首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Constitutive expression of the cold-regulated Arabidopsis thaliana COR15a gene affects both chloroplast and protoplast freezing tolerance
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Constitutive expression of the cold-regulated Arabidopsis thaliana COR15a gene affects both chloroplast and protoplast freezing tolerance

机译:冷调节拟南芥的本构表达 拟南芥COR15a基因影响叶绿体和原生质体 耐冻性

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摘要

Cold acclimation in plants is associated with the expression of COR (cold-regulated) genes that encode polypeptides of unknown function. It has been widely speculated that products of these genes might have roles in freezing tolerance. Here we provide direct evidence in support of this hypothesis. We show that constitutive expression of COR15a, a cold-regulated gene of Arabidopsis thaliana that encodes a chloroplast-targeted polypeptide, enhances the in vivo freezing tolerance of chloroplasts in nonacclimated plants by almost 2°C, nearly one-third of the increase that occurs upon cold acclimation of wild-type plants. Significantly, constitutive expression of COR15a also affects the in vitro freezing tolerance of protoplasts. At temperatures between −5 and −8°C, the survival of protoplasts isolated from leaves of nonacclimated transgenic plants expressing COR15a was greater than that of protoplasts isolated from leaves of nonacclimated wild-type plants. At temperatures between −2 and −4°C, constitutive expression of COR15a had a slight negative effect on survival. The implications of these data regarding possible modes of COR15a action are discussed.
机译:植物的冷驯化与编码未知功能多肽的COR(冷调节)基因的表达有关。广泛推测这些基因的产物可能在冷冻耐受中起作用。在这里,我们提供了支持这一假设的直接证据。我们显示COR15a的组成型表达,一种拟南芥的冷调节基因,编码叶绿体靶向的多肽,将未适应植物中叶绿体的体内冷冻耐受性提高了将近2°C,几乎是发生的增加的三分之一冷适应野生型植物。值得注意的是,COR15a的组成型表达还影响原生质体的体外冷冻耐受性。在-5和-8°C之间的温度下,从未表达COR15a的未适应转基因植物的叶片中分离的原生质体的存活率大于从未适应的野生型植物的叶中分离的原生质体的存活率。在-2至-4°C的温度下,COR15a的本构表达为 对存活率有轻微的负面影响。这些数据的含义 讨论了有关COR15a作用的可能模式。

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