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首页> 外文期刊>Plant signaling & behavior >MAPK machinery in plants: recognition and response to different stresses through multiple signal transduction pathways. [Review]
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MAPK machinery in plants: recognition and response to different stresses through multiple signal transduction pathways. [Review]

机译:植物中的MAPK机制:通过多种信号转导途径识别和响应不同的胁迫。 [评论]

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摘要

The mitogen-activated protein kinase (MAPK) cascades play diverse roles in intra- and extra-cellular signaling in plants. MAP kinases are the component of kinase modules which transfer information from sensors to responses in eukaryotes including plants. They play a pivotal role in transduction of diverse extracellular stimuli such as biotic and abiotic stresses as well as a range of developmental responses including differentiation, proliferation and death. Several cascades are induced by different biotic and abiotic stress stimuli such as pathogen infections, heavy metal, wounding, high and low temperatures, high salinity, UV radiation, ozone, reactive oxygen species, drought and high or low osmolarity. MAPK signaling has been implicated in biotic stresses and has also been associated with hormonal responses. The cascade is regulated by various mechanisms, including not only transcriptional and translational regulation but through post-transcriptional regulation such as protein-protein interactions. Recent detailed analysis of certain specific MAP kinase pathways have revealed the specificity of the kinases in the cascade, signal transduction patterns, identity of pathway targets and the complexity of the cascade. The latest insights and finding are discussed in this paper in relation to the role of MAPK pathway modules in plant stress signaling.
机译:丝裂原激活的蛋白激酶(MAPK)级联在植物的细胞内和细胞外信号传导中发挥着不同的作用。 MAP激酶是激酶模块的组成部分,其将信息从传感器转移到包括植物在内的真核生物中。它们在转导多种细胞外刺激(例如生物和非生物胁迫)以及一系列发育反应(包括分化,增殖和死亡)中起关键作用。不同的生物和非生物胁迫刺激(例如病原体感染,重金属,伤口,高温和低温,高盐度,紫外线辐射,臭氧,活性氧,干旱和高渗透压或低渗透压)诱导了多个级联反应。 MAPK信号转导与生物应激有关,并且也与激素反应有关。级联受到多种机制的调控,不仅包括转录和翻译调控,还包括转录后调控,例如蛋白质-蛋白质相互作用。最近对某些特定MAP激酶途径的详细分析揭示了级联中激酶的特异性,信号转导模式,途径靶标的身份以及级联的复杂性。关于MAPK途径模块在植物胁迫信号中的作用,本文讨论了最新的见解和发现。

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