Schrader Lukas, Helanterä Heikki, Oettler Jan
Institut für Zoologie, Universität Regensburg, Regensburg, Germany.
Centre for Social Evolution, Department of Biology, University of Copenhagen, Copenhagen, Denmark.
Mol Biol Evol. 2017 Mar 1;34(3):535-544. doi: 10.1093/molbev/msw240.
Plastic gene expression underlies phenotypic plasticity and plastically expressed genes evolve under different selection regimes compared with ubiquitously expressed genes. Social insects are well-suited models to elucidate the evolutionary dynamics of plastic genes for their genetically and environmentally induced discrete polymorphisms. Here, we study the evolution of plastically expressed genes in the ant Cardiocondyla obscurior-a species that produces two discrete male morphs in addition to the typical female polymorphism of workers and queens. Based on individual-level gene expression data from 28 early third instar larvae, we test whether the same evolutionary dynamics that pertain to plastically expressed genes in adults also pertain to genes with plastic expression during development. In order to quantify plasticity of gene expression over multiple contrasts, we develop a novel geometric measure. For genes expressed during development, we show that plasticity of expression is positively correlated with evolutionary rates. We furthermore find a strong correlation between expression plasticity and expression variation within morphs, suggesting a close link between active and passive plasticity of gene expression. Our results support the notion of relaxed selection and neutral processes as important drivers in the evolution of adaptive plasticity.
可塑性基因表达是表型可塑性的基础,与普遍表达的基因相比,可塑性表达的基因在不同的选择机制下进化。社会性昆虫是研究可塑性基因进化动态的理想模型,因为它们具有遗传和环境诱导的离散多态性。在这里,我们研究了暗胸梳爪蚁中可塑性表达基因的进化——该物种除了具有典型的工蚁和蚁后的雌性多态性外,还产生两种离散的雄性形态。基于28只早期三龄幼虫的个体水平基因表达数据,我们测试了与成虫中可塑性表达基因相关的相同进化动态是否也适用于发育过程中具有可塑性表达的基因。为了量化基因表达在多个对比中的可塑性,我们开发了一种新的几何测量方法。对于在发育过程中表达的基因,我们表明表达的可塑性与进化速率呈正相关。我们还发现表达可塑性与形态内的表达变异之间存在很强的相关性,这表明基因表达的主动可塑性和被动可塑性之间存在密切联系。我们的结果支持了宽松选择和中性过程是适应性可塑性进化的重要驱动力这一观点。