MOE Key Laboratory of Gene Function and Regulation, State Key Laboratory of Biocontrol, School of Life Sciences, Sun Yat-sen University, Guangzhou 510275, China.
Genome Biol Evol. 2022 May 3;14(5). doi: 10.1093/gbe/evac061.
Organisms within species have numerous genetic and phenotypic variations. Growing evidences show intraspecies variation of mutant phenotypes may be more complicated than expected. Current studies on intraspecies variations of mutant phenotypes are limited to just a few strains. This study investigated the intraspecies variation of fitness effects of 5,630 gene mutants in ten Saccharomyces cerevisiae strains using CRISPR-Cas9 screening. We found that the variability of fitness effects induced by gene disruptions is very large across different strains. Over 75% of genes affected cell fitness in a strain-specific manner to varying degrees. The strain specificity of the fitness effect of a gene is related to its evolutionary and functional properties. Subsequent analysis revealed that younger genes, especially those newly acquired in S. cerevisiae species, are more likely to be strongly strain-specific. Intriguingly, there seems to exist a ceiling of fitness effect size for strong strain-specific genes, and among them, the newly acquired genes are still evolving and have yet to reach this ceiling. Additionally, for a large proportion of protein complexes, the strain specificity profile is inconsistent among genes encoding the same complex. Taken together, these results offer a genome-wide map of intraspecies variation for fitness effect as a mutant phenotype and provide an updated insight on intraspecies phenotypic evolution.
物种内的生物体具有许多遗传和表型变异。越来越多的证据表明,种内突变表型的变异可能比预期的更为复杂。目前对种内突变表型变异的研究仅限于少数几个菌株。本研究使用 CRISPR-Cas9 筛选技术,研究了 10 个酿酒酵母菌株中 5630 个基因突变体的适应性效应的种内变异。我们发现,基因缺失引起的适应性效应的可变性在不同菌株之间非常大。超过 75%的基因以不同程度的菌株特异性方式影响细胞适应性。一个基因的适应性效应的菌株特异性与其进化和功能特性有关。随后的分析表明,年轻的基因,特别是那些在酿酒酵母种中新获得的基因,更有可能具有很强的菌株特异性。有趣的是,对于强菌株特异性基因,似乎存在一个适应性效应大小的上限,而其中新获得的基因仍在进化,尚未达到这个上限。此外,对于很大一部分蛋白质复合物来说,编码同一复合物的基因之间的菌株特异性图谱不一致。总之,这些结果提供了一个关于作为突变表型的适应性效应的种内变异的全基因组图谱,并为种内表型进化提供了新的见解。