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Long-term Response of Grapevines to Salinity: Osmotic Effects and Ion Toxicity

机译:葡萄对盐度的长期响应:渗透作用和离子毒性。

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Growth, mortality, transpiration, and ion accumulation were evaluated in grapevines (Vitis vinifera L. cv. Sugraone) under variable conditions of salinity to evaluate whether mortality is a consequence of the processes causing growth and transpiration loss or whether it is an independent process coupled with ion toxicity. Six irrigation water salinity levels (electrical conductivity of irrigation water from 0.5 to 12 dS m~(-1) chlorine concentration from 3.8 to 149 mM) were applied in a one-year lysimeter study and four salinity levels (1.8 to 9.0 dS m~(-1); 10 to 75 mM chlorine) were applied for five years in vineyard conditions. In the lysimeter experiment, salinity-reduced transpiration was measured as early as 30 days after budburst, and biomass production and evapotrans-piration were found to be linearly related. In both the lysimeter and field trials, mortality was dynamically associated with salinity level and time and corresponded to extreme accumulation of sodium and chlorine in shoots. Grapevine response to salinity involved two mechanisms: (1) a reduction in transpiration and growth, which began as soon as salinity was experienced; and (2) vine mortality, which was correlated with salinity level, a sharp increase in sodium and chlorine content of leaves, and time. At lower salinities, the onset of mortality occurred later and death rates increased as the duration of exposure to salinity increased.
机译:在变化的盐度条件下,对葡萄(葡萄属葡萄)的生长,死亡率,蒸腾作用和离子积累进行了评估,以评估死亡率是造成生长和蒸腾损失的过程的结果还是与之相关的独立过程具有离子毒性。在一年的蒸渗仪研究中应用了六个灌溉水盐度水平(灌溉水的电导率从0.5到12 dS m〜(-1)氯浓度从3.8到149 mM)和四个盐度水平(1.8到9.0 dS m〜 (-1); 10至75 mM的氯气在葡萄园条件下使用了五年。在溶渗仪实验中,发芽后30天就测量了盐度降低的蒸腾作用,发现生物量的产生和蒸发蒸腾是线性相关的。在蒸渗仪和田间试验中,死亡率与盐度水平和时间动态相关,并且对应于芽中钠和氯的极度积累。葡萄对盐度的响应涉及两个机制:(1)蒸腾和生长的减少,这是从盐度开始就开始的; (2)藤本植物的死亡率,与盐度水平,叶片中钠和氯含量的急剧增加以及时间有关。在较低的盐度下,死亡的发生较晚,并且随着暴露于盐度的持续时间增加,死亡率增加。

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