Skelly Daniel A, Magwene Paul M
Brief Funct Genomics. 2016 Mar;15(2):138-46. doi: 10.1093/bfgp/elv044. Epub 2015 Oct 14.
Advances in high-throughput sequencing have facilitated large-scale surveys of genomic variation in the budding yeast,Saccharomyces cerevisiae These surveys have revealed extensive sequence variation between yeast strains. However, much less is known about how such variation influences the amount and nature of variation for functional genomic traits within and between yeast lineages. We review population-level studies of functional genomic variation, with a particular focus on how population functional genomic approaches can provide insights into both genome function and the evolutionary process. Although variation in functional genomics phenotypes is pervasive, our understanding of the consequences of this variation, either in physiological or evolutionary terms, is still rudimentary and thus motivates increased attention to appropriate null models. To date, much of the focus of population functional genomic studies has been on gene expression variation, but other functional genomic data types are just as likely to reveal important insights at the population level, suggesting a pressing need for more studies that go beyond transcription. Finally, we discuss how a population functional genomic perspective can be a powerful approach for developing a mechanistic understanding of the processes that link genomic variation to organismal phenotypes through gene networks.
高通量测序技术的进步推动了对芽殖酵母酿酒酵母基因组变异的大规模调查。这些调查揭示了酵母菌株之间广泛的序列变异。然而,对于这种变异如何影响酵母谱系内部和之间功能基因组特征变异的数量和性质,我们了解得还很少。我们回顾了功能基因组变异的群体水平研究,特别关注群体功能基因组方法如何能够洞察基因组功能和进化过程。尽管功能基因组表型的变异普遍存在,但我们从生理或进化角度对这种变异后果的理解仍然很初步,因此需要更多地关注合适的零模型。到目前为止,群体功能基因组研究的大部分重点都放在了基因表达变异上,但其他功能基因组数据类型同样有可能在群体水平上揭示重要见解,这表明迫切需要开展更多超越转录的研究。最后,我们讨论了群体功能基因组视角如何能够成为一种强大的方法,用于深入理解通过基因网络将基因组变异与生物体表型联系起来的过程。