valign="top" align="center"><bold>Leaf area hill<sup>&#x02212;1</sup> (cm<sup>2</sup>)</bold></th>
<th valign="top" align="center"><bold>Leaf area index</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Cattle</td>
<td valign="top" align="center">57.8</td>
<td valign="top" align="center">93.6</td>
<td valign="top" align="center">14.6</td>
<td valign="top" align="center">6.2</td>
<td valign="top" align="center">2404</td>
<td valign="top" align="center">3.7</td>
</tr>
<tr>
<td valign="top" align="left">Sheep</td>
<td valign="top" align="center">57.8</td>
<td valign="top" align="center">94.6</td>
<td valign="top" align="center">14.8</td>
<td valign="top" align="center">6.2</td>
<td valign="top" align="center">2493</td>
<td valign="top" align="center">3.8</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Poultry</td>
<td valign="top" align="center">56.9</td>
<td valign="top" align="center">95.4</td>
<td valign="top" align="center">15.0</td>
<td valign="top" align="center">6.4</td>
<td valign="top" align="center">2688</td>
<td valign="top" align="center">4.1</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left"><bold>LSD<sub>0.05</sub></bold></td>
<td valign="top" align="center"><bold>0.7</bold></td>
<td valign="top" align="center"><bold>1.4</bold></td>
<td valign="top" align="center"><bold>0.4</bold></td>
<td valign="top" align="center"><bold>ns</bold></td>
<td valign="top" align="center"><bold>337</bold></td>
<td valign="top" align="center"><bold>ns</bold></td>
</tr>
<tr>
<td valign="top" align="left"><bold>Phosphorus (kg ha<sup>&#x02212;1</sup>)</bold></td>
<td/>
<td/>
<td/>
<td/>
<td/>
<td/>
</tr>
<tr>
<td valign="top" align="left">30</td>
<td valign="top" align="center">59.1</td>
<td valign="top" align="center">91.6</td>
<td valign="top" align="center">14.0</td>
<td valign="top" align="center">5.9</td>
<td valign="top" align="center">2019</td>
<td valign="top" align="center">3.1</td>
</tr>
<tr>
<td valign="top" align="left">60</td>
<td valign="top" align="center">56.9</td>
<td valign="top" align="center">94.4</td>
<td valign="top" align="center">14.6</td>
<td valign="top" align="center">6.2</td>
<td valign="top" align="center">2480</td>
<td valign="top" align="center">3.8</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">90</td>
<td valign="top" align="center">56.4</td>
<td valign="top" align="center">97.6</td>
<td valign="top" align="center">15.8</td>
<td valign="top" align="center">6.8</td>
<td valign="top" align="center">3086</td>
<td valign="top" align="center">4.7</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left"><bold>LSD<sub>0.05</sub></bold></td>
<td valign="top" align="center"><bold>0.7</bold></td>
<td valign="top" align="center"><bold>1.4</bold></td>
<td valign="top" align="center"><bold>0.4</bold></td>
<td valign="top" align="center"><bold>0.6</bold></td>
<td valign="top" align="center"><bold>337</bold></td>
<td valign="top" align="center"><bold>0.5</bold></td>
</tr>
<tr>
<td valign="top" align="left">Control</td>
<td valign="top" align="center">61.0a</td>
<td valign="top" align="center">86.3b</td>
<td valign="top" align="center">12.3b</td>
<td valign="top" align="center">5.7a</td>
<td valign="top" align="center">1203b</td>
<td valign="top" align="center">1.9b</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Rest</td>
<td valign="top" align="center">57.5b</td>
<td valign="top" align="center">94.5a</td>
<td valign="top" align="center">14.8a</td>
<td valign="top" align="center">6.3a</td>
<td valign="top" align="center">2528a</td>
<td valign="top" align="center">3.9a</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Interaction (AM &#x000D7; P)</td>
<td valign="top" align="center">Ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<p><italic>Mean followed by different letters in the same category are significantly different using LSD-test (P &#x02264; 0.05). Where ns stands for non-significant data at P &#x02264; 0.05</italic>.</p>
</table-wrap-foot>
</table-wrap>
<table-wrap position="float" id="T3">
<label>Table 3</label>
<caption><p><bold>Days to physiological maturity (PM), plant height (cm), number of tillers hill<sup><bold>&#x02212;1</bold></sup>, number of leaves tiller<sup><bold>&#x02212;1</bold></sup>, leaf area hill<sup><bold>&#x02212;1</bold></sup> (cm<sup><bold>2</bold></sup>), and leaf area index at physiological maturity of rice hybrid as affected by phosphorus (P) and animal manures (AM)</bold>.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>Animal manures (10 t ha<sup>&#x02212;1</sup>)</bold></th>
<th valign="top" align="center"><bold>Days to physiological maturity</bold></th>
<th valign="top" align="center"><bold>Plant height (cm)</bold></th>
<th valign="top" align="center"><bold>Number of tillers hill<sup>&#x02212;1</sup></bold></th>
<th valign="top" align="center"><bold>Number of leaves tiller<sup>&#x02212;1</sup></bold></th>
<th valign="top" align="center"><bold>Leaf area hill<sup>&#x02212;1</sup> (cm<sup>2</sup>)</bold></th>
<th valign="top" align="center"><bold>Leaf area index</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Cattle</td>
<td valign="top" align="center">102.1</td>
<td valign="top" align="center">101.7</td>
<td valign="top" align="center">22.1</td>
<td valign="top" align="center">4.8</td>
<td valign="top" align="center">1284</td>
