生物
WRKY蛋白质结构域
转录因子
茉莉酸
拟南芥
调节器
细胞生物学
信号转导
MYB公司
拟南芥
植物激素
突变体
遗传筛选
遗传学
转录调控
基因表达调控
选择性氧化酶
线粒体
基因
作者
Xinhua Zhang,Aneta Ivanova,Klaas Vandepoele,Jordan Radomiljac,Jan Van de Velde,Oliver Berkowitz,Patrick J. Willems,Yue Xu,Sophia Ng,Olivier Van Aken,Owen Duncan,Botao Zhang,Véronique Storme,Kai Xun Chan,Dries Vaneechoutte,Barry J. Pogson,Frank Van Breusegem,James Whelan,Inge De Clercq
出处
期刊:Plant Physiology
[Oxford University Press]
日期:2017-02-06
卷期号:173 (3): 1824-1843
被引量:50
摘要
Plants sense and integrate a variety of signals from the environment through different interacting signal transduction pathways that involve hormones and signaling molecules. Using ALTERNATIVE OXIDASE1a (AOX1a) gene expression as a model system of retrograde or stress signaling between mitochondria and the nucleus, MYB DOMAIN PROTEIN29 (MYB29) was identified as a negative regulator (regulator of alternative oxidase1a 7 [rao7] mutant) in a genetic screen of Arabidopsis (Arabidopsis thaliana). rao7/myb29 mutants have increased levels of AOX1a transcript and protein compared to wild type after induction with antimycin A. A variety of genes previously associated with the mitochondrial stress response also display enhanced transcript abundance, indicating that RAO7/MYB29 negatively regulates mitochondrial stress responses in general. Meta-analysis of hormone-responsive marker genes and identification of downstream transcription factor networks revealed that MYB29 functions in the complex interplay of ethylene, jasmonic acid, salicylic acid, and reactive oxygen species signaling by regulating the expression of various ETHYLENE RESPONSE FACTOR and WRKY transcription factors. Despite an enhanced induction of mitochondrial stress response genes, rao7/myb29 mutants displayed an increased sensitivity to combined moderate light and drought stress. These results uncover interactions between mitochondrial retrograde signaling and the regulation of glucosinolate biosynthesis, both regulated by RAO7/MYB29. This common regulator can explain why perturbation of the mitochondrial function leads to transcriptomic responses overlapping with responses to biotic stress.
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