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Next-generation sequencing reveals complex relationships between the epigenome and transcriptome in maize

机译:下一代测序揭示了玉米表观基因组和转录组之间的复杂关系

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摘要

Epigenetic modifications and small RNAs play an important role in gene regulation. Here, we discuss results of our Solexa/Illumina 1G sequencing-based survey of DNA methylation, activating and repressive histone modifications, small RNAs and mRNA in the maize genome. We analyze tissue-specific epigenetic patterns, discuss antagonistic relationships between repressive epigenetic marks and highlight synergistic relationships between activating histone modifications. We discuss our observation that small RNAs show a tissue-specific distribution in maize. Whereas 24-nucleotide long small interfering RNAs (siRNAs) accumulated preferentially in shoots, 21-nucleotide long micro RNAs (miRNAs) were the most abundant group in roots, which follows the transcript level of mop1. Furthermore, we discuss the possibility that a novel class of 22-nucleotide siRNAs might originate from long double-stranded RNAs in an RNA-dependent RNA polymerase (RdRP)-independent manner. This supports the intriguing possibility that maize possesses at least two distinct pathways to generate siRNAs, one of which relies on RdRP and a second one that might be RdRP-independent.
机译:表观遗传修饰和小RNA在基因调控中起重要作用。在这里,我们讨论基于Solexa / Illumina 1G测序的玉米甲基化,DNA活化和抑制性组蛋白修饰,小RNA和mRNA基因组研究的结果。我们分析组织特异性表观遗传模式,讨论抑制性表观遗传标记之间的拮抗关系,并强调激活组蛋白修饰之间的协同关系。我们讨论了我们的观察结果,即小RNA在玉米中显示出组织特异性分布。 24核苷酸长的小干扰RNA(siRNA)在芽中优先积累,而21核苷酸长的微RNA(miRNA)是根中最丰富的基团,其遵循mop1的转录水平。此外,我们讨论了新的一类22个核苷酸的siRNA可能以独立于RNA的RNA聚合酶(RdRP)的方式源自长双链RNA的可能性。这支持了一种有趣的可能性,即玉米具有至少两种不同的途径来生成siRNA,其中一种途径依赖于RdRP,第二种途径可能与RdRP无关。

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