<td valign="top" align="center">2.1</td>
</tr>
<tr>
<td valign="top" align="left">Sheep</td>
<td valign="top" align="center">101.6</td>
<td valign="top" align="center">104.3</td>
<td valign="top" align="center">22.1</td>
<td valign="top" align="center">4.9</td>
<td valign="top" align="center">1371</td>
<td valign="top" align="center">2.2</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Poultry</td>
<td valign="top" align="center">101.1</td>
<td valign="top" align="center">107.3</td>
<td valign="top" align="center">23.1</td>
<td valign="top" align="center">5.2</td>
<td valign="top" align="center">1542</td>
<td valign="top" align="center">2.5</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left"><bold>LSD<sub>0.05</sub></bold></td>
<td valign="top" align="center"><bold>0.5</bold></td>
<td valign="top" align="center"><bold>1.2</bold></td>
<td valign="top" align="center"><bold>0.8</bold></td>
<td valign="top" align="center"><bold>ns</bold></td>
<td valign="top" align="center"><bold>160</bold></td>
<td valign="top" align="center"><bold>0.3</bold></td>
</tr>
<tr>
<td valign="top" align="left"><bold>Phosphorus (kg ha<sup>&#x02212;1</sup>)</bold></td>
<td/>
<td/>
<td/>
<td/>
<td/>
<td/>
</tr>
<tr>
<td valign="top" align="left">30</td>
<td valign="top" align="center">102.9</td>
<td valign="top" align="center">101.7</td>
<td valign="top" align="center">20.3</td>
<td valign="top" align="center">4.4</td>
<td valign="top" align="center">1034</td>
<td valign="top" align="center">1.7</td>
</tr>
<tr>
<td valign="top" align="left">60</td>
<td valign="top" align="center">101.4</td>
<td valign="top" align="center">104.3</td>
<td valign="top" align="center">22.4</td>
<td valign="top" align="center">5.0</td>
<td valign="top" align="center">1381</td>
<td valign="top" align="center">2.2</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">90</td>
<td valign="top" align="center">100.4</td>
<td valign="top" align="center">107.3</td>
<td valign="top" align="center">24.6</td>
<td valign="top" align="center">5.4</td>
<td valign="top" align="center">1782</td>
<td valign="top" align="center">2.9</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left"><bold>LSD<sub>0.05</sub></bold></td>
<td valign="top" align="center"><bold>0.5</bold></td>
<td valign="top" align="center"><bold>1.2</bold></td>
<td valign="top" align="center"><bold>0.8</bold></td>
<td valign="top" align="center"><bold>0.5</bold></td>
<td valign="top" align="center"><bold>160</bold></td>
<td valign="top" align="center"><bold>0.3</bold></td>
</tr>
<tr>
<td valign="top" align="left">Control</td>
<td valign="top" align="center">104.3a</td>
<td valign="top" align="center">96.3b</td>
<td valign="top" align="center">16.0b</td>
<td valign="top" align="center">4.3b</td>
<td valign="top" align="center">872b</td>
<td valign="top" align="center">1.4b</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Rest</td>
<td valign="top" align="center">101.6b</td>
<td valign="top" align="center">104.4a</td>
<td valign="top" align="center">22.4a</td>
<td valign="top" align="center">5.0a</td>
<td valign="top" align="center">1399a</td>
<td valign="top" align="center">2.2a</td>
</tr>
<tr>
<td valign="top" align="left">Interaction (AM &#x000D7; P)</td>
<td valign="top" align="center">Ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<p><italic>Mean followed by different letters in the same category are significantly different using LSD-test (P &#x02264; 0.05). Where ns stands for non-significant data at P &#x02264; 0.05</italic>.</p>
</table-wrap-foot>
</table-wrap>
</sec>
<sec>
<title>Yield and yield components</title>
<p>There were generally no significant differences among manure treatments for straw yield and harvest index of rice (Table <xref ref-type="table" rid="T4">4</xref>). Number of seeds per panicle, 1000 grains weight, biological and grain yield were all highest in plots under poultry manure as compared with cattle and sheep manures (Table <xref ref-type="table" rid="T4">4</xref>). Increase in P rate increased seeds per panicle, 1000 grains weight, straw, biological, and grain yield. As with growth measures, yield and yield components were lowest in the control (Table <xref ref-type="table" rid="T4">4</xref>).</p>
<table-wrap position="float" id="T4">
<label>Table 4</label>
<caption><p><bold>Number of seeds panicle<sup><bold>&#x02212;1</bold></sup>, 1000 grains weight (g), biological yield (kg ha<sup><bold>&#x02212;1</bold></sup>), straw yield (kg ha<sup><bold>&#x02212;1</bold></sup>), grain yield (kg ha<sup><bold>&#x02212;1</bold></sup>), and harvest index (%) of rice hybrid as affected by phosphorus (P) and animal manures (AM)</bold>.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>Animal manures (10 t ha<sup>&#x02212;1</sup>)</bold></th>
<th valign="top" align="center"><bold>Number of seeds panicle<sup>&#x02212;1</sup></bold></th>
<th valign="top" align="center"><bold>Thousand grains weight (g)</bold></th>
<th valign="top" align="center"><bold>Biological yield (kg ha<sup>&#x02212;1</sup>)</bold></th>
<th valign="top" align="center"><bold>Straw yield (kg ha<sup>&#x02212;1</sup>)</bold></th>
<th valign="top" align="center"><bold>Grain yield (kg ha<sup>&#x02212;1</sup>)</bold></th>
<th valign="top" align="center"><bold>Harvest index (%)</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Cattle</td>
