Simultaneously improving yield and nitrogen use efficiency in a double rice cropping system in China
文献类型: 外文期刊
第一作者: Xu, Zhuo
作者: Xu, Zhuo;He, Ping;Ding, Wencheng;Huang, Qiuhong;Xu, Zhuo;Yin, Xinyou;Struik, Paul C.;Huang, Qiuhong;Liu, Kailou
作者机构:
关键词: Aboveground biomass; Nitrogen uptake; Nitrogen management; Nutrient recovery efficiency; Nutrient translocation
期刊名称:EUROPEAN JOURNAL OF AGRONOMY ( 影响因子:5.722; 五年影响因子:6.384 )
ISSN: 1161-0301
年卷期: 2022 年 137 卷
页码:
收录情况: SCI
摘要: The Nutrient Expert system (NE) has been proposed to improve yield and nitrogen (N) use efficiency (NUE) in the double rice cropping systems in China. However, the advantage of the NE system has yet to be quantified experimentally. A four-year field experiment was conducted in a double rice cropping system in China, to evaluate the ability of NE in improving yield and NUE. The experimental treatments consisted of NE based fertilization, current farmers' practices (FP) and soil test based fertilizer recommendation (ST), and a series of nitrogen (N) rate treatments. The NUE decreased with increasing N application, while the yield did not increase significantly beyond N application rates of about 140 kg ha- 1 (corresponding to the amount proposed by NE) in both early and late rice. NE increased grain yield (by 10.3% and 6.3%) and N uptake (by 5.7% and 4.0%) compared with FP and ST, respectively. NE significantly increased NUE compared with FP, and decreased the N surplus in comparison to FP and ST. The N dilution curve was Nc = 34.50 W-0.55 for early rice and Nc = 37.71 W-0.59 for late rice (where Nc is the N concentration in g kg- 1, and W is the dry matter accumulation in t ha- 1). The relationship between relative yield and the nitrogen nutrition index derived from the dilution curves confirmed that NE offered an optimum N application rate (approximately 140 kg ha-1) for both early and late rice. Carbon (C) and N translocation from vegetative organs to grains was enhanced with increasing N rate, while NE significantly increased C and N translocation compared with FP. Overall, the NE system ensured a high rice yield, increased N uptake and NUE. Therefore, the NE, as a user-friendly tool, is a sustainable fertilizer recommendation approach suitable for double rice cropping system, especially when soil testing is not available or timely for smallholders.
分类号:
- 相关文献
作者其他论文 更多>>
-
Genomic diversity, population structure, and genome-wide association reveal genetic differentiation and trait improvements in mango
作者:Ma, Xiaowei;Wu, Hongxia;Wang, Songbiao;Zhang, Yuehua;Su, Muqing;Zheng, Bin;Xu, Wentian;Ma, Xiaowei;Wu, Hongxia;Wang, Songbiao;Zhang, Yuehua;Su, Muqing;Zheng, Bin;Xu, Wentian;Ma, Xiaowei;Wu, Hongxia;Wang, Songbiao;Zhang, Yuehua;Su, Muqing;Zheng, Bin;Xu, Wentian;Liu, Bin;Pan, Hongbing;Du, Bang;Wang, Jun;He, Ping;Chen, Qianfu;An, Hong;Luo, Xiang
关键词:
-
Optimized Nitrogen Fertilization Promoted Soil Organic Carbon Accumulation by Increasing Microbial Necromass Carbon in Potato Continuous Cropping Field
作者:Lv, Huidan;He, Ping;Zhao, Shicheng;Lv, Huidan;He, Ping;Zhao, Shicheng;Lv, Huidan;He, Ping;Zhao, Shicheng
关键词:nutrient expert; soil organic carbon fraction; microbial residue carbon; soil enzyme activity; optimizing fertilization
-
Response of soil microbial properties in the life cycle of potatoes to organic substitution regimes in North China
作者:Wang, Xiya;Zhao, Shicheng;Xu, Xinpeng;Liu, Mengjiao;He, Ping;Zhou, Wei;Wang, Xiya;Zhao, Shicheng;Xu, Xinpeng;Liu, Mengjiao;He, Ping;Zhou, Wei;Jiang, Rong;Zhang, Jun;Duan, Yu;He, Ping;Zhou, Wei
关键词:Organic substitution regime; Potato growth period; Soil chemistry properties; Soil microbial diversity; Soil microbial network
-
Benefits and trade-offs of replacing inorganic fertilizer by organic substrate in crop production: A global meta-analysis
作者:Wang, Xiya;Liu, Mengjiao;Cui, Jiwen;Fang, Kangrui;Zhao, Shicheng;He, Ping;Zhou, Wei;Wang, Xiya;Liu, Mengjiao;Cui, Jiwen;Fang, Kangrui;Zhao, Shicheng;He, Ping;Zhou, Wei;Ciampitti, Ignacio A.;Zhou, Wei
关键词:Organic substitution regimes; Crop productivity; Soil carbon and nitrogen losses; Biofertility; Trade-offs
-
Exploring management strategies to improve yields and reduce reactive nitrogen emissions in a summer maize-winter wheat cropping system under long-term climate variability
作者:Huang, Shaohui;Yang, Junfang;Xing, Suli;Yang, Wenfang;Yang, Yunma;Jia, Liangliang;Huang, Shaohui;He, Ping
关键词:DNDC model; reactive nitrogen emissions; sensitivity analysis; winter wheat-summer maize rotation
-
Maize functional requirements drive the selection of rhizobacteria under long-term fertilization practices
作者:Zhang, Liyu;Yuan, Liang;Wen, Yanchen;Zhang, Meiling;Huang, Shuyu;Wang, Shiyu;Zhao, Yuanzheng;Li, Dongchu;Xu, Jiukai;Zhao, Bingqiang;Zhang, Lu;Zhang, Huimin;Zhou, Wei;Ai, Chao;Zhang, Liyu;Yuan, Liang;Wen, Yanchen;Zhang, Meiling;Huang, Shuyu;Wang, Shiyu;Zhao, Yuanzheng;Xu, Jiukai;Zhao, Bingqiang;Zhou, Wei;Ai, Chao;Hao, Xiangxiang;Li, Lujun;Gao, Qiang;Wang, Yin;Zhang, Shuiqing;Huang, Shaomin;Liu, Kailou;Yu, Xichu
关键词:functional traits; maize; microbiome; nutrient status; rhizosphere; soil types
-
Different biochemical composition and oxidation state of soil organic matter between upland and paddy fields
作者:Feng, Miao;Shang, Yuntao;Guo, Changcheng;Wang, Yidong;Feng, Miao;Wang, Yidong;Liu, Kailou;Lou, Yilai;Song, Zhaoliang;Gunina, Anna;Gunina, Anna
关键词:Analytical pyrolysis; Land use change; Lignin; Organo-mineral association; Py-GC/MS