Department of Biology, University of Florence, Florence, Italy.
Department of Life Sciences and Systems Biology, University of Turin, Turin, Italy.
Curr Opin Genet Dev. 2022 Aug;75:101922. doi: 10.1016/j.gde.2022.101922. Epub 2022 Jun 9.
Improved and more accessible genome-sequencing approaches have allowed the analysis of large sets of natural yeast isolates. As a consequence, this unprecedented level of description of yeast-genome characteristics and variations in natural environments has provided crucial insights on yeast ecology and evolution. Here, we review some of the most relevant and intriguing aspects of yeast evolution pointed out, thanks to the combination of yeast ecology and genomics, and critically examine the resulting improvement of our knowledge on this field. Only integrated approaches, taking into consideration not only the characteristics of the microbe but also those of the hosting environment, will significantly move forward the exploration of yeast diversity, ecology, and evolution.
改良且更易获取的基因组测序方法使人们能够对大量天然酵母分离株进行分析。因此,这种对酵母基因组特征和自然环境中变异的空前水平的描述为酵母生态学和进化提供了关键的见解。在这里,我们综述了由于酵母生态学和基因组学的结合而凸显出的一些与酵母进化相关的最相关和有趣的方面,并批判性地检验了这对该领域知识的改进。只有综合的方法,不仅考虑微生物的特征,还要考虑宿主环境的特征,才能显著推动对酵母多样性、生态学和进化的探索。