Characteristics of Nutrient Accumulation and Efficiency in Maize under Different Agronomic Managements

سال انتشار: 1394
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 55

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شناسه ملی سند علمی:

JR_JASTMO-17-7_009

تاریخ نمایه سازی: 1 آذر 1402

چکیده مقاله:

A four-year field experiment was conducted to understand the characters of nutrient accumulation and distribution in maize under different yield levels, so as to provide scientific guidance for effective utilization of mineral fertilizers, and eventually for high yield of spring maize. The grain yield, nutrient (nitrogen, phosphorous, potassium) accumulation and uptake efficiency were evaluated under different agronomic managements and nitrogen application treatments. The data showed that the two-year average grain yield under high Yield Management (HY) was significantly increased by ۳۵.۳% as compared with Traditional Farming management (FP). Interestingly, the increased range of grain yield may be associated with harvest ear numbers, indicating that high planting density could lead to high maize production. Moreover, the total amounts of nitrogen, phosphorous and potassium in maize significantly increased and the ratio of accumulation after flowering was also improved under HY management. Our results suggested that the high grain yield and nutrient use efficiency would ultimately be achieved through integrating and optimizing high yield cultivation techniques, which not only improve biomass and harvest index, but also promote the growth and nutrient accumulation of maize.

نویسندگان

H. G. Cai

Institute of Agricultural Resource and Environment, Jilin Academy of Agricultural Sciences, Key Laboratory of Plant Nutrition and Agro-Environment in Northeast Region, MOA, PR China/State Engineering Laboratory of Maize, Changchun ۱۳۰۳۳۳, People’s Republi

W. Ma

Institute of Crop Science, Chinese Academy of Agricultural Sciences, Beijing ۱۰۰۰۸۱, People’s Republic of China.

X. Z. Zhang

Institute of Agricultural Resource and Environment, Jilin Academy of Agricultural Sciences, Key Laboratory of Plant Nutrition and Agro-Environment in Northeast Region, MOA, PR China/State Engineering Laboratory of Maize, Changchun ۱۳۰۳۳۳, People’s Republi

J. Q. Ping

Department of Agronomy, Purdue University, ۹۱۵ W State Street, West Lafayette, IN ۴۷۹۰۷, USA.

P. Zhu

Institute of Agricultural Resource and Environment, Jilin Academy of Agricultural Sciences, Key Laboratory of Plant Nutrition and Agro-Environment in Northeast Region, MOA, PR China/State Engineering Laboratory of Maize, Changchun ۱۳۰۳۳۳, People’s Republi

X. G. Yan

Institute of Agricultural Resource and Environment, Jilin Academy of Agricultural Sciences, Key Laboratory of Plant Nutrition and Agro-Environment in Northeast Region, MOA, PR China/State Engineering Laboratory of Maize, Changchun ۱۳۰۳۳۳, People’s Republi

J. Z. Liu

Institute of Agricultural Resource and Environment, Jilin Academy of Agricultural Sciences, Key Laboratory of Plant Nutrition and Agro-Environment in Northeast Region, MOA, PR China/State Engineering Laboratory of Maize, Changchun ۱۳۰۳۳۳, People’s Republi

J. C. Yuan

Institute of Agricultural Resource and Environment, Jilin Academy of Agricultural Sciences, Key Laboratory of Plant Nutrition and Agro-Environment in Northeast Region, MOA, PR China/State Engineering Laboratory of Maize, Changchun ۱۳۰۳۳۳, People’s Republi

J. Ren

Institute of Agricultural Resource and Environment, Jilin Academy of Agricultural Sciences, Key Laboratory of Plant Nutrition and Agro-Environment in Northeast Region, MOA, PR China/State Engineering Laboratory of Maize, Changchun ۱۳۰۳۳۳, People’s Republi

L. C. Wang

Institute of Agricultural Resource and Environment, Jilin Academy of Agricultural Sciences, Key Laboratory of Plant Nutrition and Agro-Environment in Northeast Region, MOA, PR China/State Engineering Laboratory of Maize, Changchun ۱۳۰۳۳۳, People’s Republi

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