Optimizing irrigation salinity for cotton production through cotton yield and fiber quality and water use efficiency in arid regions
作者:Wenhao Li, Cunhong Zhang, Minzhong Zou, Hongyu Lai, Tehseen Javed, Zhenhua Wang · 发表于:Industrial Crops and Products · 年份:2025 · DOI:10.1016/j.indcrop.2025.121375 · 被引用次数:9 · 研究领域:Research in Cotton Cultivation、Irrigation Practices and Water Management
Irrigation with brackish irrigation sources puts forward a viable strategy to mitigate agricultural water scarcity in arid regions. Earlier investigations have established the inhibitory impacts of salt stress on cotton growth, yield, and quality, there remains a critical gap in identifying salinity thresholds that simultaneously optimize yield, quality of cotton, and WUE. To address this, a comprehensive two-year field investigation (2021–2022) was conducted in Shihezi, Xinjiang, utilizing a mulched drip irrigation system under four irrigation water salinity regimes: 0.85 g L −1 (control), 3 g L −1 , 5 g L −1 , and 8 g L −1 . The study systematically evaluated the impact of brackish irrigation on cotton development parameters, physiological traits, crop output, and fiber properties to identify the optimal salinity range for enhanced productivity and resource efficiency. Results showed that 3 g L −1 salinity irrigation significantly enhanced growth parameters, including plant height (Ph), stem diameter (Sd), leaf area index (LAI), aboveground dry matter accumulation (Ab), net photosynthetic rate ( P n ), transpiration rate ( T r ) and stomatal conductance ( G s ), ultimately enhancing both yield and fiber properties. In contrast, higher salinity levels (5 g L −1 and 8 g L −1 ) negatively impacted crop development and productivity. Compared to the control, 3 g L −1 salinity increased yields by 5.92 % (2021) and 4.76 % (2022). Path analysis using structural equation modeling (S...