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酵母中共享多态性的古老和近期起源。

Ancient and recent origins of shared polymorphisms in yeast.

机构信息

CNRS, INSERM, IRCAN, Côte d'Azur University, Nice, France.

Kurchatov Complex for Genetic Research (GosNIIgenetika), National Research Center 'Kurchatov Institute', Moscow, Russia.

出版信息

Nat Ecol Evol. 2024 Apr;8(4):761-776. doi: 10.1038/s41559-024-02352-5. Epub 2024 Mar 12.

Abstract

Shared genetic polymorphisms between populations and species can be ascribed to ancestral variation or to more recent gene flow. Here, we mapped shared polymorphisms in Saccharomyces cerevisiae and its sister species Saccharomyces paradoxus, which diverged 4-6 million years ago. We used a dense map of single-nucleotide diagnostic markers (mean distance 15.6 base pairs) in 1,673 sequenced S. cerevisiae isolates to catalogue 3,852 sequence blocks (≥5 consecutive markers) introgressed from S. paradoxus, with most being recent and clade-specific. The highly diverged wild Chinese S. cerevisiae lineages were depleted of introgressed blocks but retained an excess of individual ancestral polymorphisms derived from incomplete lineage sorting, perhaps due to less dramatic population bottlenecks. In the non-Chinese S. cerevisiae lineages, we inferred major hybridization events and detected cases of overlapping introgressed blocks across distinct clades due to either shared histories or convergent evolution. We experimentally engineered, in otherwise isogenic backgrounds, the introgressed PAD1-FDC1 gene pair that independently arose in two S. cerevisiae clades and revealed that it increases resistance against diverse antifungal drugs. Overall, our study retraces the histories of divergence and secondary contacts across S. cerevisiae and S. paradoxus populations and unveils a functional outcome.

摘要

种群和物种之间共享的遗传多态性可以归因于祖先变异或更近的基因流。在这里,我们绘制了酿酒酵母及其姐妹种酿酒酵母的共享多态性,这两个物种在 4-600 万年前分化。我们使用了在 1673 个测序的酿酒酵母分离株中密集的单核苷酸诊断标记(平均距离 15.6 个碱基对)图谱,对来自酿酒酵母的 3852 个序列块(≥5 个连续标记)进行了编目,其中大多数是近期的和特定分支的。高度分化的野生中国酿酒酵母谱系中缺乏杂交的序列块,但保留了大量来自不完全谱系分选的个体祖先多态性,这可能是由于种群瓶颈较小。在非中国酿酒酵母谱系中,我们推断出主要的杂交事件,并检测到由于共同历史或趋同进化而在不同分支之间存在重叠的杂交序列块的情况。我们在其他方面同质的背景下实验性地构建了独立出现在两个酿酒酵母分支中的杂交 PAD1-FDC1 基因对,并发现它增加了对多种抗真菌药物的抗性。总的来说,我们的研究追溯了酿酒酵母和酿酒酵母种群的分化和二次接触的历史,并揭示了一个功能结果。

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