Laboratorio de Investigación en Ciencias Médico-Biológicas, Facultad de Medicina, Universidad Veracruzana, Médicos y Odontólogos s/n, Col. Unidad del Bosque, Xalapa 91010, Mexico.
Departamento de Toxicología, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, Ciudad de México 07360, Mexico.
Int J Mol Sci. 2024 Jul 19;25(14):7927. doi: 10.3390/ijms25147927.
In light of the post-genomic era, epigenetics brings about an opportunity to better understand how the molecular machinery works and is led by a complex dynamic set of mechanisms, often intricate and complementary in many aspects. In particular, epigenetics links developmental biology and genetics, as well as many other areas of knowledge. The present work highlights substantial scopes and relevant discoveries related to the development of the term from its first notions. To our understanding, the concept of epigenetics needs to be revisited, as it is one of the most relevant and multifaceted terms in human knowledge. To redirect future novel experimental or theoretical efforts, it is crucial to compile all significant issues that could impact human and ecological benefit in the most precise and accurate manner. In this paper, the reader can find one of the widest compilations of the landmarks and epistemic considerations of the knowledge of epigenetics across the history of biology from the earliest epigenetic formulation to genetic determinism until the present. In the present work, we link the current body of knowledge and earlier pre-genomic concepts in order to propose a new definition of epigenetics that is faithful to its regulatory nature.
在基因组后时代,表观遗传学带来了更好地了解分子机制如何运作的机会,它由一套复杂的动态机制主导,这些机制在许多方面往往错综复杂且互为补充。特别是,表观遗传学将发育生物学和遗传学以及许多其他知识领域联系起来。本工作重点介绍了与该术语从最初概念发展相关的大量范围和相关发现。据我们了解,需要重新审视表观遗传学的概念,因为它是人类知识中最相关和最具多面性的术语之一。为了引导未来新的实验或理论工作,至关重要的是以最精确和准确的方式汇编所有可能对人类和生态效益产生影响的重要问题。在本文中,读者可以找到从最早的表观遗传表述到遗传决定论再到现在的生物学史上,对表观遗传学知识的里程碑和认识论思考的最广泛汇编之一。在本工作中,我们将当前的知识体系与早期的前基因组概念联系起来,以便提出一个忠实于其调控本质的新的表观遗传学定义。