首页> 外文期刊>BMC Genomics >Comparative analysis of basic helix–loop–helix gene family among Brassica oleracea, Brassica rapa, and Brassica napus
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Comparative analysis of basic helix–loop–helix gene family among Brassica oleracea, Brassica rapa, and Brassica napus

机译:Brassica Oleracea,Brassica Rapa和Brassica Napus中基本螺旋环螺旋基因家族的比较分析

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BACKGROUND:The basic helix-loop-helix (bHLH) is the second largest gene family in the plant, some members play important roles in pistil development and response to drought, waterlogging, cold stress and salt stress. The bHLH gene family has been identified in many species, except for Brassica oleracea and B. napus thus far. This study aims to identify the bHLH family members in B. oleracea, B. rapa and B. napus, and elucidate the expression, duplication, phylogeny and evolution characters of them.RESULT:A total of 268 bHLH genes in B. oleracea, 440 genes in B. napus, and 251 genes in B. rapa, including 21 new bHLH members, have been identified. Subsequently, the analyses of the phylogenetic trees, conserved motifs and gene structures showed that the members in the same subfamily were highly conserved. Most Ka/Ks values of homologous gene were??1, which indicated that these genes suffered from strong purifying selection for retention. The retention rates of BrabHLH and BolbHLH genes were 51.6 and 55.1%, respectively. The comparative expression patterns between B. rapa and B. napus showed that they had similar expression patterns in the root and contrasting patterns in the stems, leaves, and reproductive tissues. In addition, there were 41 and 30 differential expression bHLH genes under the treatments of ABA and JA, respectively, and the number of down regulation genes was significantly more than up regulation genes.CONCLUSION:In the present study, we identified and performed the comparative genomics analysis of bHLH gene family among B. oleracea, B. rapa and B. napus, and also investigated their diversity. The expression patterns between B. rapa and B. napus shows that they have the similar expression pattern in the root and opposite patterns in the stems, leaves, and reproduction tissues. Further analysis demonstrated that some bHLH gene members may play crucial roles under the abiotic and biotic stress conditions. This is the first to report on the bHLH gene family analysis in B. oleracea and B. napus, which can offer useful information on the functional analysis of the bHLH gene in plants.
机译:背景:基本螺旋环 - 螺旋(BHLH)是该植物中第二大基因家族,一些成员在雌蕊发育中发挥重要作用,对干旱,涝,冷应力和盐胁迫作出重要作用。 BHLH基因家族已在许多物种中鉴定,但到目前为止芸苔和B. Napus。本研究旨在鉴定B. Oleracea,B. Rapa和B. Napus中的BHLH家族成员,并阐明它们的表达,重复,系统发育和演化特征。结果:B. Oleracea共有268个BHLH基因,440 B. Napus中的基因和B. RAPA中的251个基因,包括21个新的BHLH成员,包括21名新的BHLH成员。随后,系统发育树,保守的基序和基因结构的分析表明,同一亚家族中的构件高度保守。同源基因的大多数Ka / ks值是α<β1,表明这些基因患有强烈净化选择的保留。 BrabhlH和BolbhlH基因的保留率分别为51.6和55.1%。 B. Rapa和B. Napus之间的比较表达模式表明它们具有与茎,叶和生殖组织的根系和对比模式中的表达模式相似。此外,分别在ABA和JA的处理下存在41和30个差异表达BHLH基因,并且下调基因的数量显着大于调节基因。结论:在本研究中,我们识别并进行比较B. Oleracea,B. Rapa和B. Napus中BHLH基因家族的基因组学分析,并调查了它们的多样性。 B. Rapa和B. Napus之间的表达模式表明它们具有茎,叶和再生组织中的根和相反的图案中的类似表达模式。进一步的分析证明,一些BHLH基因成员可以在非生物和生物应激条件下起到至关重要的作用。这是第一个报告B. Oleracea和B. Napus中的BHLH基因家庭分析,可以提供有关植物中BHLH基因的功能分析的有用信息。

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