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介导了生物和非生物胁迫信号的转录激活。

Transcriptional activation of mediates biotic and abiotic stress signaling.

机构信息

Department of Chemistry, Seoul National University, Seoul, Korea.

Plant Genomics and Breeding Institute, Seoul National University, Seoul, Korea.

出版信息

Plant Signal Behav. 2021 Aug 3;16(8):1920759. doi: 10.1080/15592324.2021.1920759. Epub 2021 Apr 25.

Abstract

Plants have evolved elaborate physiological and molecular responses to diverse environmental challenges, including biotic and abiotic stresses. Accumulating evidence suggests that biotic and abiotic stress signaling pathways are intricately intertwined, and factors involved in molecular crosstalk between these pathways have been identified. The R2R3-type MYB96 transcription factor is a key player that mediates plant response to drought and osmotic stresses as well as to microbial pathogens, acting as a molecular signaling integrator. Here, we report that MYB96 is required for the transcriptional regulation of () that lies at the intersection of abscisic acid (ABA) and defense signaling pathways. MYB96 directly binds to the promoter and activates gene expression upon exogenous application of ABA and bacterial flagellin peptide flg22. Our findings indicate that MYB96 integrates biotic and abiotic stress signals and possibly induces sugar uptake to confer tolerance to a wide range of adverse environmental challenges.

摘要

植物已经进化出复杂的生理和分子响应机制,以应对各种环境挑战,包括生物和非生物胁迫。越来越多的证据表明,生物和非生物胁迫信号通路是错综复杂地交织在一起的,并且已经确定了这些途径之间分子串扰所涉及的因素。R2R3 型 MYB96 转录因子是一个关键的调节因子,它介导植物对干旱和渗透胁迫以及微生物病原体的响应,充当分子信号整合器。在这里,我们报告说,MYB96 是 ()转录调节所必需的,()位于脱落酸 (ABA) 和防御信号通路的交汇处。MYB96 直接结合到 启动子上,并在外源施加 ABA 和细菌鞭毛肽 flg22 时激活基因表达。我们的研究结果表明,MYB96 整合了生物和非生物胁迫信号,并可能诱导糖的摄取,以赋予对广泛的不利环境挑战的耐受性。

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