Center for Reproductive Biology, School of Biological Sciences, Washington State University, Pullman, WA, USA.
Epigenetics. 2024 Dec;19(1):2380929. doi: 10.1080/15592294.2024.2380929. Epub 2024 Aug 5.
The epigenome and epigenetic inheritance were not included in the original modern synthesis theory or more recent extended evolutionary synthesis of evolution. In a broad range of species, the environment has been shown to play a significant role in natural selection, which more recently has been shown to occur through epigenetic alterations and epigenetic inheritance. However, even with this evidence, the field of epigenetics and epigenetic inheritance has been left out of modern evolutionary synthesis, as well as other current evolutionary models. Epigenetic mechanisms can direct the regulation of genetic processes (e.g. gene expression) and also can be directly changed by the environment. In contrast, DNA sequence cannot be directly altered by the environment. The goal of this review is to present the evidence of how epigenetics and epigenetic inheritance can alter phenotypic variation in numerous species. This can occur at a significantly higher frequency than genetic change, so correlates with the frequency of evolutionary change. In addition, the concept and importance of generational stability of transgenerational inheritance is incorporated into evolutionary theory. For there to be a better understanding of evolutionary biology, we must incorporate all aspects of molecular (e.g. genetics and epigenetics) and biological sciences (e.g. environment and adaptation).
表观基因组和表观遗传在原始现代综合理论或最近的进化扩展综合进化理论中没有被包括在内。在广泛的物种中,环境已被证明在自然选择中发挥重要作用,而最近的研究表明,这种作用是通过表观遗传改变和表观遗传传递来实现的。然而,即使有了这些证据,表观遗传学和表观遗传传递领域仍然被排除在现代进化综合理论以及其他当前的进化模型之外。表观遗传机制可以指导遗传过程的调控(例如基因表达),并且可以直接被环境改变。相比之下,DNA 序列不能直接被环境改变。本综述的目的是提出证据,说明表观遗传学和表观遗传传递如何在众多物种中改变表型变异。这种变化发生的频率可能远高于遗传变化,因此与进化变化的频率相关。此外,世代间遗传的代际稳定性概念和重要性被纳入进化理论。为了更好地理解进化生物学,我们必须将分子(例如遗传学和表观遗传学)和生物科学(例如环境和适应)的各个方面都纳入其中。