Molecular Cell Biology and Microbiology, School of Mathematics and Natural Sciences, University of Wuppertal, Wuppertal, Germany.
Centre for Water and Environmental Research (ZWU), University of Duisburg-Essen, Essen, Germany.
J Eukaryot Microbiol. 2022 Sep;69(5):e12914. doi: 10.1111/jeu.12914. Epub 2022 May 4.
The term epigenetics is used for any layer of genetic information aside from the DNA base-sequence information. Mammalian epigenetic research increased our understanding of chromatin dynamics in terms of cytosine methylation and histone modification during differentiation, aging, and disease. Instead, ciliate epigenetics focused more on small RNA-mediated effects. On the one hand, these do concern the transport of RNA from parental to daughter nuclei, representing a regulated transfer of epigenetic information across generations. On the other hand, studies of Paramecium, Tetrahymena, Oxytricha, and Stylonychia revealed an almost unique function of transgenerational RNA. Rather than solely controlling chromatin dynamics, they control sexual progeny's DNA content quantitatively and qualitatively. Thus epigenetics seems to control genetics, at least genetics of the vegetative macronucleus. This combination offers ciliates, in particular, an epigenetically controlled genetic variability. This review summarizes the epigenetic mechanisms that contribute to macronuclear heterogeneity and relates these to nuclear dimorphism. This system's adaptive and evolutionary possibilities raise the critical question of whether such a system is limited to unicellular organisms or binuclear cells. We discuss here the relevance of ciliate genetics and epigenetics to multicellular organisms.
表观遗传学是指除 DNA 碱基序列信息之外的任何遗传信息层。哺乳动物表观遗传学研究增加了我们对染色质动力学的理解,包括分化、衰老和疾病过程中胞嘧啶甲基化和组蛋白修饰。相反,纤毛虫表观遗传学更侧重于小 RNA 介导的效应。一方面,这些效应涉及 RNA 从亲代核到子细胞核的运输,代表了跨代传递表观遗传信息的调控过程。另一方面,对草履虫、四膜虫、豪氏等纤毛虫的研究揭示了跨代 RNA 的几乎独特的功能。它不仅控制着染色质动力学,还定量和定性地控制着有性后代的 DNA 含量。因此,表观遗传学似乎控制着遗传学,至少是营养体大核的遗传学。这种组合为纤毛虫,特别是提供了一种受表观遗传控制的遗传变异性。本综述总结了导致大核异质性的表观遗传机制,并将其与核二态性联系起来。这个系统的适应性和进化可能性提出了一个关键问题,即这种系统是否仅限于单细胞生物或双核细胞。我们在这里讨论纤毛虫遗传学和表观遗传学与多细胞生物的相关性。