Department of Cell and Developmental Biology, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA; email:
Department of Entomology, University of Georgia, Griffin, Georgia 30223, USA; email:
Annu Rev Entomol. 2019 Jan 7;64:185-203. doi: 10.1146/annurev-ento-011118-111914. Epub 2018 Oct 4.
Epigenetic inheritance is fundamentally important to cellular differentiation and developmental plasticity. In this review, we provide an introduction to the field of molecular epigenetics in insects. Epigenetic information is passed across cell divisions through the methylation of DNA, the modification of histone proteins, and the activity of noncoding RNAs. Much of our knowledge of insect epigenetics has been gleaned from a few model species. However, more studies of epigenetic information in traditionally nonmodel taxa will help advance our understanding of the developmental and evolutionary significance of epigenetic inheritance in insects. To this end, we also provide a brief overview of techniques for profiling and perturbing individual facets of the epigenome. Doing so in diverse cellular, developmental, and taxonomic contexts will collectively help shed new light on how genome regulation results in the generation of diversity in insect form and function.
表观遗传遗传对细胞分化和发育可塑性至关重要。在这篇综述中,我们介绍了昆虫分子表观遗传学领域。通过 DNA 的甲基化、组蛋白蛋白的修饰和非编码 RNA 的活性,表观遗传信息在细胞分裂中传递。我们对昆虫表观遗传学的大部分了解都是从一些模式物种中获得的。然而,对传统非模式分类群中表观遗传信息的更多研究将有助于我们理解表观遗传在昆虫发育和进化中的重要性。为此,我们还简要概述了用于分析和干扰表观基因组各个方面的技术。在不同的细胞、发育和分类学背景下进行这些研究,将有助于我们更好地了解基因组调控如何导致昆虫形态和功能多样性的产生。