数字农科院2.0

Smart nutrient management Nutrient Expert® enhances rice productivity through adjusting source-sink relationships during grain filling

文献类型: 外文期刊

作者: Zhuo Xu;Ping He;Xinyou Yin;Paul C. Struik

作者机构:

关键词: Nitrogen application rate;Nitrogen fertiliser;Oryza sativa;Source-sink relationship;Sustainability;Yield

期刊名称: Field Crops Research

ISSN: 0378-4290

年卷期: 2024 年 316 卷

页码:

收录情况: SCIE(2024版)

摘要: Smart nutrient management optimises chemical fertiliser application while maintaining crop yields. Nutrient Expert® (NE) is a user-friendly smart nutrient management system designed to improve the productivity of smallholder farmers. However, the physiological mechanisms underlying the effects of nutrient management have yet to be fully understood. We analysed data from field experiments conducted in South and Northeast China to explore the effects of different nitrogen (N) fertiliser inputs and nutrient management systems on panicle weight and post-flowering source-sink relationships in various cropping seasons of rice. Treatments included NE recommendation, local farmers’ practices (FP), soil test based fertiliser recommendation (ST), and four N rate treatments with plus or minus 25 % and plus or minus 50 % of NE. Our analysis indicated that rice panicle weight and N accumulation increased with increasing N application rate up to a recommended rate by NE in most cases, beyond which there was little further increase. Moreover, NE significantly enhanced rice panicle weight and N accumulation compared to FP and ST in the single-season rice in Northeast China. In all experiments, both in South and Northeast China, the post-flowering source-sink difference gradually increased from negative to positive values with an increase in N application rate. Too low N application rate resulted in insufficient source supply, while too high N application rate gave excessive source supply since the sink demand reached its upper limit. Compared with FP and ST, NE achieved higher source supply and sink demand in the single-season rice, and mobilised more N from source organs to sink organs. Our analysis provides evidence for positive impacts of integrated nutrient management strategies on rice source-sink relationships and offers a physiological basis for improved rice productivity of designed NE nutrient management strategies.

分类号:

  • 相关文献

[1]Yield production efficiencies as affected by nutrient management strategies under different rice cropping systems. Xu, Zhuo,He, Ping,Yin, Xinyou,Struik, Paul C.. 2025

[2]Optimizing nutrient management for various potato varieties based on source–sink relationships. Weiyan Wang,Qiying Wu,Xiaojing Qu,Xiya Wang,Jun Zhang,Yu Duan,Ping He. 2025

[3]Impact of planting density and nitrogen application on maize source-sink relationships and yield under drip irrigation. Linli Zhou,Dongping Shen,Keru Wang,Bo Ming,Liang Fang,Zhen Wang,Lei Sun,Jinglong Liu,Guoqiang Zhang,Shaokun Li. 2025

[4]Optimizing light and nitrogen distribution in maize-soybean intercropping systems to enhance crop yield. Zhen Fan,Binbin Qiang,Xinbo Zhang,Yanrong Lin,Yulin Wu,Xining Zhao,Enke Liu,Tie Cai,Peng Zhang,Tiening Liu,Xiaolong Ren,Xiaoli Chen. 2025

[5]Effects of Nitrogen Fertilizer Management on Stalk Lodging Resistance Traits in Summer Maize. Juan Zhai,Yuanmeng Zhang,Guoqiang Zhang,Ming Tian,Ruizhi Xie,Bo Ming,Peng Hou,Keru Wang,Jun Xue,Shaokun Li. 2022

[6]Progress in Significant Soil Science Fields of China over the Last Three Decades: A Review. Zhao Qi-Guo,Yan Xiao-Yuan,Zhang Gan-Lin,Cai Zu-Cong,He Ji-Zheng,Zhang Bin.

[7]Effects of watering regime and nitrogen application rate on the photosynthetic parameters, physiological characteristics, and agronomic traits of rice. Cao, Xiaochuang,Zhong, Chu,Sajid, Hussain,Zhu, Lianfeng,Zhang, Junhua,Jin, Qianyu,Wu, Lianghuan.

