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首页> 外文期刊>BMC Plant Biology >Genome-wide identification of small heat-shock protein ( HSP20 ) gene family in grape and expression profile during berry development
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Genome-wide identification of small heat-shock protein ( HSP20 ) gene family in grape and expression profile during berry development

机译:葡萄中小的热休克蛋白(HSP20)基因家族的全基因组鉴定和浆果发育过程中的表达谱

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Studies have shown that HSP20 (heat-shock protein 20) genes play important roles in regulating plant growth, development, and stress response. However, the grape HSP20 gene family has not been well studied. A total of 48 VvHSP20 genes were identified from the grape genome, which were divided into 11 subfamilies (CI, CII, CIII, CV, CVI, CVII, MI, MII, ER, CP and PX/Po) based on a phylogenetic analysis and subcellular localization. Further structural analysis showed that most of the VvHSP20 genes (93.8%) had no intron or only one intron, while genes that clustered together based on a phylogenetic tree had similar motifs and evolutionarily conserved structures. The HSP20s share a conservedα-crystalline domain (ACD) and the different components of the ACD domain suggest the functional diversity of VvHSP20s. In addition, the 48 VvHSP20 genes were distributed on 12 grape chromosomes and the majority of VvHSP20 genes were located at the proximal or distal ends of chromosomes. Chromosome mapping indicated that four groups of VvHSP20 genes were identified as tandem duplication genes. Phytohormone responsive, abiotic and biotic stress-responsive, and plant development-related cis-elements were identified from the cis-regulatory elements analysis of VvHSP20s. The expression profiles of VvHSP20s genes (VvHSP20–1, 11, 14, 17, 18, 19, 20, 24, 25, 28, 31, 39, 42, and 43) were largely similar between RNA-Seq and qRT-PCR analysis after hydrogen peroxide (H2O2) treatment. The results showed that most VvHSP20s were down-regulated by H2O2 treatment during fruit development. VvHSP20s genes were indeed found to be involved in the grape berry development and differences in their transcriptional levels may be the result of functional differentiation during evolution. Our results provide valuable information on the evolutionary relationship of genes in the VvHSP20 family, which is useful for future studies on the functional characteristics of VvHSP20 genes in grape.
机译:研究表明,HSP20(热休克蛋白20)基因在调节植物生长,发育和胁迫响应中起着重要作用。但是,葡萄HSP20基因家族尚未得到很好的研究。根据系统发育分析,从葡萄基因组中总共鉴定出48个VvHSP20基因,将其分为11个亚家族(CI,CII,CIII,CV,CVI,CVII,MI,MII,ER,CP和PX / Po)。亚细胞定位。进一步的结构分析表明,大多数VvHSP20基因(93.8%)没有内含子或只有一个内含子,而基于系统发育树聚集在一起的基因具有相似的基序和进化保守的结构。 HSP20共享一个保守的α-晶体结构域(ACD),并且ACD结构域的不同组成部分表明VvHSP20具有功能多样性。此外,48个VvHSP20基因分布在12条葡萄染色体上,大多数VvHSP20基因位于染色体的近端或远端。染色体作图表明,四组VvHSP20基因被鉴定为串联重复基因。从VvHSP20s的顺式调控元素分析中确定了植物激素响应性,非生物和生物胁迫响应性以及植物发育相关的顺式元素。在RNA-Seq和qRT-PCR分析之间,VvHSP20s基因的表达谱(VvHSP20–1、11、14、17、18、19、20、24、25、28、31、39、42和43)在很大程度上相似经过过氧化氢(H2O2)处理后。结果表明,大多数VvHSP20s在果实发育过程中被H2O2处理下调。确实发现VvHSP20s基因参与了葡萄浆果的发育,其转录水平的差异可能是进化过程中功能分化的结果。我们的研究结果提供了有关VvHSP20家族中基因进化关系的有价值的信息,这对于将来研究VvHSP20基因在葡萄中的功能特性很有用。

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