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Variation in DNA Methylation Patterns is More Common among Maize Inbreds than among Tissues

机译:DNA甲基化模式的变异在玉米自交系中比在组织中更为普遍

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Chromatin modifications, such as DNA methylation, can provide heritable, epigenetic regulation of gene expression in the absence of genetic changes. A role for DNA methylation in meiotically stable marking of repetitive elements and other sequences has been demonstrated in plants. Methylation of DNA is also proposed to play a role in development through providing a mitotic memory of gene expression states established during cellular differentiation. We sought to clarify the relative levels of DNA methylation variation among different genotypes and tissues in maize (Zea mays L.). We have assessed genomewide DNA methylation patterns in leaf, immature tassel, embryo, and endosperm tissues of two inbred maize lines: B73 and Mo17. There are hundreds of regions of differential methylation present between the two genotypes. In general, the same regions exhibit differential methylation between B73 and Mo17 in each of the tissues that were surveyed. In contrast, there are few examples of tissue-specific DNA methylation variation. Only a subset of regions with tissue-specific variation in DNA methylation show similar patterns in both genotypes of maize and even fewer are associated with altered gene expression levels among the tissues. Our data indicates a limited impact of DNA methylation on developmental gene regulation within maize.
机译:在没有遗传变化的情况下,染色质修饰(例如DNA甲基化)可以提供可遗传的表观遗传调控。在植物中已经证明了DNA甲基化在重复元素和其他序列的减数分裂稳定标记中的作用。还建议通过提供细胞分化过程中建立的基因表达状态的有丝分裂记忆,DNA的甲基化作用在发育中发挥作用。我们试图阐明玉米(Zea mays L.)不同基因型和组织之间DNA甲基化变异的相对水平。我们评估了两个自交玉米品系:B73和Mo17的叶片,未成熟的ta穗,胚和胚乳组织中的全基因组DNA甲基化模式。两种基因型之间存在数百个甲基化差异区域。通常,在每个被调查的组织中,相同区域在B73和Mo17之间显示出不同的甲基化。相反,组织特异性DNA甲基化变异的例子很少。在DNA甲基化中具有组织特异性变异的区域中,只有一部分子区域在两种玉米基因型中显示出相似的模式,甚至更少的与组织中基因表达水平的改变相关。我们的数据表明DNA甲基化对玉米内发育基因调控的影响有限。

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