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Both NaCl and H2O2 Long-Term Stresses Affect Basal Cytosolic Ca2+ Levels but Only NaCl Alters Cytosolic Ca2+ Signatures in Arabidopsis

机译:NaCl和H2O2长期胁迫均会影响拟南芥的基础胞质Ca2 +水平但只有NaCl会改变拟南芥中的胞质Ca2 +特征。

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摘要

Salinity is one of the formidable environmental factors that affect plant growth and development and constrain agricultural productivity. Experimentally imposed short-term NaCl treatment triggers a transient increase in cytosolic free Ca2+ concentration ([Ca2+]i) via Ca2+ influx across the plasma membrane. Salinity stress, as well as other stresses, induces the production of reactive oxygen species (ROS), such as H2O2. It is well established that short-term H2O2 treatment also triggers a transient increase in [Ca2+]i. However, whether and how long-term NaCl and H2O2 treatments affect the basal levels of [Ca2+]i as well as plant responses to additional NaCl and H2O2 stresses remain poorly understood. Using an aequorin-based Ca2+ imaging assay, we found that the long-term treatment of Arabidopsis seedlings with both moderate NaCl and H2O2 in the growth media reduced the basal [Ca2+]i levels. Interestingly, we found that the long-term treatment with NaCl, but not H2O2, affected the responses of plants to additional NaCl stress, and remarkably the roots displayed enhanced responses while the leaves showed reduced responses. These findings suggest that plants adapt to the long-term NaCl stress, while H2O2 might be an integrator of many stresses.
机译:盐分是影响植物生长发育并限制农业生产力的强大环境因素之一。实验性施加的短期NaCl处理会通过Ca 2 + 2 + i浓度([Ca 2 + ] i)的瞬时增加。 >跨质膜流入。盐分应力以及其他应力会诱导产生活性氧(ROS),例如H2O2。众所周知,短期的H2O2处理也会触发[Ca 2 + ] i的短暂升高。然而,对NaCl和H2O2的长期处理是否以及如何影响基础水平[Ca 2 + ] i以及植物对其他NaCl和H2O2胁迫的反应仍知之甚少。使用基于水母发光蛋白的Ca 2 + 成像分析,我们发现在生长培养基中用适度NaCl和H2O2长期处理拟南芥幼苗会降低基础[Ca 2+ < / sup>] i级。有趣的是,我们发现用NaCl而不是H2O2进行长期处理会影响植物对其他NaCl胁迫的反应,并且明显地,根显示出增强的响应,而叶子显示出降低的响应。这些发现表明植物可以适应长期的NaCl胁迫,而H 2 O 2 可能是许多胁迫的整合体。

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