<td valign="top" align="center">116.2</td>
<td valign="top" align="center">33.6</td>
<td valign="top" align="center">13,847</td>
<td valign="top" align="center">7046</td>
<td valign="top" align="center">6801</td>
<td valign="top" align="center">49.2</td>
</tr>
<tr>
<td valign="top" align="left">Sheep</td>
<td valign="top" align="center">116.8</td>
<td valign="top" align="center">34.6</td>
<td valign="top" align="center">14,310</td>
<td valign="top" align="center">7422</td>
<td valign="top" align="center">6888</td>
<td valign="top" align="center">48.2</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Poultry</td>
<td valign="top" align="center">119.8</td>
<td valign="top" align="center">35.8</td>
<td valign="top" align="center">14,457</td>
<td valign="top" align="center">7313</td>
<td valign="top" align="center">7144</td>
<td valign="top" align="center">49.5</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left"><bold>LSD<sub>0.05</sub></bold></td>
<td valign="top" align="center"><bold>2.2</bold></td>
<td valign="top" align="center"><bold>1.5</bold></td>
<td valign="top" align="center"><bold>385</bold></td>
<td valign="top" align="center"><bold>ns</bold></td>
<td valign="top" align="center"><bold>268</bold></td>
<td valign="top" align="center"><bold>ns</bold></td>
</tr>
<tr>
<td valign="top" align="left"><bold>Phosphorus (kg ha<sup>&#x02212;1</sup>)</bold></td>
<td/>
<td/>
<td/>
<td/>
<td/>
<td/>
</tr>
<tr>
<td valign="top" align="left">30</td>
<td valign="top" align="center">108.6</td>
<td valign="top" align="center">32.4</td>
<td valign="top" align="center">13,542</td>
<td valign="top" align="center">6837</td>
<td valign="top" align="center">6704</td>
<td valign="top" align="center">49.5</td>
</tr>
<tr>
<td valign="top" align="left">60</td>
<td valign="top" align="center">117.6</td>
<td valign="top" align="center">34.8</td>
<td valign="top" align="center">14,261</td>
<td valign="top" align="center">7334</td>
<td valign="top" align="center">6927</td>
<td valign="top" align="center">48.6</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">90</td>
<td valign="top" align="center">126.7</td>
<td valign="top" align="center">36.7</td>
<td valign="top" align="center">14,811</td>
<td valign="top" align="center">7609</td>
<td valign="top" align="center">7202</td>
<td valign="top" align="center">48.6</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left"><bold>LSD<sub>0.05</sub></bold></td>
<td valign="top" align="center"><bold>2.2</bold></td>
<td valign="top" align="center"><bold>1.5</bold></td>
<td valign="top" align="center"><bold>385</bold></td>
<td valign="top" align="center"><bold>468</bold></td>
<td valign="top" align="center"><bold>268</bold></td>
<td valign="top" align="center"><bold>ns</bold></td>
</tr>
<tr>
<td valign="top" align="left">Control</td>
<td valign="top" align="center">93.0b</td>
<td valign="top" align="center">28.0b</td>
<td valign="top" align="center">12,188b</td>
<td valign="top" align="center">6631b</td>
<td valign="top" align="center">5557b</td>
<td valign="top" align="center">45.9b</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Rest</td>
<td valign="top" align="center">117.6a</td>
<td valign="top" align="center">34.6a</td>
<td valign="top" align="center">14,205a</td>
<td valign="top" align="center">7260a</td>
<td valign="top" align="center">6944a</td>
<td valign="top" align="center">48.9a</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Interaction (AM &#x000D7; P)</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<p><italic>Mean followed by different letters in the same category are significantly different using LSD-test (P &#x02264; 0.05). Where ns stands for non-significant data at P &#x02264; 0.05</italic>.</p>
</table-wrap-foot>
</table-wrap>
</sec>
</sec>
<sec>
<title>Experiment two (phosphorus and plant residues)</title>
<sec>
<title>Growth</title>
<p>Compared to wheat straw, application of garlic residues and peach leaves enhanced days to panicle initiation, produced the tallest plants with more tillers per hill and more leaves per plant that resulted in higher leaf area per hill and leaf area index at panicle initiation (Table <xref ref-type="table" rid="T5">5</xref>). At physiological maturity, application of garlic residues and peach leaves reduced days to physiological maturity, produced the tallest plants with more leaves per plant, more tillers and higher leaf area per hill that resulted in higher leaf area index (Table <xref ref-type="table" rid="T6">6</xref>). Like experiment one, higher rates of P addition reduced the number of days to panicle initiation and days to physiological maturity, produced taller plants with more tillers per hill, more leaves per tiller with higher leaf area per hill and leaf area index at panicle initiation and physiological maturity (Tables <xref ref-type="table" rid="T5">5</xref>, <xref ref-type="table" rid="T6">6</xref>). Control plots took the longest to reach panicle initiation and physiological maturity, produced smallest plants with fewer tillers per hill, fewer leaves per tiller, lower leaf area per hill and lower leaf area index at both growth stages (Tables <xref ref-type="table" rid="T5">5</xref>, <xref ref-type="table" rid="T6">6</xref>).</p>
<table-wrap position="float" id="T5">
<label>Table 5</label>
