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Global eQTL Mapping Reveals the Complex Genetic Architecture of Transcript-Level Variation in Arabidopsis

机译:全球eQTL映射揭示了拟南芥转录水平变异的复杂遗传结构。

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摘要

The genetic architecture of transcript-level variation is largely unknown. The genetic determinants of transcript-level variation were characterized in a recombinant inbred line (RIL) population (n = 211) of Arabidopsis thaliana using whole-genome microarray analysis and expression quantitative trait loci (eQTL) mapping of transcript levels as expression traits (e-traits). Genetic control of transcription was highly complex: one-third of the quantitatively controlled transcripts/e-traits were regulated by cis-eQTL, and many trans-eQTL mapped to hotspots that regulated hundreds to thousands of e-traits. Several thousand eQTL of large phenotypic effect were detected, but almost all (93%) of the 36,871 eQTL were associated with small phenotypic effects (R2 < 0.3). Many transcripts/e-traits were controlled by multiple eQTL with opposite allelic effects and exhibited higher heritability in the RILs than their parents, suggesting nonadditive genetic variation. To our knowledge, this is the first large-scale global eQTL study in a relatively large plant mapping population. It reveals that the genetic control of transcript level is highly variable and multifaceted and that this complexity may be a general characteristic of eukaryotes.
机译:成绩单水平变异的遗传结构很大程度上未知。使用全基因组微阵列分析和转录水平表达定量特征位点(eQTL)作图表达水平(e),在拟南芥重组近交系(n = 211)中表征转录水平变异的遗传决定因素。 -特质)。转录的遗传控制非常复杂:三分之一的定量控制转录本/ e-性状是由cis-eQTL调控的,许多trans-eQTL定位于调控数百至数千个e-traits的热点。检测到数千个具有大表型效应的eQTL,但几乎全部(93%)的36,871个eQTL与较小的表型效应相关(R 2 <0.3)。许多转录本/ e-性状受等位基因效应相反的多个eQTL控制,并且在RIL中显示出比其亲本更高的遗传力,表明非加性遗传变异。据我们所知,这是在相对较大的植物作图群体中进行的第一项大规模全球eQTL研究。它揭示了转录水平的遗传控制是高度可变的和多方面的,并且这种复杂性可能是真核生物的一般特征。

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