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Diversity Generator Mechanisms Are Essential Components of Biological Systems: The Two Queen Hypothesis

机译:多样性生成器机制是生物系统的基本组成部分:两个女王假说

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摘要

Diversity is widely known to fuel adaptation and evolutionary processes and increase robustness at the population, species and ecosystem levels. The Neo-Darwinian paradigm proposes that the diversity of biological entities is the consequence of genetic changes arising spontaneously and randomly, without regard for their usefulness. However, a growing body of evidence demonstrates that the evolutionary process has shaped mechanisms, such as horizontal gene transfer mechanisms, meiosis and the adaptive immune system, which has resulted in the regulated generation of diversity among populations. Though their origins are unrelated, these diversity generator (DG) mechanisms share common functional properties. They (i) contribute to the great unpredictability of the composition and/or behavior of biological systems, (ii) favor robustness and collectivism among populations and (iii) operate mainly by manipulating the systems that control the interaction of living beings with their environment. The definition proposed here for DGs is based on these properties and can be used to identify them according to function. Interestingly, prokaryotic DGs appear to be mainly reactive, as they generate diversity in response to environmental stress. They are involved in the widely described Red Queen/arms race/Cairnsian dynamic. The emergence of multicellular organisms harboring K selection traits (longer reproductive life cycle and smaller population size) has led to the acquisition of a new class of DGs that act anticipatively to stress pressures and generate a distinct dynamic called the “White Queen” here. The existence of DGs leads to the view of evolution as a more “intelligent” and Lamarckian-like process. Their repeated selection during evolution could be a neglected example of convergent evolution and suggests that some parts of the evolutionary process are tightly constrained by ecological factors, such as the population size, the generation time and the intensity of selective pressure. The ubiquity of DGs also suggests that regulated auto-generation of diversity is a fundamental property of life.
机译:众所周知,多样性可以促进适应和进化过程,并提高种群,物种和生态系统水平的稳健性。新达尔文主义范式提出,生物实体的多样性是遗传变化的结果,这种遗传变化是自发和随机发生的,而不考虑其有用性。但是,越来越多的证据表明,进化过程已经形成了各种机制,例如水平基因转移机制,减数分裂和适应性免疫系统,从而导致了种群间多样性的调控。尽管它们的起源无关紧要,但这些多样性生成器(DG)机制具有共同的功能特性。它们(i)造成了生物系统组成和/或行为的极大不可预测性;(ii)促进了人口之间的健壮性和集体主义;(iii)主要通过操纵控制生物与环境相互作用的系统来运作。此处为DG提出的定义基于这些属性,可用于根据功能对其进行识别。有趣的是,原核生物DGs主要是反应性的,因为它们响应环境压力而产生多样性。他们参与了被广泛描述的红皇后/军备竞赛/凯恩斯动态。具有K选择特征(更长的生殖生命周期和较小的种群规模)的多细胞生物的出现导致获得了新的DG类,它们在预期压力下起作用并产生独特的动态,称为“白皇后”。 DG的存在将进化视为更“智能”且类似Lamarckian的过程。它们在进化过程中的反复选择可能是趋同进化的一个被忽略的例子,这表明进化过程的某些部分受到生态因素的严格限制,例如种群数量,产生时间和选择压力的强度。 DG的普遍存在还表明,受监管的多样性自动产生是生命的基本属性。

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