<caption><p><bold>Days to panicle initiation (PI), plant height (cm), number of tillers hill<sup><bold>&#x02212;1</bold></sup>, number of leaves tiller<sup><bold>&#x02212;1</bold></sup>, leaf area hill<sup><bold>&#x02212;1</bold></sup> (cm<sup><bold>2</bold></sup>), and leaf area index at panicle initiation of rice hybrid as affected by phosphorus (P) and plant residues (PR)</bold>.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>Plant residue (10 t ha<sup>&#x02212;1</sup>)</bold></th>
<th valign="top" align="center"><bold>Days to panicle initiation</bold></th>
<th valign="top" align="center"><bold>Plant height (cm)</bold></th>
<th valign="top" align="center"><bold>Number of tillers hill<sup>&#x02212;1</sup></bold></th>
<th valign="top" align="center"><bold>Number of leaves tiller<sup>&#x02212;1</sup></bold></th>
<th valign="top" align="center"><bold>Leaf area hill<sup>&#x02212;1</sup> (cm<sup>2</sup>)</bold></th>
<th valign="top" align="center"><bold>Leaf area index</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Wheat straw</td>
<td valign="top" align="center">56.2</td>
<td valign="top" align="center">92.4</td>
<td valign="top" align="center">13.3</td>
<td valign="top" align="center">5.2</td>
<td valign="top" align="center">1501</td>
<td valign="top" align="center">2.4</td>
</tr>
<tr>
<td valign="top" align="left">Garlic residues</td>
<td valign="top" align="center">55.2</td>
<td valign="top" align="center">94.1</td>
<td valign="top" align="center">14.1</td>
<td valign="top" align="center">5.8</td>
<td valign="top" align="center">1993</td>
<td valign="top" align="center">3.2</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Peach leaves</td>
<td valign="top" align="center">55.2</td>
<td valign="top" align="center">92.4</td>
<td valign="top" align="center">14.2</td>
<td valign="top" align="center">5.8</td>
<td valign="top" align="center">1914</td>
<td valign="top" align="center">3.1</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left"><bold>LSD<sub>0.05</sub></bold></td>
<td valign="top" align="center"><bold>0.6</bold></td>
<td valign="top" align="center"><bold>1.1</bold></td>
<td valign="top" align="center"><bold>0.5</bold></td>
<td valign="top" align="center"><bold>0.5</bold></td>
<td valign="top" align="center"><bold>206</bold></td>
<td valign="top" align="center"><bold>0.3</bold></td>
</tr>
<tr>
<td valign="top" align="left"><bold>Phosphorus (kg ha<sup>&#x02212;1</sup>)</bold></td>
<td/>
<td/>
<td/>
<td/>
<td/>
<td/>
</tr>
<tr>
<td valign="top" align="left">30</td>
<td valign="top" align="center">56.1</td>
<td valign="top" align="center">90.6</td>
<td valign="top" align="center">12.8</td>
<td valign="top" align="center">5.1</td>
<td valign="top" align="center">1230</td>
<td valign="top" align="center">2.0</td>
</tr>
<tr>
<td valign="top" align="left">60</td>
<td valign="top" align="center">55.7</td>
<td valign="top" align="center">93.2</td>
<td valign="top" align="center">14.0</td>
<td valign="top" align="center">5.7</td>
<td valign="top" align="center">1803</td>
<td valign="top" align="center">2.9</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">90</td>
<td valign="top" align="center">54.9</td>
<td valign="top" align="center">95.2</td>
<td valign="top" align="center">14.9</td>
<td valign="top" align="center">6.0</td>
<td valign="top" align="center">2375</td>
<td valign="top" align="center">3.8</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left"><bold>LSD<sub>0.05</sub></bold></td>
<td valign="top" align="center"><bold>0.6</bold></td>
<td valign="top" align="center"><bold>1.1</bold></td>
<td valign="top" align="center"><bold>0.5</bold></td>
<td valign="top" align="center"><bold>0.5</bold></td>
<td valign="top" align="center"><bold>206</bold></td>
<td valign="top" align="center"><bold>0.3</bold></td>
</tr>
<tr>
<td valign="top" align="left">Control</td>
<td valign="top" align="center">59.3a</td>
<td valign="top" align="center">85.3b</td>
<td valign="top" align="center">11.7b</td>
<td valign="top" align="center">5.0b</td>
<td valign="top" align="center">978b</td>
<td valign="top" align="center">1.4b</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Rest</td>
<td valign="top" align="center">55.6b</td>
<td valign="top" align="center">93.0a</td>
<td valign="top" align="center">13.9a</td>
<td valign="top" align="center">5.6a</td>
<td valign="top" align="center">1803a</td>
<td valign="top" align="center">2.9a</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Interaction (PR &#x000D7; P)</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<p><italic>Mean followed by different letters in the same category are significantly different using LSD-test (P &#x02264; 0.05). Where ns stands for non-significant data at P &#x02264; 0.05</italic>.</p>
</table-wrap-foot>
</table-wrap>
<table-wrap position="float" id="T6">
<label>Table 6</label>
<caption><p><bold>Days to physiological maturity (PM), plant height (cm) at PM, number of tillers hill<sup><bold>&#x02212;1</bold></sup> at PM, number of leaves tiller<sup><bold>&#x02212;1</bold></sup> at PM, leaf area hill<sup><bold>&#x02212;1</bold></sup> (cm<sup><bold>2</bold></sup>) at PM, and leaf area index at PM of rice hybrid as affected by phosphorus (P) and plant residues (PR)</bold>.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>Plant residues (10 t ha<sup>&#x02212;1</sup>)</bold></th>
