Comparative epigenomics: an emerging field with breakthrough potential to understand evolution of epigenetic regulation

J. Deakin, R. Domaschenz, P. S. Lim, T. Ezaz, Sudha Rao
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引用次数: 6

Abstract

Abstract Epigenetic mechanisms regulate gene expression, thereby mediating the interaction between environment, genotype and phenotype. Changes to epigenetic regulation of genes may be heritable, permitting rapid adaptation of a species to environmental cues. However, most of the current understanding of epigenetic gene regulation has been gained from studies of mice and humans, with only a limited understanding of the conservation of epigenetic mechanisms across divergent taxa. The relative ease at which genome sequence data is now obtained and the advancements made in epigenomics techniques for non-model species provides a basis for carrying out comparative epigenomic studies across a wider range of species, making it possible to start unraveling the evolution of epigenetic mechanisms. We review the current knowledge of epigenetic mechanisms obtained from studying model organisms, give an example of how comparative epigenomics using non-model species is helping to trace the evolutionary history of X chromosome inactivation in mammals and explore the opportunities to study comparative epigenomics in biological systems displaying adaptation between species, such as the immune system and sex determination.
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比较表观基因组学:理解表观遗传调控进化的一个具有突破性潜力的新兴领域
表观遗传机制调节基因表达,从而介导环境、基因型和表型之间的相互作用。基因表观遗传调控的变化可能是可遗传的,允许物种对环境线索的快速适应。然而,目前对表观遗传基因调控的了解大多来自小鼠和人类的研究,对不同类群之间表观遗传机制的保护了解有限。基因组序列数据的获取相对容易,非模式物种表观基因组学技术的进步为在更大范围的物种中进行比较表观基因组学研究提供了基础,使开始揭示表观遗传机制的进化成为可能。我们回顾了从模式生物研究中获得的表观遗传机制的现有知识,给出了一个例子,说明使用非模式物种的比较表观基因组学如何帮助追踪哺乳动物X染色体失活的进化史,并探索了在生物系统中研究比较表观基因组学的机会,显示物种之间的适应性,如免疫系统和性别决定。
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来源期刊
AIMS Genetics
AIMS Genetics GENETICS & HEREDITY-
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12 weeks
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