Zeyl C
Department of Biology, Wake Forest University, Winston-Salem, NC 27109, USA.
Yeast. 2000 Jun 15;16(8):773-84. doi: 10.1002/1097-0061(20000615)16:8<773::AID-YEA599>3.0.CO;2-1.
Population genetics is a highly theoretical field in which many models and theories of broad significance have received little experimental testing. Microbes are well-suited for empirical population genetics since populations of almost any size may be studied genetically, and because many have easily controlled life cycles. Saccharomyces cerevisiae is almost ideal for such studies as the growing body of knowledge and techniques that have made it the best characterized eukaryote genome also allow the experimental manipulation and analysis of its population genetics. In experiments to date, the evolution of laboratory yeast populations has been observed for up to 1000 generations. In several cases, adaptation has occurred by gene duplications. The interaction between mutation, selection and genetic drift at varying population sizes is a major area of theoretical study in which yeast experiments can provide particularly valuable data. Conflicts between gene-level and among-cell selection, and co-evolution between genes within a genome, are additional topics in which a population genetics perspective may be particularly helpful. The growing field of genomics is increasingly complementary with that of population genetics. The characterization of the yeast genome presents unprecedented opportunities for the detailed study of evolutionary and population genetics. Conversely, the redundancy of the yeast genome means that, for many open reading frames, deletion has only a quantitative effect that is most readily observed in competitions with a wild-type strain.
群体遗传学是一个高度理论化的领域,其中许多具有广泛意义的模型和理论很少得到实验验证。微生物非常适合用于实证群体遗传学研究,因为几乎任何规模的群体都可以进行遗传学研究,而且许多微生物具有易于控制的生命周期。酿酒酵母几乎是此类研究的理想对象,因为不断积累的知识和技术使其成为特征描述最完善的真核生物基因组,这也使得对其群体遗传学进行实验操作和分析成为可能。在迄今为止的实验中,已观察到实验室酵母群体进化了多达1000代。在一些情况下,适应是通过基因复制发生的。在不同群体规模下突变、选择和遗传漂变之间的相互作用是理论研究的一个主要领域,酵母实验可以在其中提供特别有价值的数据。基因水平选择与细胞间选择之间的冲突,以及基因组内基因之间的共同进化,是群体遗传学观点可能特别有帮助的其他主题。不断发展的基因组学领域与群体遗传学领域越来越互补。酵母基因组的特征描述为详细研究进化遗传学和群体遗传学提供了前所未有的机会。相反,酵母基因组的冗余意味着,对于许多开放阅读框来说,缺失只产生定量影响,这在与野生型菌株的竞争中最容易观察到。