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生命周期和生殖特征的演化:来自褐藻的启示。

Evolution of life cycles and reproductive traits: Insights from the brown algae.

机构信息

CNRS, Algal Genetics Group, Integrative Biology of Marine Models, Station Biologique de Roscoff, Sorbonne Université, UPMC Univ Paris 06, Roscoff, France.

Applied Ecology & Phycology, Institute for Biosciences, University of Rostock, Rostock, Germany.

出版信息

J Evol Biol. 2021 Jul;34(7):992-1009. doi: 10.1111/jeb.13880. Epub 2021 Jun 23.

Abstract

A vast diversity of types of life cycles exists in nature, and several theories have been advanced to explain how this diversity has evolved and how each type of life cycle is retained over evolutionary time. Here, we exploited the diversity of life cycles and reproductive traits of the brown algae (Phaeophyceae) to test several hypotheses on the evolution of life cycles. We investigated the evolutionary dynamics of four life-history traits: life cycle, sexual system, level of gamete dimorphism and gamete parthenogenetic capacity. We assigned states to up to 77 representative species of the taxonomic diversity of the brown algal group, in a multi-gene phylogeny. We used maximum likelihood and Bayesian analyses of correlated evolution, while taking the phylogeny into account, to test for correlations between traits and to investigate the chronological sequence of trait acquisition. Our analyses are consistent with the prediction that diploid growth evolves when sexual reproduction is preferred over asexual reproduction, possibly because it allows the complementation of deleterious mutations. We also found that haploid sex determination is ancestral in relation to diploid sex determination. However, our results could not address whether increased zygotic and diploid growth are associated with increased sexual dimorphism. Our analyses suggest that in the brown algae, isogamous species evolved from anisogamous ancestors, contrary to the commonly reported pattern where evolution proceeds from isogamy to anisogamy.

摘要

自然界中存在着多种多样的生命周期类型,有几种理论已经被提出来解释这种多样性是如何进化的,以及每种生命周期类型是如何在进化过程中保留下来的。在这里,我们利用褐藻(Phaeophyceae)的生命周期和生殖特征的多样性,来检验几种关于生命周期进化的假说。我们研究了四个生活史特征的进化动态:生命周期、有性系统、配子二型性的水平和配子孤雌生殖能力。我们在一个多基因系统发育中,将状态分配给多达 77 种具有代表性的褐藻分类多样性的物种。我们使用最大似然法和贝叶斯分析来分析相关进化,同时考虑到系统发育,以检验特征之间的相关性,并研究特征获得的时间顺序。我们的分析结果与以下预测一致:当有性繁殖优于无性繁殖时,二倍体生长会进化,这可能是因为它允许有害突变的互补。我们还发现,单倍体性别决定相对于二倍体性别决定是原始的。然而,我们的结果无法确定合子和二倍体生长的增加是否与性二型性的增加有关。我们的分析表明,在褐藻中,同配物种是从异配祖先进化而来的,这与通常报道的从同配到异配进化的模式相反。

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