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An update on the diversity, ecology and biogeography of the Saccharomyces genus

机译:关于酿酒属属的多样性,生态和生物地理的最新情况

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Saccharomyces cerevisiae is the most extensively studied yeast and, over the last century, provided insights on the physiology, genetics, cellular biology and molecular mechanisms of eukaryotes. More recently, the increase in the discovery of wild strains, species and hybrids of the genus Saccharomyces has shifted the attention towards studies on genome evolution, ecology and biogeography, with the yeast becoming a model system for population genomic studies. The genus currently comprises eight species, some of clear industrial importance, while others are confined to natural environments, such as wild forests devoid from human domestication activities. To date, numerous studies showed that some Saccharomyces species form genetically diverged populations that are structured by geography, ecology or domestication activity and that the yeast species can also hybridize readily both in natural and domesticated environments. Much emphasis is now placed on the evolutionary process that drives phenotypic diversity between species, hybrids and populations to allow adaptation to different niches. Here, we provide an update of the biodiversity, ecology and population structure of the Saccharomyces species, and recapitulate the current knowledge on the natural history of Saccharomyces genus.
机译:Saccharomyces Cerevisiae是最广泛的研究酵母,而在上个世纪,为真核生物的生理学,遗传,细胞生物学和分子机制提供了见解。最近,糖酵母属的野生菌株,物种和杂种的发现增加了对基因组进化,生态和生物地理研究的研究改变了研究,酵母成为人口基因组研究的模型系统。该属目前包括八种物种,一些清晰的工业重要性,而其他人则被限制在自然环境中,例如缺乏人类驯化活动的野生森林。迄今为止,许多研究表明,一些酿酒酵母形式形成了由地理,生态学或驯化活动构成的遗传分歧群体,并且酵母物种也可以在天然和驯化环境中容易地杂交。现在,强调在进化过程中,驱动物种,杂种和群体之间的表型多样性,以允许适应不同的利基。在这里,我们提供了酿酒酵母物种的生物多样性,生态和人口结构的更新,并概括了目前关于酿酒酵母的自然病史的知识。

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