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A genome-wide survey of DNA methylation in hexaploid wheat

机译:六倍体小麦DNA甲基化的全基因组调查

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Background: DNA methylation is an important mechanism of epigenetic gene expression control that can be passed between generations. Here, we use sodium bisulfite treatment and targeted gene enrichment to study genome-wide methylation across the three sub-genomes of allohexaploid wheat. Results: While the majority of methylation is conserved across all three genomes we demonstrate that differential methylation exists between the sub-genomes in approximately equal proportions. We correlate sub-genome-specific promoter methylation with decreased expression levels and show that altered growing temperature has a small effect on methylation state, identifying a small but functionally relevant set of methylated genes. Finally, we demonstrate long-term methylation maintenance using a comparison between the D sub-genome of hexaploid wheat and its progenitor Aegilops tauschii. Conclusions: We show that tri-genome methylation is highly conserved with the diploid wheat progenitor while sub-genome-specific methylation shows more variation.
机译:背景:DNA甲基化是表观遗传基因表达控制的重要机制,可以在世代之间传递。在这里,我们使用亚硫酸氢钠处理和靶向基因富集研究异源六倍体小麦的三个亚基因组的全基因组甲基化。结果:尽管在所有三个基因组中大多数甲基化都是保守的,但我们证明亚基因组之间存在近似相等比例的差异甲基化。我们将亚基因组特异性启动子甲基化与降低的表达水平相关联,并表明改变的生长温度对甲基化状态影响很小,从而确定了一个小但功能相关的甲基化基因集。最后,我们使用六倍体小麦的D亚基因组与其祖先埃塞俄比斯(Aegilops tauschii)进行比较,证明了长期的甲基化维持。结论:我们表明二倍体小麦祖细胞三基因组甲基化高度保守,而亚基因组特异性甲基化显示更多的变异。

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