One-off basal application of nitrogen fertilizer increases the biological yield but not the economic yield of cotton in moderate fertility soil
文献类型: 外文期刊
作者: Liu, Anda 1 ; Li, Zhenhuai 1 ; Zhang, Dongmei 1 ; Cui, Zhengpeng 1 ; Zhan, Lijie 1 ; Xu, Shizhen 1 ; Zhang, Yanjun 1 ; Dai, Jianlong 1 ; Li, Weijiang 1 ; Nie, Junjun 1 ; Yang, Guozheng 2 ; Li, Cundong 4 ; Dong, Hezhong 1 ;
作者机构: 1.Shandong Acad Agr Sci, Inst Ind Crops, Jinan 250100, Peoples R China
2.Huazhong Agr Univ, Coll Plant Sci & Technol, MOA Key Lab Crop Ecophysiol & Farming Syst Middle, Wuhan 430070, Peoples R China
3.Shandong Normal Univ, Coll Life Sci, Jinan 250014, Peoples R China
4.Hebei Agr Univ, Coll Agron, State Key Lab North China Crop Improvement & Regu, Baoding 071000, Peoples R China
关键词: Nitrogen; One-off application; Biomass; Nitrogen yield efficiency index; N-15 partitioning
期刊名称:FIELD CROPS RESEARCH ( 影响因子:5.8; 五年影响因子:6.9 )
ISSN: 0378-4290
年卷期: 2022 年 288 卷
页码:
收录情况: SCI
摘要: Basal and topdressing split application of nitrogen (N) fertilizer is widely used in cotton in many cotton-growing countries, including China. Recently, in the Yellow River valley of China, one-off basal application of N fertilizer has been applied to meet the challenge of increasing labor costs. However, how one-off basal application of N fertilizer affects cotton yields and N use efficiency and by what mechanisms are not clear. Therefore, an experiment was conducted using full-season (K836) and short-season (LM532) cotton cultivars in a moderate fertility field in the Yellow River valley in 2019 and 2020. A split-plot design was established for each variety with the main plots assigned to a mulching pattern (with or without plastic film mulching) and the subplots assigned to an N rate (0 or 195 kg N ha(-1), abbreviated as N0 and N195). Cotton yield and yield components, biomass accumulation and distribution, and total N and N-15 absorption and utilization were determined each year. Compared with N0, one-off basal application of N fertilizer (N195) did not increase boll density, boll weight, lint percentage or seedcotton yield regardless of cultivar or mulching. Biomass and total N uptake of cotton increased significantly in N195 compared with N0, but the increases occurred primarily in vegetative organs, leading to reductions in the harvest index and N yield efficiency index. With one-off basal application of N fertilizer, more than 80 % of the N in cotton plants derived from soil. Approximately 28 % of N-15-labeled urea was absorbed by cotton plants, of which only approximately 35 % was used in forming seedcotton yield. Therefore, cotton plants with one-off basal application of N fertilizer only recovered a small amount of fertilizer N, and even less of the fertilizer N was used in yield formation. As a result, the harvest index of cotton decreased, and thus, one-off basal application of N fertilizer failed to increase seedcotton yield. Cultivar and plastic film mulching did not alter the effects of one-off basal application of N fertilizer. Therefore, although one-off basal application of N fertilizer in cotton is a labor-saving approach, it should not be encouraged in moderate fertility soil in the Yellow River valley or other areas with similar ecology.
- 相关文献
作者其他论文 更多>>
-
Enhancing stand establishment and yield formation of cotton with multiple drip irrigation during emergence in saline fields of Southern Xinjiang
作者:Dai, Jianlong;Cui, Zhengpeng;Zhang, Yanjun;Zhan, Lijie;Nie, JunJun;Zhang, Dongmei;Xu, Shizhen;Sun, Lin;Dong, Hezhong;Cui, Jianqiang;Chen, Bing;Dong, Hezhong;Dong, Hezhong
关键词:Cotton; Dry sowing and wet emergence; Drip irrigation; Saline soil; Stand establishment; Yield formation
-
Deficit irrigation combined with a high planting density optimizes root and soil water-nitrogen distribution to enhance cotton productivity in arid regions
作者:Wu, Fengquan;Tang, Qiuxiang;Wu, Fengquan;Cui, Jianping;Tian, Liwen;Guo, Rensong;Wang, Liang;Zheng, Zipiao;Zhang, Na;Lin, Tao;Zhang, Yanjun
关键词:Root system; Soil water; Soil nitrate nitrogen; Water productivity
-
Xinjiang cotton: Achieving super-high yield through efficient utilization of light, heat, water, and fertilizer by three generations of cultivation technology systems
作者:Feng, Lu;Dong, Hezhong;Zhang, Yali;Dong, Hezhong;Wan, Sumei;Dong, Hezhong
关键词:Cotton; Xinjiang; Evolution of cultivation techniques; Resource utilization
-
Simulating climate change impacts on cotton using AquaCrop model in China
作者:Li, Na;Yang, Qiliang;Li, Na;Li, Yi;Li, Yi;Biswas, Asim;Dong, Hezhong;Li, Yi
关键词:Climate change; AquaCrop model; Cotton; Statistical analysis
-
HLS1 promotes apical hook formation by regulating YUCCA8 and GH3.17 expression differently in the inner and outer side of the hook in cotton
作者:Kong, Xiangqiang;Zhou, Jingyuan;Li, Xue;Dong, Hezhong;Kong, Xiangqiang;Zhou, Jingyuan;Li, Xue;Zhang, Hui;Dong, Hezhong;Zhou, Jingyuan;Liu, Cuimei;Chu, Jinfang
关键词:
-
Optimizing root system architecture to improve cotton drought tolerance and minimize yield loss during mild drought stress
作者:Guo, Congcong;Bao, Xiaoyuan;Sun, Hongchun;Zhu, Lingxiao;Zhang, Yongjiang;Zhang, Ke;Bai, Zhiying;Liu, Xiaoqing;Li, Anchang;Dong, Hezhong;Liu, Liantao;Li, Cundong;Dong, Hezhong;Zhan, Lijie;Zhu, Jijie
关键词:Root system architecture; Drought stress; Cotton; Drought tolerance; Yield
-
Managing interspecific competition to enhance productivity through selection of soybean varieties and sowing dates in a cotton-soybean intercropping system
作者:Lv, Qingqing;Ding, Kedong;He, Ning;Li, Cundong;Chi, Baojie;Zhang, Yongjiang;Dong, Hezhong;Lv, Qingqing;Dai, Jianlong;Ding, Kedong;Li, Zhenhuai;Zhang, Dongmei;Xu, Shizhen;Dong, Hezhong;Chi, Baojie;Dong, Hezhong
关键词:Interspecific competition; Niche differentiation; Canopy photosynthesis; Root morphology; Land equivalent ratio



