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The physiological and molecular mechanism of brassinosteroid in response to stress: a review

机译:油菜素类固醇应对压力的生理和分子机制:综述

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摘要

The negative effects of environmental stresses, such as low temperature, high temperature, salinity, drought, heavy metal stress, and biotic stress significantly decrease crop productivity. Plant hormones are currently being used to induce stress tolerance in a variety of plants. Brassinosteroids (commonly known as BR) are a group of phytohormones that regulate a wide range of biological processes that lead to tolerance of various stresses in plants. BR stimulate BRASSINAZOLE RESISTANCE 1 (BZR1)/BRI1-EMS SUPPRESSOR 1 (BES1), transcription factors that activate thousands of BR-targeted genes. BR regulate antioxidant enzyme activities, chlorophyll contents, photosynthetic capacity, and carbohydrate metabolism to increase plant growth under stress. Mutants with BR defects have shortened root and shoot developments. Exogenous BR application increases the biosynthesis of endogenous hormones such as indole-3-acetic acid, abscisic acid, jasmonic acid, zeatin riboside, brassinosteroids (BR), and isopentenyl adenosine, and gibberellin (GA) and regulates signal transduction pathways to stimulate stress tolerance. This review will describe advancements in knowledge of BR and their roles in response to different stress conditions in plants.
机译:低温,高温,盐度,干旱,重金属胁迫和生物胁迫等环境胁迫的负面影响大大降低了作物的生产力。目前,植物激素被用于诱导多种植物的胁迫耐受性。油菜素类固醇(俗称BR)是一组植物激素,它们调节着广泛的生物过程,导致植物对各种胁迫的耐受性。 BR刺激BRASSINAZOLE抗性1(BZR1)/ BRI1-EMS抑制剂1(BES1),是激活数千个BR靶向基因的转录因子。 BR调节抗氧化酶活性,叶绿素含量,光合能力和碳水化合物代谢,从而在胁迫下增加植物的生长。具有BR缺陷的突变体缩短了根和芽的发育。外源BR的使用会增加内源激素的生物合成,如吲哚-3-乙酸,脱落酸,茉莉酸,玉米蛋白核糖苷,油菜素甾体(BR)和异戊烯基腺苷和赤霉素(GA),并调节信号转导途径以刺激耐胁迫性。这篇综述将描述BR的知识进展及其在植物中应对不同胁迫条件的作用。

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