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首页> 外文期刊>Frontiers in Plant Science >Identification of Key Proteins and Networks Related to Grain Development in Wheat ( Triticum aestivum L.) by Comparative Transcription and Proteomic Analysis of Allelic Variants in TaGW2-6A
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Identification of Key Proteins and Networks Related to Grain Development in Wheat ( Triticum aestivum L.) by Comparative Transcription and Proteomic Analysis of Allelic Variants in TaGW2-6A

机译:通过对比转录和 的相比变异性的比较转录和蛋白质组学分析,鉴定与小麦(<斜斜体> Triticum aestivum L.)相关的关键蛋白质和网络

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In wheat, coding region allelic variants of TaGW2-6A are closely associated with grain width and weight, but the genetic mechanisms involved remain unclear. Thus, to obtain insights into the key functions regulated by TaGW2-6A during wheat grain development, we performed transcriptional and proteomic analyses of TaGW2-6A allelic variants. The transcription results showed that the TaGW2-6A allelic variants differed significantly by several orders of magnitude. Each allelic variant of TaGW2-6A reached its first transcription peak at 6 days after anthesis (DAA), but the insertion type TaGW2-6A allelic variant reached its second peak earlier than the normal type, i.e., at 12 DAA rather than 20 DAA. In total, we identified 228 differentially accumulated protein spots representing 138 unique proteins by two-dimensional gel electrophoresis and tandem MALDI-TOF/TOF-MS in these three stages. Based on the results, we found some key proteins that are closely related to wheat grain development. The results of this analysis improve our understanding of the genetic mechanisms related to TaGW2-6A during wheat grain development as well as providing insights into the biological processes involved in seed formation.
机译:在小麦中,编码区域标签2-6a的等位基因变体与粒度和重量密切相关,但涉及的遗传机制仍然不清楚。因此,为了获得对小麦籽粒发育期间由TagW2-6A调节的关键功能的见解,我们进行了转录和蛋白质组学分析的标签W2-6A等位基因变体。转录结果表明,TAGW2-6A等位基因变体与几个数量级的显着不同。 Tagw2-6a的每个等位基因变体在开花(DAA)后6天达到其第​​一转录峰,但插入型TAGW2-6A等位基因变体早于正常型,即在12DAA而不是20DAA时达到其第二峰值。总共确定,在这三个阶段中通过二维凝胶电泳和串联MALDI-TOF / TOF-MS鉴定了228个差异累积蛋白质的蛋白质点。基于结果,我们发现一些与小麦籽粒发育密切相关的关键蛋白质。该分析的结果改善了对小麦籽粒发展期间与Tagw2-6a相关的遗传机制的理解,以及向种子形成中参与的生物过程中的见解。

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