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Genome-wide analysis of the Brachypodium distachyon (L.) P. Beauv. Hsp90 gene family reveals molecular evolution and expression profiling under drought and salt stresses

机译:Brachypodium distachyon(L.)P. Beauv。的全基因组分析。 Hsp90基因家族揭示了干旱和盐胁迫下的分子进化和表达谱

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摘要

The structure, evolution, and function of heat shock proteins 90 (Hsp90s) have been investigated in great detail in fungi and animals. However, studies on the Hsp90 genes in plants are generally limited. Brachypodium distachyon (L.) P. Beauv., as a model plant for cereal crops, has become a potential biofuel grass. During its long evolution, the Hsp90 gene family in Brachypodium has developed some strategies to cope with adverse environments. How the Hsp90 gene family in Brachypodium evolved in different plant lineages and what its role is in plant responses to drought and salt stresses remains to be elucidated. We used a set of different bioinformatics tools to identify 94 Hsp90 genes from 10 species representing four plant lineages and classified into three subgroups. Eight BdHsp90 genes were detected from B. distachyon. The number of exon-intron structures differed in each subgroup, and the motif analysis revealed that these genes were relatively conservative in each group. The fragments duplication and tandem duplication, which are the prime powers for functional diversity, generally occurred during the duplication of the whole plant genome. Transcriptional analysis of the BdHsp90 genes under salt and drought stress conditions indicated that the expression of these genes was delayed or increased at different stress time points; The expression was more affected in that of Bradi3g39630, Bradi4g06370, and Bradi1g30130. Our findings suggest the involvement of BdHsp90s in plant abiotic stress response, and further consolidate our views on the stress response mechanism of Hsp90 in general.
机译:热休克蛋白90(Hsp90s)的结构,进化和功能已在真菌和动物中进行了详细研究。但是,对植物中Hsp90基因的研究通常是有限的。作为谷物作物的典范植物,Brachypodium distachyon(L.)P. Beauv。已成为潜在的生物燃料草。在漫长的进化过程中,腕足类动物的Hsp90基因家族已开发出一些应对不利环境的策略。腕足动物中Hsp90基因家族如何在不同的植物谱系中进化,以及其在植物对干旱和盐胁迫的响应中的作用还有待阐明。我们使用了一套不同的生物信息学工具,从代表四种植物谱系的10个物种中鉴定了94个Hsp90基因,并将其分为三个亚组。从地衣芽孢杆菌中检测到八个BdHsp90基因。每个亚组中外显子-内含子结构的数目不同,并且基序分析表明,每个组中这些基因相对保守。片段重复和串联重复是功能多样性的主要力量,通常发生在整个植物基因组的重复过程中。在盐和干旱胁迫条件下对BdHsp90基因的转录分析表明,这些基因的表达在不同的胁迫时间点被延迟或增加。 Bradi3g39630,Bradi4g06370和Bradi1g30130的表达受到更大的影响。我们的发现表明BdHsp90s参与了植物非生物胁迫响应,并进一步巩固了我们对Hsp90胁迫响应机制的总体看法。

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