优化根区环境提高南疆棉田“干播湿出”技术稳定性

IF 6.5 1区 农林科学 Q1 AGRONOMY
Shuo Wang , Zhenhua Wang , Yungang Bai , Jianghui Zhang , Zheng Fang
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引用次数: 0

摘要

在南疆地区,由于降水有限和土壤湿度低,旱播湿出苗(DSME)技术容易出现不稳定,主要原因是播后灌溉不均和地表盐渍化。因此,确定合适的DSME灌溉制度对于调节根区环境,促进棉花发芽和生长,提高该技术的可靠性至关重要。在2021年至2023年期间,我们进行了为期三年的田间试验,研究了DSME对土壤水-热-盐动态、棉花生理特性、产量和灌溉水分生产力(IWP)的影响。在第三年,我们实施了将冬季滴灌与DSME相结合的强化灌溉策略。这包括17个苗期处理:2021年8、10和15 mm;2022年5、10、13 mm;2023年为5、10、13和15 毫米。2023年滴频变化范围为1 ~ 4次~ 2022 ~ 1 ~ 2次。结果表明:苗期灌水量与棉花生长指标呈显著正相关,显著提高了棉花株高、干物质积累和产量;高灌溉量和高频率的结合显著提高了IWP。具体来说,G7、B7和DG4处理分别达到1.78、1.81和1.83 kg m³ ,比对照分别增加16.29 %、25.69 %和38.64 %。综上所述,冬季滴灌与DSME相结合效果最佳。这种方法大大减少了农业用水,同时提高了棉花产量和质量,为南疆干旱地区的种植提供了可持续的节水战略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimizing root zone environment to enhance technology stability of “dry sowing and wet emergence” in cotton fields of southern Xinjiang, China
In southern Xinjiang, limited precipitation and low soil moisture render the Dry Sowing and Wet Emergence (DSME) technique susceptible to instability, mainly due to uneven post-sowing irrigation and surface salinization. Thus, identifying a suitable irrigation regime for DSME is essential to regulate the root-zone environment, promote cotton germination and growth, and improve the reliability of this technique. Between 2021 and 2023, we conducted a three-year field experiment to examine DSME's impacts on soil water-heat-salt dynamics, cotton physiological characteristics, yield, and irrigation water productivity (IWP). In the third year, we implemented an enhanced irrigation strategy integrating winter drip irrigation with DSME. This included 17 seedling-stage treatments: 8, 10, and 15 mm in 2021; 5, 10, and 13 mm in 2022; and 5, 10, 13, and 15 mm in 2023. Drip frequencies varied from 1 to 4 times in 2021–2022–1–2 times in 2023. The results showed that seedling-stage irrigation amounts were significantly and positively correlated with cotton growth indices, thereby markedly increasing plant height, dry matter accumulation, and yield. Combining higher irrigation volumes with greater frequencies significantly enhanced IWP. Specifically, treatments G7, B7, and DG4 achieved 1.78, 1.81, and 1.83 kg m³ , respectively—representing increases of 16.29 %, 25.69 %, and 38.64 % over the control. In summary, integrating winter drip irrigation with DSME yielded optimal results. This approach substantially reduced agricultural water use while improving cotton yield and quality, offering a sustainable, water-efficient strategy for cultivation in southern Xinjiang's arid regions.
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来源期刊
Agricultural Water Management
Agricultural Water Management 农林科学-农艺学
CiteScore
12.10
自引率
14.90%
发文量
648
审稿时长
4.9 months
期刊介绍: Agricultural Water Management publishes papers of international significance relating to the science, economics, and policy of agricultural water management. In all cases, manuscripts must address implications and provide insight regarding agricultural water management.
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