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首页> 外文期刊>BMC Plant Biology >Genome-wide identification and expression analysis of the trihelix transcription factor family in tartary buckwheat ( Fagopyrum tataricum )
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Genome-wide identification and expression analysis of the trihelix transcription factor family in tartary buckwheat ( Fagopyrum tataricum )

机译:苦荞三螺旋转录因子家族的全基因组鉴定和表达分析

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In the study, the trihelix family, also referred to as GT factors, is one of the transcription factor families. Trihelix genes play roles in the light response, seed maturation, leaf development, abiotic and biological stress and other biological activities. However, the trihelix family in tartary buckwheat (Fagopyrum tataricum), an important usable medicinal crop, has not yet been thoroughly studied. The genome of tartary buckwheat has recently been reported and provides a theoretical basis for our research on the characteristics and expression of trihelix genes in tartary buckwheat based at the whole level. In the present study, a total of 31 FtTH genes were identified based on the buckwheat genome. They were named from FtTH1 to FtTH31 and grouped into 5 groups (GT-1, GT-2, SH4, GTγ and SIP1). FtTH genes are not evenly distributed on the chromosomes, and we found segmental duplication events of FtTH genes on tartary buckwheat chromosomes. According to the results of gene and motif composition, FtTH located in the same group contained analogous intron/exon organizations and motif organizations. qRT-PCR showed that FtTH family members have multiple expression patterns in stems, roots, leaves, fruits, and flowers and during fruit development. Through our study, we identified 31 FtTH genes in tartary buckwheat and synthetically further analyzed the evolution and expression pattern of FtTH proteins. The structure and motif organizations of most genes are conserved in each subfamily, suggesting that they may be functionally conserved. The FtTH characteristics of the gene expression patterns indicate functional diversity in the time and space in the tartary buckwheat life process. Based on the discussion and analysis of FtTH gene function, we screened some genes closely related to the growth and development of tartary buckwheat. This will help us to further study the function of FtTH genes through experimental exploration in tartary buckwheat growth and improve the fruit of tartary buckwheat.
机译:在这项研究中,三螺旋家族(也称为GT因子)是转录因子家族之一。 Trihelix基因在光响应,种子成熟,叶片发育,非生物和生物胁迫以及其他生物活动中发挥作用。然而,尚未充分研究t荞麦中的三螺旋家族(Fagopyrum tataricum),这是一种重要的有用药用作物。最近报道了t荞麦的基因组,为我们从整体上研究t荞麦中三螺旋基因的特性和表达提供了理论依据。在本研究中,基于荞麦基因组共鉴定出31个FtTH基因。它们从FtTH1到FtTH31命名,分为5组(GT-1,GT-2,SH4,GTγ和SIP1)。 FtTH基因在染色体上的分布不均匀,我们在苦荞染色体上发现了FtTH基因的片段复制事件。根据基因和基序组成的结果,位于同一组的FtTH包含相似的内含子/外显子组织和基序组织。 qRT-PCR显示FtTH家族成员在茎,根,叶,果实和花朵以及果实发育过程中具有多种表达模式。通过我们的研究,我们在苦荞中鉴定了31个FtTH基因,并综合分析了FtTH蛋白的进化和表达模式。大多数基因的结构和基序组织在每个亚科中都保守,表明它们在功能上可能是保守的。基因表达模式的FtTH特征表明在苦荞生命过程中时间和空间的功能多样性。在对FtTH基因功能进行讨论和分析的基础上,筛选了一些与苦荞生长发育密切相关的基因。这将有助于我们通过实验探索进一步了解FtTH基因在苦荞麦中的功能,并改善苦荞麦的果实。

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