<th valign="top" align="center"><bold>Days to physiological maturity</bold></th>
<th valign="top" align="center"><bold>Plant height (cm)</bold></th>
<th valign="top" align="center"><bold>Number of tillers hill<sup>&#x02212;1</sup></bold></th>
<th valign="top" align="center"><bold>Number of leaves tiller<sup>&#x02212;1</sup></bold></th>
<th valign="top" align="center"><bold>Leaf area hill<sup>&#x02212;1</sup> (cm<sup>2</sup>)</bold></th>
<th valign="top" align="center"><bold>Leaf area index</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Wheat straw</td>
<td valign="top" align="center">103.0</td>
<td valign="top" align="center">102.4</td>
<td valign="top" align="center">11.4</td>
<td valign="top" align="center">4.4</td>
<td valign="top" align="center">1266</td>
<td valign="top" align="center">2.0</td>
</tr>
<tr>
<td valign="top" align="left">Garlic residues</td>
<td valign="top" align="center">102.0</td>
<td valign="top" align="center">104.1</td>
<td valign="top" align="center">12.3</td>
<td valign="top" align="center">4.9</td>
<td valign="top" align="center">1658</td>
<td valign="top" align="center">2.7</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Peach leaves</td>
<td valign="top" align="center">101.2</td>
<td valign="top" align="center">102.9</td>
<td valign="top" align="center">11.9</td>
<td valign="top" align="center">4.8</td>
<td valign="top" align="center">1517</td>
<td valign="top" align="center">2.4</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left"><bold>LSD<sub>0.05</sub></bold></td>
<td valign="top" align="center"><bold>0.6</bold></td>
<td valign="top" align="center"><bold>1.1</bold></td>
<td valign="top" align="center"><bold>1.0</bold></td>
<td valign="top" align="center"><bold>0.3</bold></td>
<td valign="top" align="center"><bold>197</bold></td>
<td valign="top" align="center"><bold>0.3</bold></td>
</tr>
<tr>
<td valign="top" align="left"><bold>Phosphorus (kg ha<sup>&#x02212;1</sup>)</bold></td>
<td/>
<td/>
<td/>
<td/>
<td/>
<td/>
</tr>
<tr>
<td valign="top" align="left">30</td>
<td valign="top" align="center">103.2</td>
<td valign="top" align="center">100.6</td>
<td valign="top" align="center">11.1</td>
<td valign="top" align="center">4.0</td>
<td valign="top" align="center">961</td>
<td valign="top" align="center">1.5</td>
</tr>
<tr>
<td valign="top" align="left">60</td>
<td valign="top" align="center">101.7</td>
<td valign="top" align="center">103.3</td>
<td valign="top" align="center">11.8</td>
<td valign="top" align="center">4.8</td>
<td valign="top" align="center">1496</td>
<td valign="top" align="center">2.4</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">90</td>
<td valign="top" align="center">101.3</td>
<td valign="top" align="center">105.6</td>
<td valign="top" align="center">12.7</td>
<td valign="top" align="center">5.3</td>
<td valign="top" align="center">1984</td>
<td valign="top" align="center">3.2</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left"><bold>LSD<sub>0.05</sub></bold></td>
<td valign="top" align="center"><bold>0.6</bold></td>
<td valign="top" align="center"><bold>1.1</bold></td>
<td valign="top" align="center"><bold>1.0</bold></td>
<td valign="top" align="center"><bold>0.3</bold></td>
<td valign="top" align="center"><bold>197</bold></td>
<td valign="top" align="center"><bold>0.3</bold></td>
</tr>
<tr>
<td valign="top" align="left">Control</td>
<td valign="top" align="center">105.3a</td>
<td valign="top" align="center">95.3b</td>
<td valign="top" align="center">10.0b</td>
<td valign="top" align="center">4.0b</td>
<td valign="top" align="center">779b</td>
<td valign="top" align="center">1.2b</td>
</tr>
<tr>
<td valign="top" align="left">Rest</td>
<td valign="top" align="center">102.1b</td>
<td valign="top" align="center">103.1a</td>
<td valign="top" align="center">11.9a</td>
<td valign="top" align="center">4.7a</td>
<td valign="top" align="center">1480a</td>
<td valign="top" align="center">2.4a</td>
</tr>
<tr>
<td valign="top" align="left">Interaction (PR &#x000D7; P)</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<p><italic>Mean followed by different letters in the same category are significantly different using LSD-test (P &#x02264; 0.05). Where ns stands for non-significant data at P &#x02264; 0.05</italic>.</p>
</table-wrap-foot>
</table-wrap>
</sec>
<sec>
<title>Yield and yield components</title>
<p>There were generally no significant differences among plant residue treatments for harvest index of rice (Table <xref ref-type="table" rid="T7">7</xref>). Number of seeds per panicle, 1000 grains weight, biological and grain yield increased significantly with application of either peach leaves or garlic residues as compared with wheat straw (Table <xref ref-type="table" rid="T7">7</xref>). Like experiment one, increase in P rate increased seeds per panicle, 1000 grains weight, straw, biological and grain yield as well as harvest index. As with growth measures, yield and yield components were lowest in the control (Table <xref ref-type="table" rid="T7">7</xref>).</p>
<table-wrap position="float" id="T7">
<label>Table 7</label>
