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Enhancing the yield and water use efficiency of processing tomatoes (Lycopersicon esculentum Miller) through optimal irrigation and salinity management under mulched drip irrigation
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作者 Jiaying Ma Jian Liu +6 位作者 Yue Wen Zhanli Ma Jinzhu Zhang Feihu Yin Tehseen Javed Jihong Zhang Zhenhua Wang 《Journal of Integrative Agriculture》 2025年第6期2410-2424,共15页
In recent years, the rational utilization of saline water resources for agricultural irrigation has emerged as an effective strategy to alleviate water scarcity. To safely and efficiently exploit saline water resource... In recent years, the rational utilization of saline water resources for agricultural irrigation has emerged as an effective strategy to alleviate water scarcity. To safely and efficiently exploit saline water resources over the long term, it is crucial to understand the effects of salinity on crops and develop optimal water-salinity irrigation strategies for processing tomatoes. A two-year field experiment was conducted in 2018 and 2019 to explore the impact of water salinity levels(S1: 1 g L^(–1), S2: 3 g L^(–1), and S3: 5 g L^(–1)) and irrigation amounts(W1: 305 mm, W2: 485 mm, and W3: 611 mm) on the soil volumetric water content and soil salinity, as well as processing tomato growth, yield, and water use efficiency. The results showed that irrigation with low to moderately saline water(<3 g L^(–1)) enhanced plant wateruptake and utilization capacity, with the soil water content(SWC) reduced by 6.5–7.62% and 10.52–13.23% for the S1 and S2 levels, respectively, compared to the S3 level in 2018. Under S1 condition, the soil salt content(SSC) accumulation rate gradually declined with an increase in the irrigation amount. For example, W3 decreased by 85.00 and 77.94% compared with W1 and W2 in 2018, and by 82.60 and 73.68% in 2019, respectively. Leaching effects were observed at the W3 level under S1, which gradually diminished with increasing water salinity and duration. In 2019, the salt contents of soil under each of the treatments increased by 10.81–89.72% compared with the contents in 2018. The yield of processing tomatoes increased with an increasing irrigation amount and peaked in the S1W3 treatment for the two years, reaching 125,304.85 kg ha^(–1)in 2018 and 128,329.71 kg ha^(–1)in 2019. Notably, in the first year, the S2W3 treatment achieved relatively high yields, exhibiting only a 2.85% reduction compared to the S1W3 treatment. However, the yield of the S2W3 treatment declined significantly in two years, and it was 15.88% less than that of the S1W3 treatment. Structural equation modeling(SEM) revealed that soil environmental factors(SWC and SSC) directly influence yield while also exerting indirect impacts on the growth indicators of processing tomatoes(plant height, stem diameter, and leaf area index). The TOPSIS method identified S1W3, S1W2, and S2W2 as the top three treatments. The single-factor marginal effect function also revealed that irrigation water salinity contributed to the composite evaluation scores(CES) when it was below 0.96 g L^(–1). Using brackish water with a salinity of 3 g L^(–1)at an irrigation amount of 485 mm over one year ensured that processing tomatoes maintained high yields with a relatively high CES(0.709). However, using brackish water for more than one year proved unfeasible. 展开更多
关键词 processing tomatoes soil water and salt transport YIELD water use efficiency irrigation water salinity mulcheddrip irrigation
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内蒙古自治区农牧业高效节水灌溉工程技术研究 被引量:4
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作者 程满金 郭富强 +2 位作者 高文慧 杨宏志 李博 《黑龙江水利》 2015年第8期6-10,共5页
近年来,内蒙古自治区膜下滴灌、大型喷灌等高效节水灌溉技术得到了快速发展,"内蒙古新增四个千万亩节水灌溉工程科技支撑"项目主要围绕种植作物玉米、大豆、马铃薯和牧草,开展了膜下滴灌、地埋滴灌和大型喷灌的灌溉制度试验... 近年来,内蒙古自治区膜下滴灌、大型喷灌等高效节水灌溉技术得到了快速发展,"内蒙古新增四个千万亩节水灌溉工程科技支撑"项目主要围绕种植作物玉米、大豆、马铃薯和牧草,开展了膜下滴灌、地埋滴灌和大型喷灌的灌溉制度试验及水肥一体化试验,得出了不同水文年型的优化灌溉制度和水肥一体化技术。在大型灌区节水改造技术方面,围绕渠道衬砌结构型式、新技术新材料应用、地面灌溉新技术、信息化技术等方面开展了大量试验研究,取得的多项技术成果已在实践中推广应用,为内蒙古自治区农牧业节水灌溉技术发展提供了科技支撑。 展开更多
关键词 高效节水 膜下滴灌 大型喷灌 水肥一体化 渠道防渗
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