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历史和偶然因素影响数字生物群落大规模灭绝期间失去的复杂特征的重新进化。

Historical and contingent factors affect re-evolution of a complex feature lost during mass extinction in communities of digital organisms.

作者信息

Yedid G, Ofria C A, Lenski R E

机构信息

Ecology, Evolutionary Biology, and Behaviour Program, Michigan State University, East Lansing, MI, USA.

出版信息

J Evol Biol. 2008 Sep;21(5):1335-57. doi: 10.1111/j.1420-9101.2008.01564.x. Epub 2008 Jun 28.

Abstract

Re-evolution of complex biological features following the extinction of taxa bearing them remains one of evolution's most interesting phenomena, but is not amenable to study in fossil taxa. We used communities of digital organisms (computer programs that self-replicate, mutate and evolve), subjected to periods of low resource availability, to study the evolution, loss and re-evolution of a complex computational trait, the function EQU (bit-wise logical equals). We focused our analysis on cases where the pre-extinction EQU clade had surviving descendents at the end of the extinction episode. To see if these clades retained the capacity to re-evolve EQU, we seeded one set of multiple subreplicate 'replay' populations using the most abundant survivor of the pre-extinction EQU clade, and another set with the actual end-extinction ancestor of the organism in which EQU re-evolved following the extinction episode. Our results demonstrate that stochastic, historical, genomic and ecological factors can lead to constraints on further adaptation, and facilitate or hinder re-evolution of a complex feature.

摘要

具有复杂生物特征的类群灭绝后,这些特征的重新演化仍是进化过程中最有趣的现象之一,但并不适合在化石类群中进行研究。我们利用数字生物群落(能够自我复制、变异和进化的计算机程序),使其经历资源可用性较低的时期,来研究一种复杂计算特征——函数EQU(按位逻辑等于)的进化、丧失和重新演化。我们将分析重点放在灭绝前EQU进化枝在灭绝事件结束时有存活后代的情况。为了观察这些进化枝是否保留了重新演化出EQU的能力,我们用灭绝前EQU进化枝中数量最多的幸存者为一组多个子重复“重放”种群接种,并用灭绝事件后EQU重新演化的生物体的实际灭绝末期祖先为另一组接种。我们的结果表明,随机、历史、基因组和生态因素会导致对进一步适应的限制,并促进或阻碍复杂特征的重新演化。

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