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用于奶酪制作的罗克福青霉菌株的生育力下降表明驯化过程中发生了退化。

Fertility depression among cheese-making Penicillium roqueforti strains suggests degeneration during domestication.

作者信息

Ropars Jeanne, Lo Ying-Chu, Dumas Emilie, Snirc Alodie, Begerow Dominik, Rollnik Tanja, Lacoste Sandrine, Dupont Joëlle, Giraud Tatiana, López-Villavicencio Manuela

机构信息

Origine, Structure, Evolution de la Biodiversité, UMR 7205 CNRS-MNHN, Muséum National d'Histoire Naturelle, CP39, 57 rue Cuvier, 75231, Paris Cedex 05, France.

Ecologie Systématique Evolution, Univ. Paris-Sud, CNRS, AgroParisTech, Université Paris-Saclay, F-91405, Orsay cedex, France.

出版信息

Evolution. 2016 Sep;70(9):2099-109. doi: 10.1111/evo.13015. Epub 2016 Aug 21.

Abstract

Genetic differentiation occurs when gene flow is prevented, due to reproductive barriers or asexuality. Investigating the early barriers to gene flow is important for understanding the process of speciation. Here, we therefore investigated reproductive isolation between different genetic clusters of the fungus Penicillium roqueforti, used for maturing blue cheeses, and also occurring as food spoiler or in silage. We investigated premating and postmating fertility between and within three genetic clusters (two from cheese and one from other substrates), and we observed sexual structures under scanning electron microscopy. All intercluster types of crosses showed some fertility, suggesting that no intersterility has evolved between domesticated and wild populations despite adaptation to different environments and lack of gene flow. However, much lower fertility was found in crosses within the cheese clusters than within the noncheese cluster, suggesting reduced fertility of cheese strains, which may constitute a barrier to gene flow. Such degeneration may be due to bottlenecks during domestication and/or to the exclusive clonal replication of the strains in industry. This study shows that degeneration has occurred rapidly and independently in two lineages of a domesticated species. Altogether, these results inform on the processes and tempo of degeneration and speciation.

摘要

当由于生殖障碍或无性繁殖导致基因流动受阻时,就会发生遗传分化。研究基因流动的早期障碍对于理解物种形成过程很重要。因此,在这里我们研究了用于蓝纹奶酪成熟、也作为食品腐败菌或存在于青贮饲料中的罗克福特青霉不同遗传簇之间的生殖隔离。我们研究了三个遗传簇(两个来自奶酪,一个来自其他基质)之间以及内部的交配前和交配后育性,并在扫描电子显微镜下观察了有性结构。所有簇间杂交类型都显示出一定的育性,这表明尽管适应了不同环境且缺乏基因流动,但驯化种群和野生种群之间尚未进化出不育现象。然而,奶酪簇内杂交的育性远低于非奶酪簇内杂交的育性,这表明奶酪菌株的育性降低,这可能构成基因流动的障碍。这种退化可能是由于驯化过程中的瓶颈效应和/或工业中菌株的排他性克隆复制。这项研究表明,退化在一个驯化物种的两个谱系中迅速且独立地发生。总之,这些结果为退化和物种形成的过程及速度提供了信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9122/5129480/d9c8e26a9190/EVO-70-2099-g001.jpg

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