Wang Yen-Wen, Wang Fen, Meng Guoliang, Lopez-Giraldez Francesc, Dong Caihong, Wang Zheng, Townsend Jeffrey P
Department of Biostatistics, Yale School of Public Health, New Haven, CT, USA.
Institute of Microbiology, Chinese Academy of Sciences, Beijing, China.
Mol Biol Evol. 2025 Jun 4;42(6). doi: 10.1093/molbev/msaf131.
The phenotype of an organism is shaped by gene expression within developing tissues. This shaping relates the evolution of gene expression to phenotypic evolution, through divergence in gene expression and consequent phenotype. Rates of phenotypic evolution receive extensive attention. However, the degree to which divergence in the phenotype of gene expression is subject to heterogeneous rates of evolution across developmental stages has not previously been assessed. Here, we analyzed the evolution of the expression of single-copy orthologs within 9 species of Sordariomycetes Fungi, across 9 developmental stages within asexual spore germination and sexual reproduction. Rates of gene expression evolution exhibited high variation both within and among developmental stages. Furthermore, rates of gene expression evolution were correlated with nonsynonymous to synonymous substitution rates (dN/dS), suggesting that gene sequence evolution and expression evolution are indirectly or directly driven by common evolutionary forces. Functional pathway analyses demonstrate that rates of gene expression evolution are higher in labile pathways such as carbon metabolism, and lower in conserved pathways such as those involved in cell cycle and molecular signaling. Lastly, the expression of genes in the meiosis pathway evolved at a slower rate only across the stages where meiosis took place, suggesting that stage-specific low rates of expression evolution implicate high relevance of the genes to developmental operations occurring between those stages.
生物体的表型由发育组织中的基因表达塑造。这种塑造通过基因表达的差异以及随之而来的表型,将基因表达的进化与表型进化联系起来。表型进化的速率受到广泛关注。然而,基因表达表型的差异在不同发育阶段受进化速率异质性影响的程度此前尚未得到评估。在此,我们分析了粪壳菌纲真菌9个物种中9个单拷贝直系同源基因在无性孢子萌发和有性生殖的9个发育阶段的表达进化。基因表达进化速率在发育阶段内和发育阶段间均表现出高度变异性。此外,基因表达进化速率与非同义替换率与同义替换率之比(dN/dS)相关,这表明基因序列进化和表达进化是由共同的进化力量间接或直接驱动的。功能通路分析表明,在不稳定通路如碳代谢中,基因表达进化速率较高,而在保守通路如参与细胞周期和分子信号传导的通路中,基因表达进化速率较低。最后,减数分裂通路中的基因表达仅在减数分裂发生的阶段进化较慢,这表明特定阶段的低表达进化速率意味着这些基因与这些阶段之间发生的发育过程高度相关。