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首页> 外文期刊>BMC Genomics >Genome-wide analysis of the Populus Hsp90 gene family reveals differential expression patterns, localization, and heat stress responses
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Genome-wide analysis of the Populus Hsp90 gene family reveals differential expression patterns, localization, and heat stress responses

机译:全基因组分析胡杨Hsp90基因家族揭示差异表达模式,本地化和热应激反应。

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Background Members of the heat shock protein 90 (Hsp90) class of proteins are evolutionarily conserved molecular chaperones. They are involved in protein folding, assembly, stabilization, activation, and degradation in many normal cellular processes and under stress conditions. Unlike many other well-characterized molecular chaperones, Hsp90s play key roles in signal transduction, cell-cycle control, genomic silencing, and protein trafficking. However, no systematic analysis of genome organization, gene structure, and expression compendium has been performed in the Populus model tree genus to date. Results We performed a comprehensive analysis of the Populus Hsp90 gene family and identified 10 Populus Hsp90 genes, which were phylogenetically clustered into two major groups. Gene structure and motif composition are relatively conserved in each group. In Populus trichocarpa, we identified three paralogous pairs, among which the PtHsp90-5a/PtHsp90-5b paralogous pair might be created by duplication of a genome segment. Subcellular localization analysis shows that PtHsp90 members are localized in different subcellular compartments. PtHsp90-3 is localized both in the nucleus and in the cytoplasm, PtHsp90-5a and PtHsp90-5b are in chloroplasts, and PtHsp90-7 is in the endoplasmic reticulum (ER). Furthermore, microarray and semi-quantitative real-time RT-PCR analyses show that a number of Populus Hsp90 genes are differentially expressed upon exposure to various stresses. Conclusions The gene structure and motif composition of PtHsp90s are highly conserved among group members, suggesting that members of the same group may also have conserved functions. Microarray and RT-PCR analyses show that most PtHsp90s were induced by various stresses, including heat stress. Collectively, these observations lay the foundation for future efforts to unravel the biological roles of PtHsp90 genes.
机译:背景技术热激蛋白90(Hsp90)类蛋白的成员是进化上保守的分子伴侣。它们参与许多正常细胞过程中和在应激条件下的蛋白质折叠,组装,稳定,活化和降解。与许多其他特征鲜明的分子伴侣不同,Hsp90在信号转导,细胞周期控制,基因组沉默和蛋白质运输中起关键作用。但是,迄今为止,尚未在杨树模型树属中进行系统的基因组组织,基因结构和表达纲要的系统分析。结果我们对胡杨Hsp90基因家族进行了全面分析,确定了10个胡杨Hsp90基因,它们在系统发育上分为两个主要组。基因结构和基序组成在每组中相对保守。在毛果杨中,我们鉴定了三个旁系对,其中PtHsp90-5a / PtHsp90-5b旁系对可能是通过重复基因组片段而产生的。亚细胞定位分析表明PtHsp90成员位于不同的亚细胞区室。 PtHsp90-3位于细胞核和细胞质中,PtHsp90-5a和PtHsp90-5b位于叶绿体中,而PtHsp90-7位于内质网(ER)中。此外,微阵列和半定量实时RT-PCR分析表明,在暴露于各种胁迫下,许多胡杨Hsp90基因差异表达。结论PtHsp90s的基因结构和基序组成在组成员中高度保守,表明同一组成员也可能具有保守的功能。芯片和RT-PCR分析表明,大多数PtHsp90s是由多种应激诱导的,包括热应激。总体而言,这些观察为将来进一步阐明PtHsp90基因的生物学作用奠定了基础。

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