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The natural selection of metabolism and mass selects lifeforms from viruses to multicellular animals

机译:代谢和物质的自然选择从病毒到多细胞动物都选择了生命形式

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摘要

I show that the natural selection of metabolism and mass can select for the major life‐history and allometric transitions that define lifeforms from viruses, over prokaryotes and larger unicells, to multicellular animals. The proposed selection is driven by a mass‐specific metabolism that is selected as the pace of the resource handling that generates net energy for self‐replication. An initial selection of mass is given by a dependence of mass‐specific metabolism on mass in replicators that are close to a lower size limit. A sublinear maximum dependence selects for virus‐like replicators, with no intrinsic metabolism, no cell, and practically no mass. A superlinear dependence selects for prokaryote‐like self‐replicating cells, with asexual reproduction and incomplete metabolic pathways. These self‐replicators have selection for increased net energy, and this generates a gradual unfolding of population‐dynamic feed‐back selection from interactive competition. The incomplete feed‐back selects for larger unicells with more developed metabolic pathways, and the completely developed feed‐back for multicellular animals with sexual reproduction. This model unifies the natural selection of lifeforms from viruses to multicellular animals, and it provides a parsimonious explanation where allometries and major life histories evolve from the natural selection of metabolism and mass.
机译:我证明了自然和新陈代谢的选择可以选择主要的生命史和异速变迁,这些转变定义了从病毒,原核生物和较大的单细胞到多细胞动物的生命形式。拟议的选择由特定于质量的新陈代谢驱动,新陈代谢被选为产生自我复制净能量的资源处理速度。质量的初始选择是通过质量特异性代谢对复制子质量的依赖来实现的,复制子的质量接近下限。亚线性最大依赖性选择的是病毒样复制子,没有内在代谢,没有细胞,几乎没有质量。超线性依赖性选择具有无性繁殖和不完整代谢途径的原核生物样自我复制细胞。这些自我复制者可以选择增加净能量的方式,这可以从互动竞争中逐步展现出种群动态反馈选择。不完整的反馈选择具有更发达代谢途径的较大的单细胞,而完全发育的反馈则用于有性生殖的多细胞动物。该模型统一了从病毒到多细胞动物的自然生命形式的自然选择,并提供了简约的解释,其中同种异体症和主要生命史是从自然选择新陈代谢和代谢进化而来的。

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