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具有独立性别(雌雄异体)的酿酒酵母多倍体种群。

A polyploid population of Saccharomyces cerevisiae with separate sexes (dioecy).

机构信息

Génétique Moléculaire des levures, UMR5240, Université de Lyon, Université Lyon 1, Villeurbanne, France.

出版信息

FEMS Yeast Res. 2010 Sep;10(6):757-68. doi: 10.1111/j.1567-1364.2010.00660.x. Epub 2010 Jun 18.

Abstract

Saccharomyces cerevisiae has proved to be an interesting model for studies of evolution, with whole-genome duplication shown to have played an important role in the evolution of this species. This phenomenon depends on the formation of a transient stable polyploid state. Previous studies have reported polyploidy to be an unstable state in yeast, but here, we describe a polyploid population of S. cerevisiae. The evolution of higher eukaryotes has also involved the development of different systems of sexual reproduction, the choice between self-fertilization and out-crossing becoming a key issue. Saccharomyces cerevisiae is a hermaphrodite eukaryote, despite the theoretical genetic disadvantages of this strategy, in which self-fertilization occurs. We describe, for the first time, a near-dioecious (with separate sexes) population in this species. Mating type and the MAT locus display complex segregations. Essentially, each strain produces, by meiosis, spores of only one mating type: mata or matalpha. Moreover, strains are heterothallic, and diploid nonmating clones generated from a single spore do not sporulate. These three properties limit self-fertilization and strongly favour out-crossing. We suggest that the shift in sexual strategy, from hermaphroditism to dioecy, is specific to the brewing process, which overcomes the sexual isolation probably found in natural biotopes.

摘要

酿酒酵母已被证明是研究进化的一个有趣模型,全基因组复制被证明在该物种的进化中发挥了重要作用。这种现象取决于瞬时稳定的多倍体状态的形成。先前的研究报告称,酵母中的多倍体是一种不稳定的状态,但在这里,我们描述了酿酒酵母的多倍体群体。高等真核生物的进化也涉及到不同的有性生殖系统的发展,自交和异交的选择成为一个关键问题。酿酒酵母是一种雌雄同体的真核生物,尽管这种策略在理论上存在遗传劣势,但它确实会发生自交。我们首次描述了该物种中一种近雌雄异体(具有不同性别)的种群。交配型和 MAT 基因座显示出复杂的分离。本质上,每个菌株通过减数分裂产生的孢子只有一种交配型:mata 或 matalpha。此外,菌株是异配的,并且由单个孢子产生的二倍体非交配克隆不进行孢子形成。这三个特性限制了自交,强烈促进了异交。我们认为,从雌雄同体到雌雄异体的性策略的转变是特定于酿造过程的,酿造过程克服了可能在自然生境中发现的性隔离。

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