非遗传信息在进化框架中的作用。

IF 6.2 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Katherine L Moran, Yelyzaveta Shlyakhtina, Maximiliano M Portal
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引用次数: 4

摘要

几百年来,生物的进化一直是一个备受争议的话题,尽管在这一领域取得了重大进展,但进化过程的精确机制仍然是支离破碎的。引人注目的是,在生物学的许多领域中接受的大多数核心原则只将遗传信息视为主要的——如果不是唯一的——生物信息载体,因此将其视为主要的进化化身。然而,真实的情况似乎比最初预期的要复杂得多,因为令人信服的数据表明,当探索高度动态的进化框架时,非遗传信息就会增加。根据最近的证据,我们在此讨论了非遗传信息载体的动态性和复杂性,以及它们在进化过程中的新兴相关性。我们认为,有可能克服对这些载体不予考虑的历史论点,而是认为它们确实是生命本身的核心,因为它们支持在不断变化的环境中快速适应的可持续、连续的来源。最后,我们将解决复杂的遗传和非遗传网络的进化模型,以建立一个框架,其中两个核心的生物信息概念被认为是不可忽视的,同样基本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of non-genetic information in evolutionary frameworks.

The evolution of organisms has been a subject of paramount debate for hundreds of years and though major advances in the field have been made, the precise mechanisms underlying evolutionary processes remain fragmentary. Strikingly, the majority of the core principles accepted across the many fields of biology only consider genetic information as the major - if not exclusive - biological information carrier and thus consider it as the main evolutionary avatar. However, the real picture appears far more complex than originally anticipated, as compelling data suggest that nongenetic information steps up when highly dynamic evolutionary frameworks are explored. In light of recent evidence, we discuss herein the dynamic nature and complexity of nongenetic information carriers, and their emerging relevance in the evolutionary process. We argue that it is possible to overcome the historical arguments which dismissed these carriers, and instead consider that they are indeed core to life itself as they support a sustainable, continuous source of rapid adaptation in ever-changing environments. Ultimately, we will address the intricacies of genetic and non-genetic networks underlying evolutionary models to build a framework where both core biological information concepts are considered non-negligible and equally fundamental.

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来源期刊
CiteScore
14.90
自引率
0.00%
发文量
6
期刊介绍: As the discipline of biochemistry and molecular biology have greatly advanced in the last quarter century, significant contributions have been made towards the advancement of general medicine, genetics, immunology, developmental biology, and biophysics. Investigators in a wide range of disciplines increasingly require an appreciation of the significance of current biochemical and molecular biology advances while, members of the biochemical and molecular biology community itself seek concise information on advances in areas remote from their own specialties. Critical Reviews in Biochemistry and Molecular Biology believes that well-written review articles prove an effective device for the integration and meaningful comprehension of vast, often contradictory, literature. Review articles also provide an opportunity for creative scholarship by synthesizing known facts, fruitful hypotheses, and new concepts. Accordingly, Critical Reviews in Biochemistry and Molecular Biology publishes high-quality reviews that organize, evaluate, and present the current status of high-impact, current issues in the area of biochemistry and molecular biology. Topics are selected on the advice of an advisory board of outstanding scientists, who also suggest authors of special competence. The topics chosen are sufficiently broad to interest a wide audience of readers, yet focused enough to be within the competence of a single author. Authors are chosen based on their activity in the field and their proven ability to produce a well-written publication.
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