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施氮量对川东南冬水田稻鱼共作系统下杂交稻产量和土壤养分的影响

徐富贤 周兴兵 张林 郭晓艺 刘茂 朱永川 熊洪 郭长春 蒋鹏

植物营养与肥料学报2024,Vol.30Issue(5):909-921,13.
植物营养与肥料学报2024,Vol.30Issue(5):909-921,13.DOI:10.11674/zwyf.2023527

施氮量对川东南冬水田稻鱼共作系统下杂交稻产量和土壤养分的影响

Effects of nitrogen application rate on grain yield of hybrid rice and soil nutrient under rice-fish co-culture system in Southeast of Sichuan Province

徐富贤 1周兴兵 2张林 2郭晓艺 2刘茂 2朱永川 2熊洪 2郭长春 2蒋鹏1

作者信息

  • 1. 四川省农业科学院水稻高粱研究所/农业农村部西南水稻生物学与遗传育种重点实验室,四川德阳 618000||作物生理生态及栽培四川省重点实验室,四川德阳 618000
  • 2. 四川省农业科学院水稻高粱研究所/农业农村部西南水稻生物学与遗传育种重点实验室,四川德阳 618000
  • 折叠

摘要

Abstract

[Objectives]We investigated the rice yield and soil nutrient and pH variations caused by nitrogen application rates under no-tillage cultivation practice in a fish-rice integrated farming system,so as to provide a theoretical basis for long-term and reasonable fertilizer management under the system.[Methods]A localized field experiment was carried out for five years in a winter logging-water field in Southeast of Sichuan Province from 2018 to 2022.No-tillage cultivation practice was used,and two hybrid rice cultivars Rongyou 1015 and Nei 6you 103 were used as test materials.Four N fertilizer treatments were 0,45,90 and 135 kg/hm2(denoted as N0,N45,N90,and N135),representing low,meddle and high N rate,except the N0.At rice harvesting stage of each year,the grain yield,yield components,and nitrogen content in different part of hybrid rice were analyzed.The soil total and available N,P and K content,and the pH in 0-20 cm layer were determined.[Results]Experimental years and N rates significantly affected grain yield and yield components of hybrid rice in the rice-fish integrated farming system.During the five years,the grain yield was positively correlated with N rate(Fyear=7.95**-63.44**,FN rate=3.95*-282.99**).Compared with N45,N90 and N135 treatment increased grain yield by 6.37%-26.53%and 9.11%-25.11%,respectively,due to the higher panicle number per unit area and spikelet per panicle.And N90 was also recorded similar or even higher grain yield,compared with N135.Stepwise regression analysis showed that the yield components were positively correlated with grain yield,and the path analysis showed that panicle number and spikelets per panicle had the highest direct contribution(0.8754 and 0.4987,respectively)and total contribution(0.6364 and 0.3598,respectively)to grain yield.In the fish-rice integrated farming,soil pH significantly decreased with the elongation of experimental years(r=-0.9823**-0.9385**),while soil organic matter,total and available P and K kept increased(r=0.7128**-0.9932**).The soil total and alkali hydrolyzed N(AN)significantly decreased with the increase of experimental years under N0 and N45,but significantly increased under N90 and N135.There was a linear relationship(P<0.01)between grain yield and soil nutrient content under rice-fish integrated farming system,and improving the supplying capacity of soil phosphorus and potassium was an important approach to obtain high rice grain yield.[Conclusions]The optimal N application rate for hybrid rice is 90 kg/hm2 under rice-fish co-culture system,due to the higher panicle number per unit area and spikelet number per panicle of hybrid rice.Continuous application of medium and high nitrogen rate could increase soil organic matter,total and available nitrogen,phosphorus,and potassium,and the organic matter and nutrient contents tend to become higher with the extension of rice-fish co-culture years,while the soil pH is on the opposite.So nitrogen application rate should be controlled to relatively low level in the rice-fish co-culture system of southeast of Sichuan Province.

关键词

冬水田/稻鱼共作/氮肥管理/水稻产量/土壤养分

Key words

all-time logging-water paddy fields/rice-fish co-culture system/nitrogen management practice/rice grain yield/soil nutrients

引用本文复制引用

徐富贤,周兴兵,张林,郭晓艺,刘茂,朱永川,熊洪,郭长春,蒋鹏..施氮量对川东南冬水田稻鱼共作系统下杂交稻产量和土壤养分的影响[J].植物营养与肥料学报,2024,30(5):909-921,13.

基金项目

国家现代农业产业技术体系建设专项(CARS-01) (CARS-01)

四川省科技计划项目(2022ZDZX0016) (2022ZDZX0016)

四川省财政自主创新专项(2022ZZCX072) (2022ZZCX072)

四川省"天府万人计划"项目. ()

植物营养与肥料学报

OA北大核心CSTPCD

1008-505X

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