[8]Dissection of component QTL expression in yield formation in rice. L.B.Guo , Y.Z.Xing , H.W.Mei , C.G.Xu , C.H.Shi , P.Wu , L.J.Luo *. 2005

[9]Elucidating the effects of manganese on the growth and cadmium accumulation of OsNRAMP5 mutant rice. Xian'an Yu,Qiuqin Zhou,Xin Yuan Huang,Mingxue Chen,Jiawen Zhou,Tong Zhou,Pengjie Hu,Xia Pan,Miaomiao Cheng,Yongming Luo,Peter Christie,Longhua Wu. 2025

[10]Physiological and molecular studies of staygreen caused by pod removal and seed injury in soybean. Zhang, Xinxin,Guo, Changhong,Zhang, Xinxin,Wang, Min,Wu, Tingting,Wu, Cunxiang,Jiang, Bingjun,Han, Tianfu. 2016

[11]Photosynthetic characteristics of the subtending leaf and the relationships with lint yield and fiber quality in the late-planted cotton. Jingran Liu,Yali Meng,Binglin Chen,Zhiguo Zhou,Yina Ma,Fengjuan Lv,Ji Chen,Youhua Wang.

[12]The fate of N-15-labelled urea in an alkaline calcareous soil under different N application rates and N splits. Wang, Xiubin,Zhou, Wei,Liang, Guoqing,Pei, Xuexia,Li, Kejiang.

[13]Responses of soil properties, microbial community and crop yields to various rates of nitrogen fertilization in a wheat-maize cropping system in north-central China. Zhao, Shicheng,Qiu, Shaojun,Zhou, Wei,He, Ping,He, Ping,Zhao, Shicheng,Qiu, Shaojun,Zhou, Wei,He, Ping,Cao, Caiyun,Zheng, Chunlian.

[14]An optimal regional nitrogen application threshold for wheat in the North China Plain considering yield and environmental effects. Wang, Hongyuan,Zhang, Yitao,Liu, Hongbin,Zhai, Limei,Zhang, Yitao,Chen, Anqiang,Lei, Baokun,Ren, Tianzhi.

[15]Response of grain yield to plant density and nitrogen rate in spring maize hybrids released from 1970 to 2010 in Northeast China. Chunrong Qian,Yang Yu,Xiujie Gong,Yubo Jiang,Yang Zhao,Zhongliang Yang,Yubo Hao,Liang Li,Zhenwei Song,Weijian Zhang. 2016

[16]Water-Use Characteristics of Wheat–Maize Rotation System as Affected by Nitrogen Application Rate in North China Plain. Jingtao Qin,Xichao Fan,Xiaosen Wang,Mingliang Jiang,Mouchao Lv. 2024

[17]Combination of nitrogen and organic fertilizers reduce N2O emissions while increasing winter wheat grain yields and quality in China. Yakang Jin,Hong Chen,Xiaoqian Tang,Lei Zhang,Jun Yan,Shuangjun Li,Ya Chen,Xinwei Li,Hongbao Wu,Xin Xiao. 2024

[18]Nitrogen Dynamics and Environmental Sustainability in Rice-Crab Co-Culture System: Optimal Fertilization for Sustainable Productivity. Li, Hao,Wu, Shuxia,Xu, Yang,Li, Weijing,Zhang, Xiushuang,Ma, Siqi,Sun, Wentao,Li, Bo,Fan, Bingqian,Lei, Qiuliang,Liu, Hongbin. 2026

[19]Differential nitrogen demand in maize under high and low planting densities. Zhang, Yuanmeng,Zhai, Juan,Zhang, Guoqiang,Cao, Yuehong,Xu, Wenqian,Ming, Bo,Xie, Ruizhi,Wang, Keru,Li, Shaokun,Xue, Jun,Wang, Zhigang. 2025

[20]ASSOCIATION OF QUANTITATIVE TRAIT LOCI FOR PLANT HEIGHT WITH MAJOR DWARFING GENES IN RICE. Huang, N,Courtois, B,Khush, GS,Lin, HX,Wang, GL,Wu, P,Zheng, KL.

作者其他论文 更多>>