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轮作体系下冬油菜养分利用效率的区域研究
作者姓名:LI Hui  LU Jianwei  REN Tao  LI Xiaokun  CONG Rihuan
基金项目:This research was supported by the National Key Research and Development Program of China(2016YFD0200102),the Fundamental Research Funds for the Central Universities of China(2662016-PY117),the Earmarked Fund for China Agriculture Research System(CARS-13),the Chinese National Project of Soil Testing and Fertilizer Recommendation
摘    要:Fertilization is essential for oilseed rape because it is sensitivity to nutrient deficiency, especially for winter oilseed rape(Brassica napus L.). To investigate regional nutrient efficiency and nutrient uptake-yield relationship of winter oilseed rape in an intensive cropping system, this study used data from 619 site-year on-farm experiments carried out in the winter oilseed rape planting area of the Yangtze River Basin, China from 2005 to 2010, with large yield in the range of 179–4 470 kg ha~(-1). Currently recommended application rates of N, P and K fertilizers increased rapeseed yield at different levels of soil indigenous nutrient supply(INS) in this region. Boundary values of plant nutrient uptake were established to analyze the nutrient uptake-yield relationship of winter oilseed rape(internal nutrient efficiency), i.e., 128 kg N ha~(-1), 24 kg P ha~(-1), and 122 kg K ha~(-1). The internal nutrient efficiency declined by 48.2%–64.1% when nutrient uptake exceeded the boundary value, resulting in excessive nutrient uptake(i.e., low yield response with high nutrient uptake), especially for K. In the intensive cropping system, agronomic efficiencies of N, P, and K were 5.9, 3.4, and3.6 kg kg~(-1), and recovery efficiencies of N, P, and K were 35.6%, 24.1%, and 36.8%, respectively. These findings showed that the fertilization rate should be optimized by considering INS, nutrient status, and nutrient efficiency of winter oilseed rape. In this study,considering the lower yield improvement to high K uptake levels and low K fertilizer efficiency, application rate of K fertilizer should be reduced since soil K deficiency has already been mitigated.

关 键 词:agnomic  efficiency  fertilization  indigenous  nutrient  supply  internal  nutrient  efficiency  nutrient  uptake  recovery  efficiency  regional  scale  yield
收稿时间:2016/2/5 0:00:00
修稿时间:2017/1/5 0:00:00

Nutrient efficiency of winter oilseed rape in an intensive cropping system: A regional analysis
LI Hui,LU Jianwei,REN Tao,LI Xiaokun,CONG Rihuan.Nutrient efficiency of winter oilseed rape in an intensive cropping system: A regional analysis[J].Pedosphere,2017,27(2):364-370.
Authors:LI Hui  LU Jianwei  REN Tao  LI Xiaokun and CONG Rihuan
Institution:College of Resources and Environment,Huazhong Agricultural University,Wuhan 430070(China);Key Laboratory of Arable Land Conservation(Middle and Lower Reaches of Yangtze River),Ministry of Agriculture,Wuhan 430070(China)
Abstract:Fertilization is essential for oilseed rape because it is sensitivity to nutrient deficiency, especially for winter oilseed rape ( Brassica napus L.).To investigate regional nutrient efficiency and nutrient uptake-yield relationship of winter oilseed rape in an intensive cropping system, this study used data from 619 site-year on-farm experiments carried out in the winter oilseed rape planting area of the Yangtze River Basin, China from 2005 to 2010, with large yield in the range of 179--4470 kg ha-1.Currently recommended application rates of N, P and K fertilizers increased rapeseed yield at different levels of soil indigenous nutrient supply (INS) in this region.Boundary values of plant nutrient uptake were established to analyze the nutrient uptake-yield relationship of winter oilseed rape (internal nutrient efficiency), i.e., 128 kg N ha-1, 24 kg P ha-1, and 122 kg K ha-1. The internal nutrient efficiency declined by 48.2\%--64.1\% when nutrient uptake exceeded the boundary value, resulting in excessive nutrient uptake ( i.e., low yield response with high nutrient uptake), especially for K. In the intensive cropping system, agronomic efficiencies of N, P, and K were 5.9, 3.4, and 3.6 kg kg-1, and recovery efficiencies of N, P, and K were 35.6\%, 24.1\%, and 36.8\%, respectively. These fin-dings showed that the fertilization rate should be optimized by considering INS, nutrient status, and nutrient efficiency of winter oilseed rape. In this study, considering the lower yield improvement to high K uptake levels and low K fertilizer efficiency, application rate of K fertilizer should be reduced since soil K deficiency has already been mitigated.
Keywords:agnomic efficiency  fertilization  indigenous nutrient supply  internal nutrient efficiency  nutrient uptake  recovery efficiency  regional scale  yield
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