The Institute for Society and Genetics, University of California, Los Angeles, California, USA.
Molecular Biology Institute, University of Los Angeles, Los Angeles, California, USA.
J Exp Zool A Ecol Integr Physiol. 2022 Jan;337(1):70-74. doi: 10.1002/jez.2465. Epub 2021 Apr 26.
The emergence of the field of transgenerational epigenetics inheritance (TEI) has profoundly reshaped our understanding of the relationships between environment, soma, and germ cells as well as of heredity. TEI refers to the changes in chromatin state, gene expression, and/or phenotypes that are transmitted across several generations without involving changes to the DNA sequences. TEI has direct connections with, and feeds from, the fields of molecular biology, genetics, developmental biology, and reproductive biology, among others. However, the expansion of TEI-related research, has profoundly reshaped boundaries within each field and often led to the erosion of theories and concepts considered as tenets of biology. We first explore how the molecularization of biology has shifted the definition of epigenetics to include the notion of heredity and how epigenetics has refined our understanding of the central dogma of biology. The demonstrated transfer of environmental information from soma to germ cell through extracellular vesicles and subsequent alteration of health outcomes in offspring has put a definite end to the long-held principle of the Weismann barrier. TEI has also simultaneously led to the revival of the inheritance of acquired characteristics while further eroding the concept of an epigenetic "blank slate" in mammals. Using an historical framework, and via the exploration of central studies in the field, in this perspective article, we will draw a compelling argument for the revolutionary aspect of TEI in biology.
跨代表观遗传学遗传(TEI)领域的出现深刻地改变了我们对环境、体细胞和生殖细胞之间关系以及遗传的理解。TEI 是指在不涉及 DNA 序列改变的情况下,跨越几代传递的染色质状态、基因表达和/或表型的变化。TEI 与分子生物学、遗传学、发育生物学和生殖生物学等领域直接相关,并从中汲取营养。然而,TEI 相关研究的扩展深刻地改变了每个领域的边界,并经常导致被认为是生物学基石的理论和概念的侵蚀。我们首先探讨了生物学的分子化如何将表观遗传学的定义扩展到包括遗传的概念,以及表观遗传学如何深化我们对生物学中心法则的理解。已经证明,通过细胞外囊泡将环境信息从体细胞传递到生殖细胞,并随后改变后代的健康结果,彻底结束了魏斯曼屏障的长期原则。TEI 同时也导致了获得性特征的遗传的复兴,同时进一步侵蚀了哺乳动物中表观遗传“白板”的概念。在本文中,我们将使用历史框架并通过探索该领域的核心研究,有力地论证 TEI 在生物学中的革命性方面。