Leaching amount and timing modified the ionic composition of saline-alkaline soil and increased seed cotton yield under mulched drip irrigation
文献类型: 外文期刊
作者: Liu, Xiaoqiang 1 ; Yan, Fulai 1 ; Wu, Lifeng 2 ; Zhang, Fucang 1 ; Yin, Feihu 1 ; Abdelghany, Ahmed Elsayed 1 ; Fan, Junliang 1 ; Xiao, Chao 1 ; Li, Jiabei 1 ; Li, Zhijun 1 ;
作者机构: 1.Northwest A&F Univ, Key Lab Agr Soil & Water Engn Arid & Semiarid Area, Minist Educ, Yangling 712100, Shaanxi, Peoples R China
2.Nanchang Inst Technol, Sch Hydraul & Ecol Engn, Nanchang 330099, Peoples R China
3.Xinjiang Acad Agr & Reclamat Sci, Shihezi 832000, Xinjiang, Peoples R China
4.Natl Res Ctr, Agr & Biol Inst, Water Relat & Field Irrigat Dept, Cairo 12622, Egypt
关键词: Leaching amount; Leaching timing; Cotton yield; Soil ions; Drip irrigation
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: 2023 年 299 卷
页码:
收录情况: SCI
摘要: Context: Salt leaching has been widely applied to increase crop production in saline-alkaline soils. However, leaching patterns affect the ionic composition of saline-alkaline soils and increase seed cotton yield under mulched drip irrigation have been poorly understood. Objectives: The objective of this study was to determine why leaching patterns succeed to increase seed cotton yield in saline-alkaline soils. Methods: A two-year field experiment (2020-2021) was conducted on cotton under mulched drip irrigation to investigate how different leaching amounts and timings modified the ionic composition of saline-alkaline soils and improved the seed cotton yield. There were four leaching amounts (W1: 75, W2: 150, W3: 225 and W4: 300 mm) and three leaching timings (T1: once at seedling stage, T2: twice at seedling and budding stages and T3: thrice at seedling, budding and pollen setting stages) in addition to non-leaching treatment (CK: 85% crop evapotranspiration). Soil cations, soil anions, total dissolved salts (TDS), sodium adsorption ratio (SAR), dry matter accumulation and seed cotton yield were examined. Results: The results showed that increasing the leaching amount significantly reduced soil cations, soil anions, TDS and SAR compared with CK, by 31.85%, 51.82%, 34.83% and 22.20% under W3 over the two years, respectively. The chloride and sulfate in the soil accounted for the majority of TDS (more than 81.03%), sug-gesting that decreasing chloride and sulfate content in saline-alkaline soils could reduce soil salinity effectively. Increasing leaching amount first increased and then decreased seed cotton yield. Compared with that under CK, the optimal seed cotton yield under W3T2 was increased by 139.42% and 99.06% in 2020 and 2021, respec-tively. Dry matter accumulation increased with the increase in leaching amount. The Pearson correlation analysis revealed that sodium had the greatest negative effect on seed cotton yield. According to the Technique for Order Preference by Similarity to Ideal Solution, the combination of 225 mm leaching amount and timing of leaching at seedling and budding stages was recommended as the optimal leaching pattern for saving water, controlling salts and increasing yield in this region. Conclusion: Overall, the optimal leaching pattern modified the ionic composition and significantly reduced soil ions in the root zone that were harmful to cotton growth. Implications: The study can provide a scientific basis for the rehabilitation of saline-alkaline soils in arid and semi -arid conditions under mulched drip irrigation.
