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有性生殖的演化:代价高昂的碎裂下的多细胞生活史

Evolution of multicellular life cycles under costly fragmentation.

机构信息

Max Planck Institute for Evolutionary Biology, August-Thienemann-Str. 2, 24306 Plön, Germany.

出版信息

PLoS Comput Biol. 2020 Nov 19;16(11):e1008406. doi: 10.1371/journal.pcbi.1008406. eCollection 2020 Nov.

Abstract

A fascinating wealth of life cycles is observed in biology, from unicellularity to the concerted fragmentation of multicellular units. However, the understanding of factors driving their evolution is still limited. We show that costs of fragmentation have a major impact on the evolution of life cycles due to their influence on the growth rates of the associated populations. We model a group structured population of undifferentiated cells, where cell clusters reproduce by fragmentation. Fragmentation events are associated with a cost expressed by either a fragmentation delay, an additional risk, or a cell loss. The introduction of such fragmentation costs vastly increases the set of possible life cycles. Based on these findings, we suggest that the evolution of life cycles involving splitting into multiple offspring can be directly associated with the fragmentation cost. Moreover, the impact of this cost alone is strong enough to drive the emergence of multicellular units that eventually split into many single cells, even under scenarios that strongly disfavour collectives compared to solitary individuals.

摘要

生物学中观察到了丰富多样的生命周期,从单细胞生物到多细胞单位的协同分裂。然而,对于驱动它们进化的因素的理解仍然有限。我们表明,由于分裂成本对相关种群增长率的影响,它们对生命周期的进化有重大影响。我们构建了一个无差异细胞的群体结构种群模型,其中细胞簇通过分裂进行繁殖。分裂事件与分裂延迟、额外风险或细胞损失等成本相关联。引入这种分裂成本极大地增加了可能的生命周期集合。基于这些发现,我们提出,涉及分裂成多个后代的生命周期进化可以直接与分裂成本相关联。此外,即使在强烈不利于群体而有利于单个个体的情况下,仅这种成本的影响就足以促使多细胞单位的出现,这些多细胞单位最终会分裂成许多单个细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6305/7714367/37da130b1c39/pcbi.1008406.g001.jpg

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