生物
表型
表型可塑性
进化动力学
适应(眼睛)
遗传异质性
遗传学
遗传适应性
基因
实验进化
人类进化遗传学
性状
酿酒酵母
抗真菌药
进化生物学
遗传建筑学
人口
系统发育学
社会学
人口学
神经科学
白色念珠菌
作者
Zoltán Bódi,Zoltán Farkas,Dmitry Nevozhay,Dorottya Kalapis,Viktória Lázár,Bálint Csörgő,Ákos Nyerges,Béla Szamecz,Gábor Fekete,Balázs Papp,Hugo Araújo,José Luís Oliveira,Gabriela Moura,Manuel A. S. Santos,Tamás Székely,Gábor Balázsi,Csaba Pál
出处
期刊:PLOS Biology
[Public Library of Science]
日期:2017-05-09
卷期号:15 (5): e2000644-e2000644
被引量:134
标识
DOI:10.1371/journal.pbio.2000644
摘要
Genetically identical cells frequently display substantial heterogeneity in gene expression, cellular morphology and physiology. It has been suggested that by rapidly generating a subpopulation with novel phenotypic traits, phenotypic heterogeneity (or plasticity) accelerates the rate of adaptive evolution in populations facing extreme environmental challenges. This issue is important as cell-to-cell phenotypic heterogeneity may initiate key steps in microbial evolution of drug resistance and cancer progression. Here, we study how stochastic transitions between cellular states influence evolutionary adaptation to a stressful environment in yeast Saccharomyces cerevisiae. We developed inducible synthetic gene circuits that generate varying degrees of expression stochasticity of an antifungal resistance gene. We initiated laboratory evolutionary experiments with genotypes carrying different versions of the genetic circuit by exposing the corresponding populations to gradually increasing antifungal stress. Phenotypic heterogeneity altered the evolutionary dynamics by transforming the adaptive landscape that relates genotype to fitness. Specifically, it enhanced the adaptive value of beneficial mutations through synergism between cell-to-cell variability and genetic variation. Our work demonstrates that phenotypic heterogeneity is an evolving trait when populations face a chronic selection pressure. It shapes evolutionary trajectories at the genomic level and facilitates evolutionary rescue from a deteriorating environmental stress.
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