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首页> 外文期刊>BMC Plant Biology >Genome-wide analysis of cotton C2H2-zinc finger transcription factor family and their expression analysis during fiber development
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Genome-wide analysis of cotton C2H2-zinc finger transcription factor family and their expression analysis during fiber development

机译:棉C2H2-锌指转录因子家族的基因组分析及其在纤维发育过程中的表达分析

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摘要

C2H2-zinc finger protein family is commonly found in the plant, and it is known as the key actors in the regulation of transcription and vital component of chromatin structure. A large number of the C2H2-zinc finger gene members have not been well characterized based on their functions and structure in cotton. However, in other plants, only a few C2H2-zinc finger genes have been studied. In this work, we performed a comprehensive analysis and identified 386, 196 and 195 C2H2-zinc finger genes in Gossypium hirsutum (upland cotton), Gossypium arboreum and Gossypium raimondii, respectively. Phylogenetic tree analysis of the C2H2-zinc finger proteins encoding the C2H2-zinc finger genes were classified into seven (7) subgroups. Moreover, the C2H2-zinc finger gene members were distributed in all cotton chromosomes though with asymmetrical distribution patterns. All the orthologous genes were detected between tetraploid and the diploid cotton, with 154 orthologous genes pair detected between upland cotton and Gossypium arboreum while 165 orthologous genes were found between upland cotton and Gossypium raimondii. Synonymous (Ks) and non-synonymous (Ka) nucleotide substitution rates (Ka/Ks) analysis indicated that the cotton C2H2-zinc finger genes were highly influenced mainly by negative selection, which maintained their protein levels after the duplication events. RNA-seq data and RT-qPCR validation of the RNA seq result revealed differential expression pattern of some the C2H2-zinc finger genes at different stages of cotton fiber development, an indication that the C2H2-zinc finger genes play an important role in initiating and regulating fiber development in cotton. This study provides a strong foundation for future practical genome research on C2H2-zinc finger genes in upland cotton. The expression levels of C2H2-zinc finger genes family is a pointer of their involvement in various biochemical and physiological functions which are directly related to cotton fiber development during initiation and elongation stages. This work not only provides a basis for determining the nominal role of the C2H2-zinc finger genes in fiber development but also provide valuable information for characterization of potential candidate genes involved in regulation of cotton fiber development.
机译:C2H2-锌指蛋白质家族通常在植物中发现,称为染色质结构转录和重要组成部分中的关键参与者。基于它们的棉花的功能和结构,大量的C 2 H 2-锌指基因构件没有很好地表征。然而,在其他植物中,已经研究了几种C2H2-锌手指基因。在这项工作中,我们分别在Gossypium Hirsutum(Upland Cotton),Gossypium Arboreum和Gossypium raimondii中进行了综合分析和确定了386,196和195c2H2-锌手指基因。将编码C2H2-锌指基因的C2H2-锌指蛋白的系统发育树分析分为七(7)个亚组。此外,C 2 H 2-锌指基因成员在所有棉染色体中分布,虽然具有不对称的分布模式。在四倍体和二倍体棉之间检测到所有正交基因,在Upland棉花和棉花型arboreum之间检测到154个外科基因对,而165个正非基因在旱地棉和棉花褐土之间发现。同义(KS)和非同义(KA)核苷酸取代率(KA / KS)分析表明,棉C2H2-锌手指基因的主要影响主要受阴性选择,在重复事件后保持其蛋白质水平。 RNA-SEQ数据和RTNA SEQ的RT-QPCR验证结果显示了在棉纤维发育的不同阶段的一些C2H2-锌手指基因的差异表达模式,表明C2H2-锌指基因在启动中发挥着重要作用调节棉花纤维开发。本研究为未来的实际基因组研究对Upland棉花的C2H2-锌手指基因进行了强大的基础。 C 2 H 2-锌指基因家族的表达水平是其参与各种生物化学和生理功能的指针,其在起始和伸长级期间与棉纤维发育直接相关。这项工作不仅为确定C2H2-锌手指基因在纤维开发中的标称作用提供了基础,还提供了有价值的信息,以表征参与棉纤维发育的调节的潜在候选基因。

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