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Mendelian and Non-Mendelian Regulation of Gene Expression in Maize

机译:玉米基因表达的孟德尔和非孟德尔调​​控

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摘要

Transcriptome variation plays an important role in affecting the phenotype of an organism. However, an understanding of the underlying mechanisms regulating transcriptome variation in segregating populations is still largely unknown. We sought to assess and map variation in transcript abundance in maize shoot apices in the intermated B73×Mo17 recombinant inbred line population. RNA-based sequencing (RNA-seq) allowed for the detection and quantification of the transcript abundance derived from 28,603 genes. For a majority of these genes, the population mean, coefficient of variation, and segregation patterns could be predicted by the parental expression levels. Expression quantitative trait loci (eQTL) mapping identified 30,774 eQTL including 96 trans-eQTL "hotspots," each of which regulates the expression of a large number of genes. Interestingly, genes regulated by a trans-eQTL hotspot tend to be enriched for a specific function or act in the same genetic pathway. Also, genomic structural variation appeared to contribute to cis-regulation of gene expression. Besides genes showing Mendelian inheritance in the RIL population, we also found genes whose expression level and variation in the progeny could not be predicted based on parental difference, indicating that non-Mendelian factors also contribute to expression variation. Specifically, we found 145 genes that show patterns of expression reminiscent of paramutation such that all the progeny had expression levels similar to one of the two parents. Furthermore, we identified another 210 genes that exhibited unexpected patterns of transcript presence/absence. Many of these genes are likely to be gene fragments resulting from transposition, and the presence/absence of their transcripts could influence expression levels of their ancestral syntenic genes. Overall, our results contribute to the identification of novel expression patterns and broaden the understanding of transcriptional variation in plants. © 2013 Lin et al.
机译:转录组变异在影响生物表型中起重要作用。然而,对于在分离群体中调节转录组变异的潜在机制的了解仍然未知。我们试图评估和定位B73×Mo17重组自交系群体中玉米芽尖转录本丰度的变化。基于RNA的测序(RNA-seq)可以检测和定量来自28,603个基因的转录本丰度。对于大多数这些基因,可以通过亲本表达水平预测群体平均值,变异系数和分离模式。表达定量性状基因座(eQTL)映射确定了30,774个eQTL,其中包括96个反eQTL“热点”,每个“热点”调节着大量基因的表达。有趣的是,由反式eQTL热点调控的基因倾向于富集特定功能或在同一遗传途径中起作用。同样,基因组结构变异似乎有助于顺式调节基因表达。除了在RIL群体中显示孟德尔遗传的基因外,我们还发现了无法根据亲本差异预测其表达水平和后代变异的基因,这表明非孟德尔因素也有助于表达变异。具体而言,我们发现了145个基因,它们的表达模式让人联想到突变,因此所有后代的表达水平都与两个亲本之一相似。此外,我们鉴定了另外210个基因,它们显示出转录本存在/不存在的意外模式。这些基因中有许多可能是转座产生的基因片段,其转录本的存在与否可能影响其祖先同系基因的表达水平。总体而言,我们的结果有助于鉴定新的表达模式,并拓宽了植物转录变异的理解。 ©2013 Lin等。

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