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A major quantitative trait locus for cold-responsive gene expression is linked to frost-resistance gene Fr-A2 in common wheat

机译:普通小麦抗寒基因表达的主要数量性状基因座与抗冻基因Fr-A2相关

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Low temperature induces expression of Cor (cold-responsive)/Lea (late embryogenesis-abundant) gene family members through C-repeat binding factor (CBF) transcription factors in common wheat. However, the relationship between the genetic loci controlling cold-responsive gene expression and freezing tolerance is unclear. In expression quantitative trait locus (eQTL) analysis, accumulated transcripts of Cor/Lea and CBF genes were quantified in recombinant inbred lines derived from a cross between two common wheat cultivars with different levels of freezing tolerance. Four eQTLs controlling five cold-responsive genes were found, and the major eQTL with the greatest effect was located on the long arm of chromosome 5A. At least the ID and 5A eQTLs playedimportant roles in development of freezing tolerance in common wheat. The chromosomal location of the 5 A eQTL, controlling four cold-responsive genes, coincided with a region homoeol-ogous to a frost-tolerance locus (Fr-A~m2) reported as a CBF cluster region in einkorn wheat. The 5A eQTL plays a significant role through Cor/Lea gene expression in cold acclimation of wheat. In addition, our results suggest that one or more CBF copies at the Fr-2 region positively regulate other copies, which might amplify the positive effects of the CBF cluster on downstream Cor/Lea gene activation.
机译:低温通过普通小麦中的C-重复结合因子(CBF)转录因子诱导Cor(冷应答)/ Lea(胚胎发生后期)基因家族成员的表达。但是,控制冷应答基因表达的遗传基因座与抗冻性之间的关系尚不清楚。在表达定量性状基因座(eQTL)分析中,Cor / Lea和CBF基因的累积转录本在重组自交系中进行了定量,该自交系来自两个具有不同耐寒性水平的普通小麦品种之间的杂交。发现了四个控制五个冷应答基因的eQTL,作用最大的主要eQTL位于5A染色体的长臂上。至少ID和5A eQTL在普通小麦的耐冻性发展中起重要作用。控制4个冷响应基因的5 A eQTL的染色体位置,与报道为Einkorn小麦的CBF簇区域的耐霜冻基因座(Fr-A〜m2)同源的区域相吻合。 5A eQTL通过Cor / Lea基因表达在小麦冷驯化中发挥重要作用。此外,我们的结果表明,Fr-2区域的一个或多个CBF拷贝正调控其他拷贝,这可能会放大CBF簇对下游Cor / Lea基因激活的积极作用。

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