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酿酒酵母中基因表达与适应性之间的可塑性及特定环境关系。

Plasticity and environment-specific relationships between gene expression and fitness in Saccharomyces cerevisiae.

作者信息

Siddiq Mohammad A, Duveau Fabien, Wittkopp Patricia J

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of Michigan, Ann Arbor, MI, USA.

Department of Ecology and Evolutionary Biology, University of Michigan, Ann Arbor, MI, USA.

出版信息

Nat Ecol Evol. 2024 Dec;8(12):2184-2194. doi: 10.1038/s41559-024-02582-7. Epub 2024 Nov 13.

Abstract

The environment influences how an organism's genotype determines its phenotype and how this phenotype affects its fitness. Here, to better understand this dual role of environment in the production and selection of phenotypic variation, we determined genotype-phenotype-fitness relationships for mutant strains of Saccharomyces cerevisiae in four environments. Specifically, we measured how promoter mutations of the metabolic gene TDH3 modified expression level and affected growth for four different carbon sources. In each environment, we observed a clear relationship between TDH3 expression level and fitness, but this relationship differed among environments. Mutations with similar effects on expression in different environments often had different effects on fitness and vice versa. Such environment-specific relationships between phenotype and fitness can shape the evolution of phenotypic plasticity. We also found that mutations disrupting binding sites for transcription factors had more variable effects on expression among environments than those disrupting the TATA box, which is part of the core promoter. However, mutations with the most environmentally variable effects on fitness were located in the TATA box, because of both the lack of plasticity of TATA box mutations and environment-specific fitness functions. This observation suggests that mutations affecting different molecular mechanisms contribute unequally to regulatory sequence evolution in changing environments.

摘要

环境影响生物体的基因型如何决定其表型,以及这种表型如何影响其适应性。在此,为了更好地理解环境在表型变异的产生和选择中的双重作用,我们确定了酿酒酵母突变株在四种环境中的基因型-表型-适应性关系。具体而言,我们测量了代谢基因TDH3的启动子突变如何改变表达水平,并影响四种不同碳源的生长。在每种环境中,我们观察到TDH3表达水平与适应性之间存在明确的关系,但这种关系在不同环境中有所不同。在不同环境中对表达具有相似影响的突变,对适应性的影响往往不同,反之亦然。表型与适应性之间这种特定于环境的关系可以塑造表型可塑性的进化。我们还发现,与破坏作为核心启动子一部分的TATA盒的突变相比,破坏转录因子结合位点的突变在不同环境中对表达的影响更具变异性。然而,对适应性具有最具环境变异性影响的突变位于TATA盒中,这是由于TATA盒突变缺乏可塑性以及特定于环境的适应性功能所致。这一观察结果表明,影响不同分子机制的突变在不断变化的环境中对调控序列进化的贡献不平等。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd02/11618099/f4711f4de344/41559_2024_2582_Fig1_HTML.jpg

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