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拟南芥 YUCCA6 在马铃薯中的过表达导致高生长素发育表型和增强对水分亏缺的抗性。

Overexpression of Arabidopsis YUCCA6 in potato results in high-auxin developmental phenotypes and enhanced resistance to water deficit.

机构信息

Department of Biochemistry, Purdue University, West Lafayette, IN 47907, USA.

出版信息

Mol Plant. 2013 Mar;6(2):337-49. doi: 10.1093/mp/sss100. Epub 2012 Sep 17.

Abstract

Indole-3-acetic acid (IAA), a major plant auxin, is produced in both tryptophan-dependent and tryptophan-independent pathways. A major pathway in Arabidopsis thaliana generates IAA in two reactions from tryptophan. Step one converts tryptophan to indole-3-pyruvic acid (IPA) by tryptophan aminotransferases followed by a rate-limiting step converting IPA to IAA catalyzed by YUCCA proteins. We identified eight putative StYUC (Solanum tuberosum YUCCA) genes whose deduced amino acid sequences share 50%-70% identity with those of Arabidopsis YUCCA proteins. All include canonical, conserved YUCCA sequences: FATGY motif, FMO signature sequence, and FAD-binding and NADP-binding sequences. In addition, five genes were found with ~50% amino acid sequence identity to Arabidopsis tryptophan aminotransferases. Transgenic potato (Solanum tuberosum cv. Jowon) constitutively overexpressing Arabidopsis AtYUC6 displayed high-auxin phenotypes such as narrow downward-curled leaves, increased height, erect stature, and longevity. Transgenic potato plants overexpressing AtYUC6 showed enhanced drought tolerance based on reduced water loss. The phenotype was correlated with reduced levels of reactive oxygen species in leaves. The results suggest a functional YUCCA pathway of auxin biosynthesis in potato that may be exploited to alter plant responses to the environment.

摘要

吲哚-3-乙酸(IAA)是一种主要的植物生长素,它可以通过色氨酸依赖和非依赖途径产生。拟南芥中主要的途径通过两步反应从色氨酸生成 IAA。第一步是色氨酸转氨酶将色氨酸转化为吲哚-3-丙酮酸(IPA),然后由 YUCCA 蛋白催化限速步骤将 IPA 转化为 IAA。我们鉴定了 8 个推测的 StYUC(马铃薯 YUCCA)基因,它们的推导氨基酸序列与拟南芥 YUCCA 蛋白具有 50%-70%的同一性。所有这些基因都包括典型的、保守的 YUCCA 序列:FATGY 基序、FMO 签名序列、FAD 结合和 NADP 结合序列。此外,还发现了 5 个基因与拟南芥色氨酸转氨酶的氨基酸序列具有约 50%的同一性。拟南芥 AtYUC6 组成型过表达的转基因马铃薯(Solanum tuberosum cv. Jowon)表现出高生长素表型,如叶片向下卷曲变窄、株高增加、植株直立和寿命延长。过表达 AtYUC6 的转基因马铃薯植物表现出增强的耐旱性,这是基于减少水分流失。表型与叶片中活性氧水平降低相关。结果表明,马铃薯中存在生长素生物合成的功能性 YUCCA 途径,可用于改变植物对环境的反应。

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