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水蚤的基因体甲基化模式与基因家族大小相关。

Gene Body Methylation Patterns in Daphnia Are Associated with Gene Family Size.

作者信息

Asselman Jana, De Coninck Dieter I M, Pfrender Michael E, De Schamphelaere Karel A C

机构信息

Laboratory for Environmental Toxicology and Aquatic Ecology, Environmental Toxicology Unit (GhEnToxLab), Ghent University, Ghent, Belgium Department of Biological Sciences, University of Notre Dame

Laboratory for Environmental Toxicology and Aquatic Ecology, Environmental Toxicology Unit (GhEnToxLab), Ghent University, Ghent, Belgium Laboratory of Pharmaceutical Biotechnology (labFBT), Ghent University, Ghent, Belgium.

出版信息

Genome Biol Evol. 2016 Apr 25;8(4):1185-96. doi: 10.1093/gbe/evw069.

Abstract

The relation between gene body methylation and gene function remains elusive. Yet, our understanding of this relationship can contribute significant knowledge on how and why organisms target specific gene bodies for methylation. Here, we studied gene body methylation patterns in two Daphnia species. We observed both highly methylated genes and genes devoid of methylation in a background of low global methylation levels. A small but highly significant number of genes was highly methylated in both species. Remarkably, functional analyses indicate that variation in methylation within and between Daphnia species is primarily targeted to small gene families whereas large gene families tend to lack variation. The degree of sequence similarity could not explain the observed pattern. Furthermore, a significant negative correlation between gene family size and the degree of methylation suggests that gene body methylation may help regulate gene family expansion and functional diversification of gene families leading to phenotypic variation.

摘要

基因体甲基化与基因功能之间的关系仍然难以捉摸。然而,我们对这种关系的理解可以为生物体如何以及为何将特定基因体作为甲基化目标提供重要的知识。在这里,我们研究了两种水蚤物种的基因体甲基化模式。在整体甲基化水平较低的背景下,我们观察到既有高度甲基化的基因,也有未甲基化的基因。在这两个物种中,有一小部分但数量显著的基因高度甲基化。值得注意的是,功能分析表明,水蚤物种内部和之间甲基化的变化主要针对小基因家族,而大基因家族往往缺乏这种变化。序列相似程度无法解释所观察到的模式。此外,基因家族大小与甲基化程度之间存在显著的负相关,这表明基因体甲基化可能有助于调节基因家族的扩展以及导致表型变异的基因家族功能多样化。

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