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长江中下游小麦产量、土壤酶活性及微生物群落结构对磷肥减施的响应
引用本文:陈露,王秀斌,朱瑞利,毛琳琳,孙静文. 长江中下游小麦产量、土壤酶活性及微生物群落结构对磷肥减施的响应[J]. 植物营养与肥料学报, 2021, 27(3): 392-402. DOI: 10.11674/zwyf.20506
作者姓名:陈露  王秀斌  朱瑞利  毛琳琳  孙静文
作者单位:中国农业科学院农业资源与农业区划研究所/农业农村部植物营养与肥料重点实验室,北京 100081
基金项目:国家重点研发计划项目(2018YFD0200500);国家自然科学基金项目(31972514)。
摘    要:[目的]在"化肥零增长"背景下,探究磷肥减施对小麦产量及土壤质量的影响,为长江流域中下游地区磷肥减施提供科学依据.[方法]在湖北和浙江麦区,采用种肥同播技术进行田间试验,设置5个处理:1)不施磷肥(CK);2)习惯施磷量(FP);3)习惯施磷量80%(P80);4)习惯施磷量60%(P60);5)习惯施磷量60%+解磷...

关 键 词:磷肥减施  小麦产量  酶活性  微生物群落  种肥同播
收稿时间:2020-10-13

Response of wheat yield and soil microbial activity to phosphorus fertilizer reduction in the middle and lower reaches of the Yangtze River
CHEN Lu,WANG Xiu-bin,ZHU Rui-li,MAO Lin-lin,SUN Jing-wen. Response of wheat yield and soil microbial activity to phosphorus fertilizer reduction in the middle and lower reaches of the Yangtze River[J]. Plant Nutrition and Fertilizer Science, 2021, 27(3): 392-402. DOI: 10.11674/zwyf.20506
Authors:CHEN Lu  WANG Xiu-bin  ZHU Rui-li  MAO Lin-lin  SUN Jing-wen
Affiliation:Institute of Agricultural Resource and Regional Planning, Chinese Academy of Agricultural Sciences / Ministry of Agriculture and Rural Affairs Key Laboratory of Plant Nutrition and Fertilizer, Beijing 100081, China.
Abstract:[Objectives]To provide scientific basis for phosphorus fertilizer reduction in the middle and lower reaches of the Yangtze River Basin,we studied the effect of phosphorus fertilizer reduction on wheat yield and soil quality.[Methods]The field experiments were conducted in Hubei and Zhejiang Provinces.The treatments included:non-phosphorus application control(CK),farmers’conventional phosphorus application(FP),80%of farmers’conventional phosphorus application(P80),60%of farmers’conventional phosphorus application(P60),and P60+phosphate-solubilizing bacteria application(PB60).Wheat yield data were collected from 2019 through 2020.Following wheat harvest in 2020,we assessed the physical and chemical properties,microbial biomass phosphorus content,enzyme activity and phospholipid fatty acid content within 0—20 cm horizon of the cultivated soils.[Results]In Hubei wheat region,the wheat yields under FP,P80 and P60 treatments were similar in the first year of phosphorus fertilizer reduction.However,wheat yields under P80 and P60 treatments were less than that under FP in the second year of phosphorus fertilizer reduction.In Zhejiang province,the wheat yields under P80 and FP treatments were similar in two years,while PB60 increased the wheat yield compared with P60 in 2020.In Hubei Province,available P contents under CK,P80 and P60 treatments were less than that under FP,whereas P80 and P60 treatments produced higher soil microbial biomass P(MBP)content than FP.In Zhejiang Province,P80 and FP treatments had similar soil available P content,while under P60 and CK treatments soil available P content was significantly lower than that under FP treatment.Compared with FP treatment,P80 and P60 treatments decreased soil phosphorus activation coefficient and ratio of bacteria to fungi,but they increased soil NH4+-N content,NO3–-N content,soil N-cycling enzyme activities and relative fungi abundance in the two provinces.FP,P80 and P60 treatments had similar soil pH value,organic carbon content,total N content,readily available K content,soil phosphatase activity,relative abundance of bacteria and relative abundance of arbuscular mycorrhizal fungi in the two provinces.Compared to P60,PB60 treatment elevated soil available P content,soil phosphorus activation coefficient,and relative abundance of arbuscular mycorrhizal fungi.Redundancy analysis indicated that soil microbial biomass P and soil NH4+-N were the dominant factors affecting soil microbial community structure change in Hubei and Zhejiang provinces,respectively.[Conclusions]We found that soil available P,microbial biomass P,and wheat yield had different responses to phosphorus fertilizer reduction in the two wheat fields.Continuous reduction of phosphate fertilizer could result in decrease in wheat yield in Hubei Province due to low soil available P content;thus,it is not recommended to reduce phosphorus fertilizer rate in Hubei.However,in Zhejiang Province where soil available P content is high and P reduction doesn’t decrease the wheat yield and soil quality,80%of farmers’conventional phosphorus application is recommended.In addition,phosphate fertilizer reduction does not significantly affect soil phosphatase activity,but significantly affects soil microbial community structure,increases the relative abundance of soil fungi and decreases the bacterial/fungal ratio.The application effect of phosphate-solubilizing bacteria in Zhejiang wheat area is better than that in Hubei wheat area.
Keywords:reduced phosphorus fertilizer  wheat yield  enzyme activity  microbial community  seed and fertilizer sown together
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