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利用丝裂原活化蛋白激酶在植物应对非生物胁迫中的作用。

Harnessing the role of mitogen-activated protein kinases against abiotic stresses in plants.

作者信息

Majeed Yasir, Zhu Xi, Zhang Ning, Ul-Ain Noor, Raza Ali, Haider Fasih Ullah, Si Huaijun

机构信息

College of Agronomy, Gansu Agricultural University, Lanzhou, China.

State Key Laboratory of Aridland Crop Science, Gansu Agricultural University, Lanzhou, China.

出版信息

Front Plant Sci. 2023 Feb 24;14:932923. doi: 10.3389/fpls.2023.932923. eCollection 2023.

Abstract

Crop plants are vulnerable to various biotic and abiotic stresses, whereas plants tend to retain their physiological mechanisms by evolving cellular regulation. To mitigate the adverse effects of abiotic stresses, many defense mechanisms are induced in plants. One of these mechanisms is the mitogen-activated protein kinase (MAPK) cascade, a signaling pathway used in the transduction of extracellular stimuli into intercellular responses. This stress signaling pathway is activated by a series of responses involving MAPKKKs→MAPKKs→MAPKs, consisting of interacting proteins, and their functions depend on the collaboration and activation of one another by phosphorylation. These proteins are key regulators of MAPK in various crop plants under abiotic stress conditions and also related to hormonal responses. It is revealed that in response to stress signaling, MAPKs are characterized as multigenic families and elaborate the specific stimuli transformation as well as the antioxidant regulation system. This pathway is directed by the framework of proteins and stopping domains confer the related associates with unique structure and functions. Early studies of plant MAPKs focused on their functions in model plants. Based on the results of whole-genome sequencing, many MAPKs have been identified in plants, such as , tomato, potato, alfalfa, poplar, rice, wheat, maize, and apple. In this review, we summarized the recent work on MAPK response to abiotic stress and the classification of MAPK cascade in crop plants. Moreover, we highlighted the modern research methodologies such as transcriptomics, proteomics, CRISPR/Cas technology, and epigenetic studies, which proposed, identified, and characterized the novel genes associated with MAPKs and their role in plants under abiotic stress conditions. -based identification of novel genes also facilitates future research on MAPK cascade identification and function in crop plants under various stress conditions.

摘要

农作物易受各种生物和非生物胁迫的影响,而植物往往通过进化细胞调节来维持其生理机制。为了减轻非生物胁迫的不利影响,植物会诱导多种防御机制。其中一种机制是丝裂原活化蛋白激酶(MAPK)级联反应,这是一种将细胞外刺激转化为细胞内反应的信号通路。这种胁迫信号通路通过一系列涉及MAPKKKs→MAPKKs→MAPKs的反应被激活,这些反应由相互作用的蛋白质组成,它们的功能依赖于通过磷酸化相互协作和激活。这些蛋白质是各种作物在非生物胁迫条件下MAPK的关键调节因子,也与激素反应有关。研究表明,响应胁迫信号时,MAPKs具有多基因家族的特征,并阐述了特定的刺激转化以及抗氧化调节系统。该通路由蛋白质框架引导,终止结构域赋予相关关联物独特的结构和功能。早期对植物MAPKs的研究主要集中在它们在模式植物中的功能。基于全基因组测序的结果,在植物中已鉴定出许多MAPKs,如番茄、马铃薯、苜蓿、杨树、水稻、小麦、玉米和苹果。在本综述中,我们总结了MAPK对非生物胁迫响应的最新研究以及作物中MAPK级联反应的分类。此外,我们强调了转录组学、蛋白质组学、CRISPR/Cas技术和表观遗传学研究等现代研究方法,这些方法提出、鉴定并表征了与MAPKs相关的新基因及其在非生物胁迫条件下植物中的作用。基于 的新基因鉴定也有助于未来对各种胁迫条件下作物中MAPK级联反应识别和功能的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3209/10000299/f61e48faa343/fpls-14-932923-g001.jpg

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