Budding yeasts (subphylum Saccharomycotina) are found in every biome and are as genetically diverse as plants or animals. To understand budding yeast evolution, we analyzed the genomes of 332 yeast species, including 220 newly sequenced ones, which represent nearly one-third of all known budding yeast diversity. Here, we establish a robust genus-level phylogeny comprising 12 major clades, infer the timescale of diversification from the Devonian period to the present, quantify horizontal gene transfer (HGT), and reconstruct the evolution of 45 metabolic traits and the metabolic toolkit of the budding yeast common ancestor (BYCA). We infer that BYCA was metabolically complex and chronicle the tempo and mode of genomic and phenotypic evolution across the subphylum, which is characterized by very low HGT levels and widespread losses of traits and the genes that control them. More generally, our results argue that reductive evolution is a major mode of evolutionary diversification.
Tempo and Mode of Genome Evolution in the Budding Yeast Subphylum.
出芽酵母亚门基因组进化的节奏和模式
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作者:Shen Xing-Xing, Opulente Dana A, Kominek Jacek, Zhou Xiaofan, Steenwyk Jacob L, Buh Kelly V, Haase Max A B, Wisecaver Jennifer H, Wang Mingshuang, Doering Drew T, Boudouris James T, Schneider Rachel M, Langdon Quinn K, Ohkuma Moriya, Endoh Rikiya, Takashima Masako, Manabe Ri-Ichiroh, Äadež Neža, Libkind Diego, Rosa Carlos A, DeVirgilio Jeremy, Hulfachor Amanda Beth, Groenewald Marizeth, Kurtzman Cletus P, Hittinger Chris Todd, Rokas Antonis
| 期刊: | Cell | 影响因子: | 42.500 |
| 时间: | 2018 | 起止号: | 2018 Nov 29; 175(6):1533-1545 |
| doi: | 10.1016/j.cell.2018.10.023 | 种属: | Yeast |
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