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酵母杂种的进化和生态潜力。

The evolutionary and ecological potential of yeast hybrids.

机构信息

Division of Population Genetics, Department of Zoology, Stockholm University, Svante Arrheniusväg 18 B, 106 91 Stockholm, Sweden.

MRC Human Genetics Unit, MRC Institute of Genetics and Cancer, University of Edinburgh, Crewe Road, Edinburgh, EH4 2XU Scotland, United Kingdom. Electronic address: https://twitter.com/@DevinBendixsen.

出版信息

Curr Opin Genet Dev. 2022 Oct;76:101958. doi: 10.1016/j.gde.2022.101958. Epub 2022 Jul 11.

Abstract

Recent findings in yeast genetics and genomics have advanced our understanding of the evolutionary potential unlocked by hybridization, especially in the genus Saccharomyces. We now have a clearer picture of the prevalence of yeast hybrids in the environment, their ecological and evolutionary history, and the genetic mechanisms driving (and constraining) their adaptation. Here, we describe how the instability of hybrid genomes determines fitness across large evolutionary scales, highlight new hybrid strain engineering techniques, and review tools for comparative hybrid genome analysis. The recent push to take yeast research back 'into the wild' has resulted in new genomic and ecological resources. These provide an arena for quantitative genetics and allow us to investigate the architecture of complex traits and mechanisms of adaptation to rapidly changing environments. The vast genetic diversity of hybrid populations can yield insights beyond those possible with isogenic lines. Hybrids offer a limitless supply of genetic variation that can be tapped for industrial strain improvement but also, combined with experimental evolution, can be used to predict population responses to future climate change - a fundamental task for biologists.

摘要

酵母遗传学和基因组学的最新发现增进了我们对杂交所释放的进化潜力的理解,尤其是在酿酒酵母属中。我们现在更清楚地了解了酵母杂种在环境中的普遍性、它们的生态和进化历史,以及驱动(和限制)它们适应的遗传机制。在这里,我们描述了杂种基因组的不稳定性如何决定了在大进化尺度上的适应性,强调了新的杂交菌株工程技术,并回顾了比较杂交基因组分析的工具。最近将酵母研究“带回到野外”的努力产生了新的基因组和生态资源。这些资源为定量遗传学提供了一个平台,使我们能够研究复杂性状的结构和对快速变化环境的适应机制。杂种群体的巨大遗传多样性可以提供超出同基因系可能的见解。杂种提供了无限的遗传变异,可以用于工业菌株的改良,但也可以与实验进化相结合,用于预测未来气候变化对种群的影响——这是生物学家的一项基本任务。

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