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拟南芥的Eskimo1突变体具有组成型耐冻性。

Eskimo1 mutants of Arabidopsis are constitutively freezing-tolerant.

作者信息

Xin Z, Browse J

机构信息

Institute of Biological Chemistry, Washington State University, Pullman, WA 99164-6340, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Jun 23;95(13):7799-804. doi: 10.1073/pnas.95.13.7799.

DOI:10.1073/pnas.95.13.7799
PMID:9636231
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC22762/
Abstract

Temperate plants develop a greater ability to withstand freezing in response to a period of low but nonfreezing temperatures through a complex, adaptive process of cold acclimation. Very little is known about the signaling processes by which plants perceive the low temperature stimulus and transduce it into the nucleus to activate genes needed for increased freezing tolerance. To help understand the signaling processes, we have isolated mutants of Arabidopsis that are constitutively freezing-tolerant in the absence of cold acclimation. Freezing tolerance of wild-type Arabidopsis was increased from -5.5 degreesC to -12.6 degreesC by cold acclimation whereas the freezing tolerance of 26 mutant lines ranged from -6.8 degreesC to -10.6 degreesC in the absence of acclimation. Plants with mutations at the eskimo1 (esk1) locus accumulated high levels of proline, a compatible osmolyte, but did not exhibit constitutively increased expression of several cold-regulated genes involved in freezing tolerance. RNA gel blot analysis suggested that proline accumulation in esk1 plants was mediated by regulation of transcript levels of genes involved in proline synthesis and degradation. The characterization of esk1 mutants and results from other mutants suggest that distinct signaling pathways activate different aspects of cold acclimation and that activation of one pathway can result in considerable freezing tolerance without activation of other pathways.

摘要

温带植物通过复杂的适应性冷驯化过程,在经历一段低温但未结冰的时期后,会形成更强的抗冻能力。关于植物感知低温刺激并将其传递到细胞核以激活提高抗冻性所需基因的信号传导过程,我们了解得还很少。为了帮助理解这些信号传导过程,我们分离出了拟南芥突变体,这些突变体在没有冷驯化的情况下就具有组成型抗冻性。通过冷驯化,野生型拟南芥的抗冻性从-5.5摄氏度提高到了-12.6摄氏度,而在没有驯化的情况下,26个突变株系的抗冻性在-6.8摄氏度到-10.6摄氏度之间。在爱斯基摩1(esk1)位点发生突变的植物积累了高水平的脯氨酸,脯氨酸是一种相容性渗透剂,但并未表现出与抗冻性相关的几个冷调节基因的组成型表达增加。RNA凝胶印迹分析表明,esk1植物中脯氨酸的积累是由参与脯氨酸合成和降解的基因转录水平调控介导的。esk1突变体的特征以及其他突变体的结果表明,不同的信号通路激活了冷驯化的不同方面,并且一条通路的激活可以在不激活其他通路的情况下产生相当程度的抗冻性。

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