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首页> 外文期刊>Plant Biotechnology Journal >Gene expression and functional analyses in brassinosteroid?¢????mediated stress tolerance
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Gene expression and functional analyses in brassinosteroid?¢????mediated stress tolerance

机译:油菜甾醇介导的胁迫耐受性的基因表达和功能分析

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The plant hormone brassinosteroid (BR) plays essential roles in plant growth and development, while also controlling plant stress responses. This dual ability of BR is intriguing from a mechanistic point of view and as a viable solution for stabilizing crop yields under the changing climatic conditions. Here we report a time course analysis of BR responses under both stress and no?¢????stress conditions, the results of which establish that BR incorporates many stress?¢????related features even under no?¢????stress conditions, which are then accompanied by a dynamic stress response under unfavourable conditions. Found within the BR transcriptome were distinct molecular signatures of two stress hormones, abscisic acid and jasmonic acid, which were correlated with enhanced endogenous levels of the two hormones in BR?¢????treated seedlings. The marked presence of genes related to protein metabolism and modification, defence responses and calcium signalling highlights the significance of their associated mechanisms and roles in BR processes. Functional analysis of loss?¢????of?¢????function mutants of a subset of genes selected from the BR transcriptome identified abiotic stress?¢????related roles for ACID PHOSPHATASE5 (ACP5), WRKY33 , JACALIN?¢????RELATED LECTIN1?¢????3 ( JAC?¢????LEC1?¢????3 ) and a BR?¢????RESPONSIVE?¢????RECEPTOR?¢????LIKE KINASE ( BRRLK ). Overall, the results of this study provide a clear link between the molecular changes impacted by BR and its ability to confer broad?¢????range stress tolerance, emphasize the importance of post?¢????translational modification and protein turnover as BR regulatory mechanisms and demonstrate the BR transcriptome as a repertoire of new stress?¢????related regulatory and structural genes.
机译:植物激素油菜素类固醇(BR)在植物生长和发育中起着至关重要的作用,同时还控制着植物的胁迫反应。从机械的角度来看,BR的这种双重能力令人着迷,并且是在不断变化的气候条件下稳定作物产量的可行解决方案。在这里,我们报告了在压力和无压力条件下BR响应的时程分析,其结果表明,即使在无压力条件下,BR也具有许多与压力相关的特征。应力条件,然后在不利条件下伴随动态应力响应。在BR转录组中发现了两种逆境激素的独特分子特征,即脱落酸和茉莉酸,这与经BR3′处理的幼苗中两种激素的内源性水平提高有关。与蛋白质代谢和修饰,防御反应和钙信号有关的基因的显着存在突出了其相关机制和在BR过程中的作用的重要性。从BR​​转录组中选出的一个基因子集的功能突变体损失的功能分析确定了非生物胁迫与酸性磷酸酶5(ACP5),WRKY33,JACALIN的相关作用相关的LECTIN1?3?(JAC ??????? LEC1 ??????? 3)和一个BR ??????? RESPONSIVE? ¢ ????像KINASE(BRRLK)。总的来说,这项研究的结果为BR所影响的分子变化与其赋予广泛的范围耐应力性的能力之间提供了明确的联系,强调了翻译后修饰和蛋白质更新的重要性作为BR调控机制,并证明BR转录组是新的应激相关调控和结构基因的库。

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