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Genome-wide characterization and expression analysis of common bean bHLH transcription factors in response to excess salt concentration

机译:盐浓度过高导致普通豆bHLH转录因子的全基因组表征和表达分析

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Members of basic helix-loop-helix (bHLH) gene family found in all eukaryotes play crucial roles in response to stress. Though, most eukaryotes carry the proteins of this family, biological functions of the most bHLH family members are not deeply evaluated in plants. In this study, we conducted a comprehensive genome-wide analysis of bHLH transcription factors in salt tolerant common bean. We identified 155 bHLH protein-encoding genes (PvbHLH) by using in silico comparative genomics tools. Based on the phylogenetic tree, PvbHLH genes were classified into 8 main groups with 21 subfamilies. Exon-intron analysis indicated that proteins belonging to same main groups exhibited a closely related gene structure. While, the PvbHLH gene family has been mainly expanded through segmental duplications, a total of 11 tandem duplication were detected. Genome-wide expression analysis of bHLH genes showed that 63 PvbHLH genes were differentially expressed in at least one tissue. Three of them displayed higher expression values in both leaf and root tissues. The in silico micro-RNA target transcript analyses revealed that totally 100 PvHLH genes targeted by 86 plant miRNAs. The most abundant transcripts, which were targeted by all 18 plant miRNA, were belonging to PvHLH-22 and PvHLH-44 genes. The expression of 16 PvbHLH genes in the root and leaf tissues of salt-stressed common bean was evaluated using qRT-PCR. Among them, two of PvbHLHs, PvbHLH-54, PvbHLH-148, were found to be up-regulated in both tissues in correlation with RNA-seq measurements. The results of this study could help improve understanding of biological functions of common bean bHLH family under salt stress. Additionally, it may provide basic resources for analyzing bHLH protein function for improving economic, agronomic and ecological benefit in common bean and other species.
机译:在所有真核生物中发现的基本螺旋-环-螺旋(bHLH)基因家族的成员在应对压力中起关键作用。尽管大多数真核生物都携带该家族的蛋白质,但大多数bHLH家族成员的生物学功能并未在植物中得到深入评估。在这项研究中,我们对耐盐普通豆中的bHLH转录因子进行了全基因组范围的全面分析。我们使用计算机比较基因组学工具鉴定了155个bHLH蛋白质编码基因(PvbHLH)。根据系统发育树,将PvbHLH基因分为21个亚家族的8个主要组。外显子-内含子分析表明,属于相同主要基团的蛋白质表现出密切相关的基因结构。虽然,PvbHLH基因家族主要通过区段重复进行了扩增,但共检测到11个串联重复。 bHLH基因的全基因组表达分析表明,至少一种组织中有63个PvbHLH基因差异表达。其中三个在叶和根组织中均显示较高的表达值。电脑微RNA靶转录分析表明,共有100个PvHLH基因被86种植物miRNA靶向。被所有18种植物miRNA靶向的最丰富的转录本属于PvHLH-22和PvHLH-44基因。使用qRT-PCR评估了盐胁迫普通豆根和叶组织中16个PvbHLH基因的表达。其中,发现两个PvbHLHs,PvbHLH-54,PvbHLH-148在与RNA-seq测量相关的两个组织中均被上调。这项研究的结果可能有助于增进人们对盐胁迫下普通豆bHLH家族生物学功能的了解。另外,它可以提供分析bHLH蛋白功能的基础资源,从而改善普通豆和其他物种的经济,农业和生态效益。

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