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TaMYB33 基因编码一种新型小麦 MYB 转录因子,其过表达可提高拟南芥的耐盐性和耐旱性。

Over-expression of TaMYB33 encoding a novel wheat MYB transcription factor increases salt and drought tolerance in Arabidopsis.

机构信息

Department of Biological Science and Biotechnology, University of Jinan, Jinan, People's Republic of China.

出版信息

Mol Biol Rep. 2012 Jun;39(6):7183-92. doi: 10.1007/s11033-012-1550-y. Epub 2012 Feb 17.

Abstract

Salt and drought stresses often adversely affect plant growth and productivity, MYB transcription factors have been shown to participate in the response to these stresses. Here we identified a new R2R3-type MYB transcription factor gene TaMYB33 from wheat (Triticum aestivum). TaMYB33 was induced by NaCl, PEG and ABA treatments, and its promoter sequence contains putative ABRE, MYB and other abiotic stress related cis-elements. Ectopic over-expression of TaMYB33 in Arabidopsis thaliana remarkably enhanced its tolerance to drought and NaCl stresses, but not to LiCl and KCl treatments. The expressions of AtP5CS and AtZAT12 which mirror the activities of proline and ascorbate peroxidase synthesis respectively were induced in TaMYB33 over-expression lines, indicating TaMYB33 promotes the ability for osmotic pressure balance-reconstruction and reactive oxidative species (ROS) scavenging. The up-regulation of AtAAO3 along with down-regulation of AtABF3, AtABI1 in TaMYB33 over-expression lines indicated that ABA synthesis was elevated while its signaling was restricted. These results suggest that TaMYB33 enhances salt and drought tolerance partially through superior ability for osmotic balance reconstruction and ROS detoxification.

摘要

盐和干旱胁迫通常会对植物的生长和生产力产生不利影响,现已表明 MYB 转录因子参与了对这些胁迫的响应。在这里,我们从小麦(Triticum aestivum)中鉴定出一个新的 R2R3 型 MYB 转录因子基因 TaMYB33。TaMYB33 受到 NaCl、PEG 和 ABA 处理的诱导,其启动子序列包含假定的 ABRE、MYB 和其他非生物胁迫相关顺式元件。TaMYB33 在拟南芥中的异位过表达显著增强了其对干旱和 NaCl 胁迫的耐受性,但对 LiCl 和 KCl 处理没有影响。在 TaMYB33 过表达系中,反映脯氨酸和抗坏血酸过氧化物酶合成活性的 AtP5CS 和 AtZAT12 的表达被诱导,表明 TaMYB33 促进了渗透压平衡重建和活性氧(ROS)清除的能力。TaMYB33 过表达系中 AtAAO3 的上调和 AtABF3、AtABI1 的下调表明 ABA 合成升高,而其信号受到限制。这些结果表明,TaMYB33 通过增强渗透压平衡重建和 ROS 解毒的能力来提高盐和干旱耐受性。

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