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Effects of regulated deficit irrigation on soil salinity, physiological processes and fruit quality of gray jujube under desert conditions

机译:沙漠条件下调亏灌溉对灰枣土壤盐分,生理过程和果实品质的影响

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Regulated deficit irrigation (RDI) was applied to gray jujube trees in an oasis region, to determine the effects of this irrigation system on soil salinity, gray jujube physiological processes, fruit yield, and fruit quality. Treatments consisted of severe, moderate and low deficit irrigation (irrigated with 85%, 70% and 55% of CK, respectively) at the flowering stage to fruit set stage. During the other growth stages, all treatments were irrigated with 80% of pan evaporation, which was the same as that in control. The results indicated that soil salinity was enhanced during the periods of water stress, but the high value of soil salinity declined by 3.48%-37.27%, at each depth, after irrigation was resumed. RDI caused a decline in the photosynthetic rate, transpiration rate, and stomatal conductance, but enhanced the water use efficiency of the leaves. However, the leaf photosynthetic rate was effectively enhanced after the recovery of irrigation, especially in the moderate deficit irrigation treatment, which exceeded the control. This led to an improved fruit yield, which was 9.57% higher than that of the control. The deficit treatments caused a significant increase in the soluble solid content, soluble sugar content, single fruit weight and sugar/acid ratio. Enhanced vitamin C content, resulting from deficit treatments, has also been observed in the gray jujube. Therefore, this research shows that RDI provides some benefits in the production of gray jujube trees in desert conditions.
机译:在绿洲地区对灰枣树进行调节性亏缺灌溉(RDI),以确定该灌溉系统对土壤盐分,灰枣的生理过程,果实产量和果实品质的影响。处理包括在开花期至坐果期进行重度,中度和低度亏缺灌溉(分别灌溉CK的85%,70%和55%)。在其他生长阶段,所有处理均以80%的锅蒸发量灌溉,与对照相同。结果表明,在水分胁迫期间,土壤盐分增加,但恢复灌溉后各深度的土壤盐分高值均下降了3.48%-37.27%。 RDI导致光合速率,蒸腾速率和气孔导度下降,但提高了叶片的水分利用效率。但是,灌溉恢复后,叶片的光合速率得到了有效提高,特别是在中度亏缺灌溉处理中,超过了控制。这导致果实产量提高,比对照提高9.57%。缺乏处理导致可溶性固形物含量,可溶性糖含量,单果重和糖/酸比显着增加。在灰枣中还观察到维生素C含量增加,这是由于缺乏处理所致。因此,这项研究表明,RDI在沙漠条件下的灰色枣树生产中提供了一些好处。

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