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首页> 外文期刊>Genome Biology and Evolution >Signatures of DNA Methylation across Insects Suggest Reduced DNA Methylation Levels in Holometabola
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Signatures of DNA Methylation across Insects Suggest Reduced DNA Methylation Levels in Holometabola

机译:昆虫中DNA甲基化的特征表明,大肠菌中DNA甲基化水平降低

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It has been experimentally shown that DNA methylation is involved in the regulation of gene expression and the silencing of transposable element activity in eukaryotes. The variable levels of DNA methylation among different insect species indicate an evolutionarily flexible role of DNA methylation in insects, which due to a lack of comparative data is not yet well-substantiated. Here, we use computational methods to trace signatures of DNA methylation across insects by analyzing transcriptomic and genomic sequence data from all currently recognized insect orders. We conclude that: 1) a functional methylation system relying exclusively on DNA methyltransferase 1 is widespread across insects. 2) DNA methylation has potentially been lost or extremely reduced in species belonging to springtails (Collembola), flies and relatives (Diptera), and twisted-winged parasites (Strepsiptera). 3) Holometabolous insects display signs of reduced DNA methylation levels in protein-coding sequences compared with hemimetabolous insects. 4) Evolutionarily conserved insect genes associated with housekeeping functions tend to display signs of heavier DNA methylation in comparison to the genomic/transcriptomic background. With this comparative study, we provide the much needed basis for experimental and detailed comparative analyses required to gain a deeper understanding on the evolution and function of DNA methylation in insects.
机译:实验表明,DNA甲基化参与基因表达的调控和真核生物中转座子活性的沉默。不同昆虫物种之间DNA甲基化水平的变化表明昆虫中DNA甲基化在进化上的灵活作用,由于缺乏比较数据,这一点尚未得到充分证实。在这里,我们使用计算方法通过分析来自所有当前公认的昆虫订单的转录组和基因组序列数据来追踪昆虫中DNA甲基化的特征。我们得出以下结论:1)仅依赖于DNA甲基转移酶1的功能甲基化系统在昆虫中广泛存在。 2)属于跳尾类(Collembola),苍蝇和亲戚(双翅目)和双翅寄生虫(链霉菌)的物种中,DNA甲基化可能已经丧失或极度减少。 3)与半代谢昆虫相比,全代谢昆虫在蛋白质编码序列中显示出DNA甲基化水平降低的迹象。 4)与基因组/转录组背景相比,与管家功能相关的进化上保守的昆虫基因倾向于显示出更重的DNA甲基化迹象。通过这项比较研究,我们为深入了解昆虫DNA甲基化的进化和功能所需的实验和详细的比较分析提供了非常必要的基础。

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