Smukowski Heil Caiti S, DeSevo Christopher G, Pai Dave A, Tucker Cheryl M, Hoang Margaret L, Dunham Maitreya J
Department of Genome Sciences, University of Washington, Seattle, WA.
Lewis-Sigler Institute for Integrative Genomics, Princeton University, Princeton, NJ.
Mol Biol Evol. 2017 Jul 1;34(7):1596-1612. doi: 10.1093/molbev/msx098.
Hybridization is often considered maladaptive, but sometimes hybrids can invade new ecological niches and adapt to novel or stressful environments better than their parents. The genomic changes that occur following hybridization that facilitate genome resolution and/or adaptation are not well understood. Here, we examine hybrid genome evolution using experimental evolution of de novo interspecific hybrid yeast Saccharomyces cerevisiae × Saccharomyces uvarum and their parentals. We evolved these strains in nutrient-limited conditions for hundreds of generations and sequenced the resulting cultures identifying numerous point mutations, copy number changes, and loss of heterozygosity (LOH) events, including species-biased amplification of nutrient transporters. We focused on a particularly interesting example, in which we saw repeated LOH at the high-affinity phosphate transporter gene PHO84 in both intra- and interspecific hybrids. Using allele replacement methods, we tested the fitness of different alleles in hybrid and S. cerevisiae strain backgrounds and found that the LOH is indeed the result of selection on one allele over the other in both S. cerevisiae and the hybrids. This is an example where hybrid genome resolution is driven by positive selection on existing heterozygosity and demonstrates that even infrequent outcrossing may have lasting impacts on adaptation.
杂交通常被认为是适应不良的,但有时杂种能够侵入新的生态位,并且比其亲本更好地适应新的或有压力的环境。杂交后发生的有助于基因组解析和/或适应的基因组变化尚不清楚。在这里,我们使用从头开始的种间杂交酵母酿酒酵母×葡萄汁酵母及其亲本的实验进化来研究杂交基因组进化。我们在营养限制条件下使这些菌株进化数百代,并对所得培养物进行测序,鉴定出许多点突变、拷贝数变化和杂合性缺失(LOH)事件,包括营养转运蛋白的物种偏向性扩增。我们关注一个特别有趣的例子,在种内和种间杂种中,我们都观察到高亲和力磷酸盐转运蛋白基因PHO84处反复出现的杂合性缺失。使用等位基因替换方法,我们测试了不同等位基因在杂种和酿酒酵母菌株背景中的适应性,发现杂合性缺失确实是酿酒酵母和杂种中一个等位基因相对于另一个等位基因选择的结果。这是一个杂交基因组解析由对现有杂合性的正选择驱动的例子,表明即使是不常见的异交也可能对适应产生持久影响。