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Transcriptome analysis reveals important candidate genes involved in grain-size formation at the stage of grain enlargement in common wheat cultivar Bainong 4199

机译:转录组分析揭示了普通小麦品种 Bainong 4199在膨大阶段参与晶粒大小形成的重要候选基因。

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摘要

Grain-size is one of the yield components, and the first 14 days after pollination (DAP) is a crucial stage for wheat grain-size formation. To understand the mechanism of grain-size formation at the whole gene expression level and to identify the candidate genes related to grain pattern formation, cDNA libraries from immature grains of 5 DAP and 14 DAP were constructed. According to transcriptome analysis, a total of 12,555 new genes and 9,358 differentially expressed genes (DEGs) were obtained. In DEGs, 2,876, 3,357 and 3,125 genes were located on A, B and D subgenome respectively. 9,937 (79.15%) new genes and 9,059 (96.80%) DEGs were successfully annotated. For DEGs, 4,453 were up-regulated and 4,905 were down-regulated at 14 DAP. The Gene Ontology (GO) database indicated that most of the grain-size-related genes were in the same cluster. The Kyoto Encyclopedia of Genes and Genomes (KEGG) database analysis showed that 130, 129 and 20 DEGs were respectively involved in starch and sucrose metabolism, plant hormone signal transduction and ubiquitin-mediated proteolysis. Expression levels of 8 randomly selected genes were confirmed by qRT-PCR, which was consistent with the transcriptome data. The present database will help us understand the molecular mechanisms underlying early grain development and provide the foundation for increasing grain-size and yield in wheat breeding programs.
机译:籽粒大小是产量构成要素之一,授粉后的第14天(DAP)是形成小麦籽粒大小的关键阶段。为了了解整个基因表达水平上晶粒尺寸形成的机理并鉴定与晶粒图案形成相关的候选基因,从5 DAP和14 DAP的未成熟晶粒中构建了cDNA文库。根据转录组分析,总共获得了12555个新基因和9358个差异表达基因(DEG)。在DEGs中,分别有2876、3357和3125个基因位于A,B和D亚基因组上。成功注释了9,937(79.15%)个新基因和9,059(96.80%)个DEG。对于DEG,在14 DAP时上调了4,453,下调了4,905。基因本体论(GO)数据库表明,大多数与粒度相关的基因都在同一簇中。京都基因与基因组百科全书(KEGG)数据库分析显示,分别有130、129和20个DEG参与淀粉和蔗糖代谢,植物激素信号转导和泛素介导的蛋白水解。通过qRT-PCR确认了8个随机选择基因的表达水平,这与转录组数据一致。目前的数据库将帮助我们了解早期谷物发育的分子机制,并为增加小麦育种计划的谷物大小和单产提供基础。

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