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R-R 型 MYB 类转录因子 AtMYBL 参与促进叶片衰老,并调节拟南芥的非生物胁迫反应。

The R-R-type MYB-like transcription factor, AtMYBL, is involved in promoting leaf senescence and modulates an abiotic stress response in Arabidopsis.

机构信息

Department of Plant Biotechnology, Chonnam National University, Gwangju 500-757, South Korea.

出版信息

Plant Cell Physiol. 2011 Jan;52(1):138-48. doi: 10.1093/pcp/pcq180. Epub 2010 Nov 18.

Abstract

Functional analysis of a putative novel transcription factor Arabidopsis MYB-like protein designated AtMYBL, which contains two predicted DNA-binding domains, was performed. The physiological role of the R-R-type MYB-like transcription factor has not been reported in any plant. Analyses of an AtMYBL promoter-β-glucuronidase (GUS) construct revealed substantial gene expression in old leaves and induction of GUS activity by ABA and salt stress. AtMYBL-overexpressing plants displayed a markedly enhanced leaf senescence phenotype. Moreover, the ectopic expression of the AtMYBL gene was very significantly influential in senescence parameters including Chl content, membrane ion leakage and the expression of senescence-related genes. Although the seed germination rate was improved under ABA and saline stress conditions in the AtMYBL-overexpressing plants, decreased salt tolerance was evident compared with the wild type and atmybl RNA interference lines during later seedling growth when exposed to long-term salt stress, indicating that AtMYBL protein is able to developmentally regulate stress sensitivity. Furthermore, AtMYBL protein activated the transcription of a reporter gene in yeast. Green fluorescent protein-tagged AtMYBL was localized in the nuclei of transgenic Arabidopsis cells. Taken together, these results suggest that AtMYBL functions in the leaf senescence process, with the abiotic stress response implicated as a putative potential transcription factor.

摘要

对一个假定的新的转录因子拟南芥 MYB 类蛋白(AtMYBL)进行了功能分析,该蛋白含有两个预测的 DNA 结合域。在任何植物中都没有报道过 R-R 型 MYB 类转录因子的生理作用。AtMYBL 启动子-β-葡萄糖醛酸酶(GUS)构建体的分析显示,该基因在老叶中有大量表达,并被 ABA 和盐胁迫诱导。过表达 AtMYBL 的植株表现出明显增强的叶片衰老表型。此外,AtMYBL 基因的异位表达对衰老相关参数有非常显著的影响,包括 Chl 含量、膜离子渗漏和衰老相关基因的表达。虽然在 ABA 和盐胁迫条件下,AtMYBL 过表达植株的种子发芽率得到了提高,但与野生型和 atmybl RNAi 系相比,在长期盐胁迫下幼苗生长时,其耐盐性明显降低,表明 AtMYBL 蛋白能够发育调控对胁迫的敏感性。此外,AtMYBL 蛋白在酵母中激活报告基因的转录。绿色荧光蛋白标记的 AtMYBL 定位于转基因拟南芥细胞的细胞核中。综上所述,这些结果表明 AtMYBL 在叶片衰老过程中发挥作用,非生物胁迫反应可能是一个潜在的转录因子。

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