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Ribosomal RNA gene diversity, effective population size, and evolutionary longevity in asexual Glomeromycota

机译:无性球菌的核糖体RNA基因多样性,有效种群规模和进化寿命

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Arbuscular mycorrhizal fungi (phylum Glomeromycota) are among the oldest and most successful symbionts of land plants. With no evidence of sexual reproduction, their evolutionary success is inconsistent with the prediction that asexual taxa are vulnerable to extinction due to accumulation of deleterious mutations. To explore why Glomeromycota defy this prediction, we studied ribosomal RNA (rRNA) gene evolution in the Claroideoglomus lineage and estimated effective population size, N_e, in C. etunicatum. We found that rRNA genes of these fungi exhibit unusual and complex patterns of molecular evolution. In C. etunicatum, these patterns can be collectively explained by an unexpectedly large N_e combined with imperfect genome-wide and population-level rRNA gene repeat homogenization. The mutations accumulated in rRNA gene sequences indicate that natural selection is effective at purging deleterious mutations in the Claroideoglomus lineage, which is also consistent with the large N_e of C. etunicatum. We propose that in the near absence of recombination, asexual reproduction involving massively multinucleate spores typical for Glomeromycota is responsible for the improved efficacy of selection relative to drift. We postulate that large effective population sizes contribute to the evolutionary longevity of Glomeromycota.
机译:丛枝菌根真菌(Glomeromycota)是陆地植物中最古老,最成功的共生体之一。没有证据表明有性繁殖,它们的进化成功与无性分类群由于有害突变的积累而容易灭绝的预测不一致。为了探索为什么Glomeromycota违反了这一预测,我们研究了Claroideoglomus谱系中的核糖体RNA(rRNA)基因进化以及估计的C. etunicatum中有效种群大小N_e。我们发现这些真菌的rRNA基因表现出异常和复杂的分子进化模式。在C. etunicatum中,这些模式可以用意想不到的大N_e与不完善的全基因组范围和群体水平的rRNA基因重复均一化共同解释。 rRNA基因序列中积累的突变表明,自然选择可有效清除Claroideoglomus谱系中的有害突变,这也与绒毛衣原体的大N_e相符。我们建议,在几乎没有重组的情况下,涉及典型的球菌的大量多核孢子的无性繁殖是相对于漂移提高选择效率的原因。我们推测,有效种群数量大有助于球菌的进化寿命。

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