<caption><p><bold>Number of seeds panicle<sup><bold>&#x02212;1</bold></sup>, 1000 grains weight (g), biological yield (kg ha<sup><bold>&#x02212;1</bold></sup>), straw yield (kg ha<sup><bold>&#x02212;1</bold></sup>), grain yield (kg ha<sup><bold>&#x02212;1</bold></sup>), and harvest index (%) of rice hybrid as affected by phosphorus (P) and plant residues (PR)</bold>.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>Plant residue (10 t ha<sup>&#x02212;1</sup>)</bold></th>
<th valign="top" align="center"><bold>Number of seeds panicle<sup>&#x02212;1</sup></bold></th>
<th valign="top" align="center"><bold>Thousand grains weight (g)</bold></th>
<th valign="top" align="center"><bold>Biological yield (kg ha<sup>&#x02212;1</sup>)</bold></th>
<th valign="top" align="center"><bold>Straw yield (kg ha<sup>&#x02212;1</sup>)</bold></th>
<th valign="top" align="center"><bold>Grain yield (kg ha<sup>&#x02212;1</sup>)</bold></th>
<th valign="top" align="center"><bold>Harvest index (%)</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Wheat straw</td>
<td valign="top" align="center">121.2</td>
<td valign="top" align="center">32.2</td>
<td valign="top" align="center">11,922</td>
<td valign="top" align="center">6633</td>
<td valign="top" align="center">5289</td>
<td valign="top" align="center">44.2</td>
</tr>
<tr>
<td valign="top" align="left">Garlic residues</td>
<td valign="top" align="center">124.2</td>
<td valign="top" align="center">33.8</td>
<td valign="top" align="center">12,478</td>
<td valign="top" align="center">6987</td>
<td valign="top" align="center">5491</td>
<td valign="top" align="center">43.9</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">Peach leaves</td>
<td valign="top" align="center">123.9</td>
<td valign="top" align="center">32.2</td>
<td valign="top" align="center">12,778</td>
<td valign="top" align="center">7050</td>
<td valign="top" align="center">5728</td>
<td valign="top" align="center">44.7</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left"><bold>LSD<sub>0.05</sub></bold></td>
<td valign="top" align="center"><bold>2.5</bold></td>
<td valign="top" align="center"><bold>1.1</bold></td>
<td valign="top" align="center"><bold>458</bold></td>
<td valign="top" align="center"><bold>520</bold></td>
<td valign="top" align="center"><bold>199</bold></td>
<td valign="top" align="center"><bold>ns</bold></td>
</tr>
<tr>
<td valign="top" align="left"><bold>Phosphorus (kg ha<sup>&#x02212;1</sup>)</bold></td>
<td/>
<td/>
<td/>
<td/>
<td/>
<td/>
</tr>
<tr>
<td valign="top" align="left">30</td>
<td valign="top" align="center">115.7</td>
<td valign="top" align="center">30.7</td>
<td valign="top" align="center">11,233</td>
<td valign="top" align="center">6583</td>
<td valign="top" align="center">4650</td>
<td valign="top" align="center">41.4</td>
</tr>
<tr>
<td valign="top" align="left">60</td>
<td valign="top" align="center">122.3</td>
<td valign="top" align="center">33.3</td>
<td valign="top" align="center">12,689</td>
<td valign="top" align="center">6984</td>
<td valign="top" align="center">5704</td>
<td valign="top" align="center">45.1</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left">90</td>
<td valign="top" align="center">131.3</td>
<td valign="top" align="center">34.2</td>
<td valign="top" align="center">13,256</td>
<td valign="top" align="center">7102</td>
<td valign="top" align="center">6153</td>
<td valign="top" align="center">46.5</td>
</tr>
<tr style="border-bottom: thin solid #000000;">
<td valign="top" align="left"><bold>LSD<sub>0.05</sub></bold></td>
<td valign="top" align="center"><bold>2.5</bold></td>
<td valign="top" align="center"><bold>1.1</bold></td>
<td valign="top" align="center"><bold>458</bold></td>
<td valign="top" align="center"><bold>520</bold></td>
<td valign="top" align="center"><bold>199</bold></td>
<td valign="top" align="center"><bold>2.5</bold></td>
</tr>
<tr>
<td valign="top" align="left">Control</td>
<td valign="top" align="center">102.7b</td>
<td valign="top" align="center">26.7b</td>
<td valign="top" align="center">10,500b</td>
<td valign="top" align="center">6233b</td>
<td valign="top" align="center">4267b</td>
<td valign="top" align="center">40.7b</td>
</tr>
<tr>
<td valign="top" align="left">Rest</td>
<td valign="top" align="center">123.1a</td>
<td valign="top" align="center">32.7a</td>
<td valign="top" align="center">12,393a</td>
<td valign="top" align="center">6890a</td>
<td valign="top" align="center">5503a</td>
<td valign="top" align="center">44.3a</td>
</tr>
<tr>
<td valign="top" align="left">Interaction (PR &#x000D7; P)</td>
<td valign="top" align="center">Ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
<td valign="top" align="center">ns</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<p><italic>Mean followed by different letters in the same category are significantly different using LSD-test (P &#x02264; 0.05). Where ns stands for non-significant data at P &#x02264; 0.05</italic>.</p>
</table-wrap-foot>
</table-wrap>
</sec>
</sec>
</sec>
<sec sec-type="discussion" id="s4">
<title>Discussion</title>
<sec>
<title>Phosphorus</title>
