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eQTL Networks Reveal Complex Genetic Architecture in the Immature Soybean Seed

机译:eQTL网络揭示了未成熟大豆种子中的复杂遗传结构

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The complex network of regulatory factors and interactions involved in transcriptional regulation within the seed is not well understood. To evaluate gene expression regulation in the immature seed, we utilized a genetical genomics approach on a soybean [Glycine max (L.) Merr.] recombinant inbred line (RIL) population and produced a genome-wide expression quantitative trait loci (eQTL) dataset. The validity of the dataset was confirmed by mapping the eQTL hotspot for flavonoid biosynthesis-related genes to a region containing repeats of chalcone synthase (CHS) genes known to correspond to the soybean inhibitor locus that regulates seed color. We then identified eQTL for genes with seed-specific expression and discovered striking eQTL hotspots at distinct genomic intervals on chromosomes (Chr) 20, 7, and 13. The main eQTL hotspot for transcriptional regulation of fatty acid biosynthesis genes also coincided with regulation of oleosin genes. Transcriptional upregulation of genesets from eQTL with opposite allelic effects were also found. Gene–eQTL networks were constructed and candidate regulatory genes were identified from these three key loci specific to seed expression and enriched in genes involved in seed oil accumulation. Our data provides new insight into the complex nature of gene networks in the immature soybean seed and the genetic architecture that contributes to seed development.
机译:种子内转录调控所涉及的调控因子和相互作用的复杂网络尚不十分清楚。为了评估未成熟种子中的基因表达调控,我们对大豆[Glycine max(L.)Merr。]重组自交系(RIL)群体采用了遗传基因组学方法,并产生了全基因组表达定量性状基因座(eQTL)数据集。通过将与类黄酮生物合成相关的基因的eQTL热点映射到一个包含查尔酮合酶(CHS)基因重复的区域来确认该数据集的有效性,该区域已知与调节种子颜色的大豆抑制剂基因座相对应。然后,我们鉴定了具有种子特异性表达的基因的eQTL,并在染色体(Chr)20、7和13的不同基因组间隔处发现了引人注目的eQTL热点。脂肪酸生物合成基因转录调控的主要eQTL热点也与油质蛋白的调控相吻合。基因。还发现了具有相反等位基因效应的eQTL基因组的转录上调。构建了基因-eQTL网络,并从这三个特定于种子表达的关键基因座中鉴定了候选调控基因,并丰富了参与种子油积累的基因。我们的数据为未成熟大豆种子中基因网络的复杂性质以及有助于种子发育的遗传结构提供了新的见解。

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