Department of Biological Sciences, Université de Montréal. C.P. 6128, Succursale Centre-Ville, Montreal, QC, Canada.
Mol Ecol. 2010 Apr;19(7):1283-95. doi: 10.1111/j.1365-294X.2010.04580.x. Epub 2010 Mar 8.
Organisms often respond to environmental changes by producing alternative phenotypes. Epigenetic processes such as DNA methylation may contribute to environmentally induced phenotypic variation by modifying gene expression. Changes in DNA methylation, unlike DNA mutations, can be influenced by the environment; they are stable at the time scale of an individual and present different levels of heritability. These characteristics make DNA methylation a potentially important molecular process to respond to environmental change. The aim of this review is to present the implications of DNA methylation on phenotypic variations driven by environmental changes. More specifically, we explore epigenetic concepts concerning phenotypic change in response to the environment and heritability of DNA methylation, namely the Baldwin effect and genetic accommodation. Before addressing this point, we report major differences in DNA methylation across taxa and the role of this modification in producing and maintaining environmentally induced phenotypic variation. We also present the different methods allowing the detection of methylation polymorphism. We believe this review will be helpful to molecular ecologists, in that it highlights the importance of epigenetic processes in ecological and evolutionary studies.
生物通常通过产生不同的表型来应对环境变化。表观遗传过程,如 DNA 甲基化,可能通过改变基因表达来促进环境诱导的表型变异。与 DNA 突变不同,DNA 甲基化的变化可以受到环境的影响;它们在个体的时间尺度上是稳定的,并表现出不同程度的遗传性。这些特征使 DNA 甲基化成为应对环境变化的一个潜在重要的分子过程。本综述的目的是介绍 DNA 甲基化对环境变化驱动的表型变异的影响。更具体地说,我们探讨了与环境反应的表型变化和 DNA 甲基化的遗传性有关的表观遗传概念,即鲍德温和遗传适应。在讨论这一点之前,我们报告了跨分类群的 DNA 甲基化的主要差异,以及这种修饰在产生和维持环境诱导的表型变异中的作用。我们还介绍了检测甲基化多态性的不同方法。我们相信,这篇综述将有助于分子生态学家,因为它强调了表观遗传过程在生态和进化研究中的重要性。