<p>The increased rate of phenological development with increasing P fertilization has been seen in other studies on different crops (Amanullah and Khan, <xref ref-type="bibr" rid="B15">2010</xref>; Khalil et al., <xref ref-type="bibr" rid="B56">2010</xref>; Amanullah et al., <xref ref-type="bibr" rid="B22">2010b</xref>, <xref ref-type="bibr" rid="B18">2014</xref>; Amanullah, <xref ref-type="bibr" rid="B5">2011</xref>; Amanullah and Khalid, <xref ref-type="bibr" rid="B13">2015</xref>). As P deficiency can decrease both root and shoot development (Amanullah and Stewart, <xref ref-type="bibr" rid="B19">2013</xref>) and phosphorus uptake (Amanullah and Inamullah, <xref ref-type="bibr" rid="B11">2016b</xref>), which can cause a delay in phenological development (Amanullah et al., <xref ref-type="bibr" rid="B18">2014</xref>; Amanullah and Khalid, <xref ref-type="bibr" rid="B13">2015</xref>; Amanullah et al., <xref ref-type="bibr" rid="B21">2016b</xref>). Increasing P level also improves plant growth parameters due to an increase in leaf photosynthetic rate and formation of more photosynthates (Sarika et al., <xref ref-type="bibr" rid="B76">2006</xref>; Amanullah et al., <xref ref-type="bibr" rid="B8">2013</xref>). Increase in growth parameters in different crops while increasing P rate is earlier reported in many studies from different parts of the world (Akinrinde and Gaizer, <xref ref-type="bibr" rid="B2">2006</xref>; Fageria et al., <xref ref-type="bibr" rid="B40">2006</xref>; Opala et al., <xref ref-type="bibr" rid="B69">2009</xref>; Rast et al., <xref ref-type="bibr" rid="B75">2010</xref>; Rasavel and Ravichandran, <xref ref-type="bibr" rid="B74">2013</xref>). Fageria et al. (<xref ref-type="bibr" rid="B41">2003</xref>) and Fageria and Baligar (<xref ref-type="bibr" rid="B39">2005</xref>) reported that tillering capacity in rice was considerably affected by P application. The increase in LAI in this study with increase in P level probably may be due the role of P in promoting plant growth and development, increase in number of tillering, and root development in rice (Amanullah, <xref ref-type="bibr" rid="B5">2011</xref>). The increase in yield and yield components, and harvest index while increasing P level may be due to the higher availability and uptake of phosphorus (Amanullah and Inamullah, <xref ref-type="bibr" rid="B11">2016b</xref>) and zinc (Inamullah, <xref ref-type="bibr" rid="B52">2014</xref>). According to Rahman et al. (<xref ref-type="bibr" rid="B71">2011</xref>), higher P level increases the availability of P and Zn that had considerably helpful effect on growth, yield and yield contributing parameters (Hao et al., <xref ref-type="bibr" rid="B46">2009</xref>). The results are also in line with Begum et al. (<xref ref-type="bibr" rid="B29">2002</xref>) who reported the highest bearing tillers hill<sup>&#x02212;1</sup> from seedling raised with proper nutrients availability. According to Makino (<xref ref-type="bibr" rid="B60">2011</xref>), the higher grain yield may be attributed due to better growth with higher nutrient availability (Akinrinde and Gaizer, <xref ref-type="bibr" rid="B2">2006</xref>; Fageria et al., <xref ref-type="bibr" rid="B40">2006</xref>; Rast et al., <xref ref-type="bibr" rid="B75">2010</xref>; Rasavel and Ravichandran, <xref ref-type="bibr" rid="B74">2013</xref>; Opala et al., <xref ref-type="bibr" rid="B69">2009</xref>) and higher photosynthetic rate of the plants (Sarika et al., <xref ref-type="bibr" rid="B76">2006</xref>) and more photosynthate partitioning into the reproductive parts (Baruah et al., <xref ref-type="bibr" rid="B28">2012</xref>; Amanullah and Inamullah, <xref ref-type="bibr" rid="B10">2016a</xref>). Increase in number of tillers hill<sup>&#x02212;1</sup>, panicle length, grains panicle<sup>&#x02212;1</sup> and panicles m<sup>&#x02212;2</sup> was noticed with application of P over control (Bakhsh et al., <xref ref-type="bibr" rid="B27">2012</xref>; Rasavel and Ravichandran, <xref ref-type="bibr" rid="B74">2013</xref>). Fageria (<xref ref-type="bibr" rid="B38">2007</xref>) reported an increase of 80% in biological yield and 180% in grain yield of rice with the application of higher P rate of 131 kg P ha<sup>&#x02212;1</sup>. Rasavel and Ravichandran (<xref ref-type="bibr" rid="B74">2013</xref>) reported the highest grain and straw yields with only 50 kg P<sub>2</sub>O<sub>5</sub> ha<sup>&#x02212;1</sup> application. Yoseftabar (<xref ref-type="bibr" rid="B89">2013</xref>), on the other hand, recorded maximum grain and biological yield with 90 kg P ha<sup>&#x02212;1</sup>. Recently, Amanullah and Inamullah (<xref ref-type="bibr" rid="B10">2016a</xref>) suggested that increase in P level increases dry matter partitioning into the panicles of rice, increasing panicle weight and harvest index in different rice genotypes. Mafi et al. (<xref ref-type="bibr" rid="B59">2013</xref>) also reported that increasing P level increased yield and harvest index in rice.</p>
</sec>
<sec>
<title>Organic sources</title>