- 相关文献
作者其他论文 更多>>
-
Biocontrol activity and antifungal mechanisms of volatile organic compounds produced by Trichoderma asperellum XY101 against pear Valsa canker
作者:Zhang, Yang;Tang, Jian-Hong;He, Yujian;Zhang, Yang;Wu, Li;Lu, Ying;Li, Bo;Jin, Zhaoyang;Wang, Jun;Bai, Ruxiao;Wu, Qifeng;Fan, Qinglu;Yin, Feihu;He, Yujian;Wang, Jun;Bai, Ruxiao;Wu, Qifeng;Fan, Qinglu;Yin, Feihu;He, Yujian;Wang, Jun;Bai, Ruxiao;Wu, Qifeng;Fan, Qinglu;Yin, Feihu;He, Yujian
关键词:
Valsa pyri ;Trichoderma asperellum ; volatile organic compounds; antifungal activity; transcriptomics -
Leaching amount and period regulated saline-alkaline soil water-salinity dynamics and improved cotton yield in southern Xinjiang, China
作者:Wang, Lei;Liu, Xiaoqiang;Wang, Shuhong;He, Shuai
关键词:cotton yield; leaching; soil water; soil electrical conductivity; drip irrigation
-
Combination with moderate irrigation water temperature and nitrogen application rate enhances nitrogen utilization and seed cotton yield
作者:Ma, Zhanli;He, Jing;Zhang, Jinzhu;Li, Wenhao;Yin, Feihu;Wen, Yue;Liang, Yonghui;Ye, Hanchun;Liu, Jian;Wang, Zhenhua;Ma, Zhanli;He, Jing;Zhang, Jinzhu;Li, Wenhao;Wen, Yue;Liang, Yonghui;Ye, Hanchun;Liu, Jian;Wang, Zhenhua;Ma, Zhanli;He, Jing;Zhang, Jinzhu;Li, Wenhao;Wen, Yue;Liang, Yonghui;Ye, Hanchun;Liu, Jian;Wang, Zhenhua;Ma, Zhanli;He, Jing;Zhang, Jinzhu;Li, Wenhao;Wen, Yue;Liang, Yonghui;Ye, Hanchun;Liu, Jian;Wang, Zhenhua;Yin, Feihu;He, Jing
关键词:Cotton; Seed cotton yield; Soil nitrogen content; Cotton nitrogen content
-
Processing tomato (Lycopersicon esculentum Miller) yield and quality in arid regions through micro-nano aerated drip irrigation coupled with humic acid application
作者:Ma, Jiaying;Chen, Rui;Wen, Yue;Zhang, Jinzhu;Yin, Feihu;Javed, Tehseen;Zheng, Jiliang;Wang, Zhenhua;Ma, Jiaying;Chen, Rui;Wen, Yue;Zhang, Jinzhu;Yin, Feihu;Zheng, Jiliang;Wang, Zhenhua;Ma, Jiaying;Chen, Rui;Wen, Yue;Zhang, Jinzhu;Yin, Feihu;Zheng, Jiliang;Wang, Zhenhua;Ma, Jiaying;Chen, Rui;Wen, Yue;Zhang, Jinzhu;Yin, Feihu;Zheng, Jiliang;Wang, Zhenhua;Yin, Feihu
关键词:Humic acid; Micro-nano aeration; Irrigation amount; Processing tomato; Fruit quality; Yield
-
Strategies for nitrogen management to mitigate nitrous oxide and ammonia emissions from maize field while maintaining yields in China: findings from a field experiment and a national meta-analysis
作者:Zheng, Jing;Huang, Xue;Wang, Haiming;Huang, Xue;Fan, Junliang;Zhang, Fucang;Zhang, Fucang
关键词:ammonia volatilization; nitrous oxide emission; crop productivity; 4R nutrient stewardship
-
Optimizing potassium management for enhanced cotton yields in China's diverse agro-ecological regions
作者:Liang, Hongbang;Zhang, Jinzhu;Zhang, Jihong;Zhao, Yue;Zhao, Tao;Li, Deyi;Wang, Zhenhua;Liang, Hongbang;Zhang, Jinzhu;Zhang, Jihong;Zhao, Yue;Zhao, Tao;Li, Deyi;Wang, Zhenhua;Liang, Hongbang;Zhang, Jinzhu;Zhang, Jihong;Zhao, Yue;Zhao, Tao;Li, Deyi;Wang, Zhenhua;Liang, Hongbang;Zhang, Jinzhu;Zhang, Jihong;Zhao, Yue;Zhao, Tao;Li, Deyi;Wang, Zhenhua;Yin, Feihu
关键词:Meta-analysis; Generalized additive model; Soil properties; Cotton yield; K fertilizer
-
Improved MobileVit deep learning algorithm based on thermal images to identify the water state in cotton
作者:Jin, Kaijun;Zhang, Jihong;Liu, Ningning;Li, Miao;Ma, Zhanli;Wang, Zhenhua;Zhang, Jinzhu;Yin, Feihu;Jin, Kaijun;Zhang, Jihong;Liu, Ningning;Li, Miao;Ma, Zhanli;Wang, Zhenhua;Zhang, Jinzhu;Jin, Kaijun;Zhang, Jihong;Liu, Ningning;Li, Miao;Ma, Zhanli;Wang, Zhenhua;Zhang, Jinzhu;Jin, Kaijun;Zhang, Jihong;Liu, Ningning;Li, Miao;Ma, Zhanli;Wang, Zhenhua;Zhang, Jinzhu;Yin, Feihu
关键词:Cotton; Water state identification; Computer vision; Improved MobileVit algorithm; Deep learning



