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分裂模式与生命周期的演变

Fragmentation modes and the evolution of life cycles.

作者信息

Pichugin Yuriy, Peña Jorge, Rainey Paul B, Traulsen Arne

机构信息

Max Planck Institute for Evolutionary Biology, Plön, Germany.

GEOMAR Helmholtz Centre for Ocean Research Kiel, Evolutionary Ecology of Marine Fishes, Kiel, Germany.

出版信息

PLoS Comput Biol. 2017 Nov 22;13(11):e1005860. doi: 10.1371/journal.pcbi.1005860. eCollection 2017 Nov.

Abstract

Reproduction is a defining feature of living systems. To reproduce, aggregates of biological units (e.g., multicellular organisms or colonial bacteria) must fragment into smaller parts. Fragmentation modes in nature range from binary fission in bacteria to collective-level fragmentation and the production of unicellular propagules in multicellular organisms. Despite this apparent ubiquity, the adaptive significance of fragmentation modes has received little attention. Here, we develop a model in which groups arise from the division of single cells that do not separate but stay together until the moment of group fragmentation. We allow for all possible fragmentation patterns and calculate the population growth rate of each associated life cycle. Fragmentation modes that maximise growth rate comprise a restrictive set of patterns that include production of unicellular propagules and division into two similar size groups. Life cycles marked by single-cell bottlenecks maximise population growth rate under a wide range of conditions. This surprising result offers a new evolutionary explanation for the widespread occurrence of this mode of reproduction. All in all, our model provides a framework for exploring the adaptive significance of fragmentation modes and their associated life cycles.

摘要

繁殖是生命系统的一个决定性特征。为了繁殖,生物单元的集合体(例如多细胞生物或群体细菌)必须分裂成更小的部分。自然界中的分裂模式从细菌的二分裂到集体层面的分裂以及多细胞生物中单细胞繁殖体的产生。尽管这种现象明显普遍存在,但分裂模式的适应性意义却很少受到关注。在这里,我们构建了一个模型,其中群体由单个细胞的分裂产生,这些细胞不分离而是聚集在一起,直到群体分裂的那一刻。我们考虑了所有可能的分裂模式,并计算了每个相关生命周期的种群增长率。使增长率最大化的分裂模式包含一组受限的模式,包括单细胞繁殖体的产生以及分裂成两个大小相似的群体。在广泛的条件下,以单细胞瓶颈为特征的生命周期使种群增长率最大化。这一惊人结果为这种繁殖模式的广泛出现提供了一种新的进化解释。总而言之,我们的模型为探索分裂模式及其相关生命周期的适应性意义提供了一个框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f0c/5718564/0f0130f13c5a/pcbi.1005860.g001.jpg

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