<p>The results of our study also demonstrated that application of different animal manures (experiment one) and plant residues (experiment two) significantly improved phenological development, growth parameters, yield and yield components of hybrid rice. The differences in the C:N ratios of different organic sources (Amanullah and Hidayatullah, <xref ref-type="bibr" rid="B7">2016</xref>) may have influenced the availability and uptake of nutrients, especially phosphorus, by the plants that affected phenology, growth, and yield. Hidaytullah (<xref ref-type="bibr" rid="B48">2015</xref>) found earlier phenological development and better growth for hybrid rice (Pukhraj) with application of poultry manure due to its lower C:N ratio than other organic sources used (sheep manure, cattle manure, onion leaves, berseem residues, and wheat straw). Variation in growth parameters while using organic manure was reported earlier by Babu et al. (<xref ref-type="bibr" rid="B25">2001</xref>) and Rani et al. (<xref ref-type="bibr" rid="B73">2001</xref>). Recently, (Hidaytullah, <xref ref-type="bibr" rid="B48">2015</xref>) and Amanullah and Khalid (<xref ref-type="bibr" rid="B13">2015</xref>), and Amanullah and Hidayatullah (<xref ref-type="bibr" rid="B7">2016</xref>) revealed that application of poultry manure (with lower C:N ratio) increased growth and yield of hybrid rice because of the higher nitrogen availability (Hidaytullah, <xref ref-type="bibr" rid="B48">2015</xref>). Mohandas et al. (<xref ref-type="bibr" rid="B64">2008</xref>) and Enujeke (<xref ref-type="bibr" rid="B36">2013</xref>) also reported that application of poultry manure increased plant growth and yield because more nutrients were made readily available and easily absorbable by receiving plants leading to faster growth and development. Poultry manures application also might have improved soil quality to enhance the yield components and grain yield of rice (Larson and Clapp, <xref ref-type="bibr" rid="B58">1984</xref>; Fagimi and Odebode, <xref ref-type="bibr" rid="B42">2007</xref>). According to Ewulo et al. (<xref ref-type="bibr" rid="B37">2008</xref>), addition of poultry manure (50 t ha<sup>&#x02212;1</sup>) reduced soil bulk density (1.11 g/cc) &#x00026; soil pH (6.2), and increased soil organic matter (2.77%), nitrogen (0.31%), phosphorus (32.6 mg/kg) and soil moisture (17.2%) as compared with control (no poultry manure applied) with higher soil bulk density (1.43 g/cc) &#x00026; soil pH (7.0), and lower soil organic matter content (1.40%), nitrogen (0.09%), phosphorus (10.6 mg/kg), and soil moisture content (11.9%). The improvement in soil quality is primarily attributable to improvement in soil organic matter content. Aluko and Oyedele (<xref ref-type="bibr" rid="B4">2005</xref>) reported that increase in soil moisture content with poultry manure is attributable to its mulching effect which improved moisture retention and water acceptance as a result of improved soil structure and macro porosity. Amanullah and Hidayatullah (<xref ref-type="bibr" rid="B7">2016</xref>) found that application of animal based manures (poultry, sheep, and cattle) were far better in terms of higher yield and yield components of rice as compared with plant residues (berseem, onion, and wheat). Wheat straw, on the other hand, had negative influence on yield and yield components in hybrid rice (Amanullah and Hidayatullah, <xref ref-type="bibr" rid="B7">2016</xref>). The negative impact of plant residues on rice under anaerobic conditions was earlier reported by Yadvinder et al. (<xref ref-type="bibr" rid="B88">2005</xref>) and Olk et al. (<xref ref-type="bibr" rid="B68">2009</xref>). The decrease in harvest index under plant residues was due to the poor P content in plant residues, and also plant residue P retention in soil was low (Yadvinder et al., <xref ref-type="bibr" rid="B88">2005</xref>; Amanullah and Inamullah, <xref ref-type="bibr" rid="B10">2016a</xref>). Hossaen et al. (<xref ref-type="bibr" rid="B50">2011</xref>), Hidayatullah et al. (<xref ref-type="bibr" rid="B49">2013</xref>), and Amanullah and Khan (<xref ref-type="bibr" rid="B16">2015</xref>) reported that application of organic manures increase yield and harvest index over control. Amanullah and Stewart (<xref ref-type="bibr" rid="B20">2015</xref>) confirmed that leaf area per plant, leaf area expansion rate, specific leaf area, leaf area ratio, plant height, stem elongation rate, root length, number of roots per plant, number of tillers per plant, absolute growth rate and crop growth rate increased significantly in both wheat and rye crops grown under organic soils as compared with inorganic soils at different growth stages.</p>
</sec>
</sec>
<sec sec-type="conclusions" id="s5">
<title>Conclusion</title>
<p>Poultry manure was a better organic source for improving growth and yield of hybrid rice as compared to sheep and cattle manures. Among the plant residues both garlic residue and peach leaves were found more beneficial in terms of better growth and higher yield over wheat straw. Higher phosphorus level (90 kg P ha<sup>&#x02212;1</sup>) was found more beneficial in terms of better growth, higher yield and yield components under both experiments. We recommend a combination of inorganic P with organic sources to maximize not only growth and yield but also soil improvement for hybrid rice production in Northwest Pakistan.</p>
</sec>
<sec id="s6">
<title>Author contributions</title>
<p>A: Designed the research project, supervised the research work, and wrote the final manuscript. STK: Conducted the field experiments, took data, and wrote the report for his degree requirement. AI: Helped in the statistical analysis of data, made tables, and downloaded related literature. SF: Downloaded literature and helped in the revision and improved the quality of the manuscript.</p>
<sec>
<title>Conflict of interest statement</title>
<p>The authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest.</p>
</sec>
</sec>
</body>
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