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Effects of irrigation water salinity on drainage water salinity, evapotranspiration and other leek (Allium porrum L.) plant parameters

机译:灌溉水盐度对排水水盐度,蒸散量和其他韭菜(葱属)植物参数的影响

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Successful management of saline water could have significant potential for agricultural development in many areas, particularly in water-scarce regions. To date, the effect of salinity on leek (Allium porrum L.) yield and growth parameters has not been studied in detail. Therefore, the present study was designed to evaluate the effects of different levels of irrigation-water salinity (0.38, 1, 2, 3, 4, 5 and 7 dS m(-1)) on leek yield, evapotranspiration and drainage-water salinity. The experiment was conducted in pots using a randomized plot design with 4 replications. Increases in irrigation-water salinity caused decreases in plant height; stem diameter; leaf, stem and root fresh weights; and leaf, stem and root dry weights. Water-use efficiency, leaf area and chlorophyll content also decreased with increases in irrigation-water salinity; however, leaf number was not significantly affected. Soil salinity and drainage-water salinity both increased with increases in irrigation-water salinity. Salinity stress resulted in a yield-response factor (K-y) of 1.481, with a threshold value of 1.21 dS m(-1) and a decrease in yield slope of 9.622% per unit increase in soil salinity beyond the threshold value. Leek plants were found to be moderately sensitive to salinity. The findings of the present study suggest that if appropriate leaching and drainage systems are applied, slightly saline water can be used for irrigation with little or no soil damage and minimal decreases in plant yield, thus saving large amounts of water for the cultivation of more salt-sensitive crops as well as for industrial and domestic usage. (C) 2016 Elsevier B.V. All rights reserved.
机译:盐水的成功管理在许多地区,特别是在缺水地区,对农业发展具有巨大潜力。迄今为止,尚未详细研究盐度对韭菜(葱属)产量和生长参数的影响。因此,本研究旨在评估不同水平的灌溉水盐度(0.38、1、2、3、4、5和7 dS m(-1))对韭菜产量,蒸散量和排水水盐度的影响。 。使用具有4个重复的随机样区设计在盆中进行实验。灌溉水盐度的增加导致植物高度的降低;茎直径叶,茎和根的鲜重;以及叶,茎和根的干重。随着灌溉水盐度的增加,水分利用效率,叶面积和叶绿素含量也降低了。但是,叶数没有受到明显影响。随着灌溉水盐度的增加,土壤盐度和排水水盐度均增加。盐分胁迫的产量-响应因子(K-y)为1.481,阈值为1.21 dS m(-1),每升高1%,土壤盐分的产量斜率降低9.622%。发现韭菜对盐度中等敏感。本研究的结果表明,如果采用适当的淋滤和排水系统,则可以使用少量盐水进行灌溉,而对土壤的破坏很少或没有破坏,并且植物产量的下降幅度很小,从而节省了大量的水用于种植更多的盐分敏感作物以及工业和家庭用途。 (C)2016 Elsevier B.V.保留所有权利。

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