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拟南芥中GH3介导的生长素稳态将生长调节与胁迫适应反应联系起来。

GH3-mediated auxin homeostasis links growth regulation with stress adaptation response in Arabidopsis.

作者信息

Park Jung-Eun, Park Ju-Young, Kim Youn-Sung, Staswick Paul E, Jeon Jin, Yun Ju, Kim Sun-Young, Kim Jungmook, Lee Yong-Hwan, Park Chung-Mo

机构信息

Molecular Signaling Laboratory, Department of Chemistry, Seoul National University, Seoul 151-742, Korea.

School of Agricultural Biotechnology and Center for Agricultural Biomaterials, Seoul National University, Seoul 151-742, Korea.

出版信息

J Biol Chem. 2007 Mar 30;282(13):10036-10046. doi: 10.1074/jbc.M610524200. Epub 2007 Feb 1.

Abstract

Plants constantly monitor environmental fluctuations to optimize their growth and metabolism. One example is adaptive growth occurring in response to biotic and abiotic stresses. Here, we demonstrate that GH3-mediated auxin homeostasis is an essential constituent of the complex network of auxin actions that regulates stress adaptation responses in Arabidopsis. Endogenous auxin pool is regulated, at least in part, through negative feedback by a group of auxin-inducible GH3 genes encoding auxin-conjugating enzymes. An Arabidopsis mutant, wes1-D, in which a GH3 gene WES1 is activated by nearby insertion of the (35)S enhancer, exhibited auxin-deficient traits, including reduced growth and altered leaf shape. Interestingly, WES1 is also induced by various stress conditions as well as by salicylic acid and abscisic acid. Accordingly, wes1-D was resistant to both biotic and abiotic stresses, and stress-responsive genes, such as pathogenesis-related genes and CBF genes, were upregulated in this mutant. In contrast, a T-DNA insertional mutant showed reduced stress resistance. We therefore propose that GH3-mediated growth suppression directs reallocation of metabolic resources to resistance establishment and represents the fitness costs of induced resistance.

摘要

植物不断监测环境波动以优化其生长和代谢。一个例子是响应生物和非生物胁迫而发生的适应性生长。在这里,我们证明GH3介导的生长素稳态是调节拟南芥胁迫适应反应的生长素作用复杂网络的重要组成部分。内源性生长素库至少部分地通过一组编码生长素共轭酶的生长素诱导型GH3基因的负反馈来调节。拟南芥突变体wes1-D中,GH3基因WES1被(35)S增强子的附近插入激活,表现出生长素缺乏性状,包括生长减少和叶片形状改变。有趣的是,WES1也受到各种胁迫条件以及水杨酸和脱落酸的诱导。因此,wes1-D对生物和非生物胁迫均具有抗性,并且该突变体中与胁迫反应相关的基因,如病程相关基因和CBF基因,被上调。相反,一个T-DNA插入突变体表现出胁迫抗性降低。因此,我们提出GH3介导的生长抑制将代谢资源重新分配到抗性建立中,并代表诱导抗性的适应性代价。

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