Van Bocxlaer Bert
CNRS, Université de Lille, UMR 8198 - Evo-Eco-Paléo, 59000 Lille, France
Limnology Unit, Department of Biology, Ghent University, 9000 Ghent, Belgium.
Proc Biol Sci. 2017 Sep 13;284(1862). doi: 10.1098/rspb.2017.1494.
Ecological processes, non-ecological processes or a combination of both may cause reproductive isolation and speciation, but their specific roles and potentially complex interactions in evolutionary radiations remain poorly understood, which defines a central knowledge gap at the interface of microevolution and macroevolution. Here I examine genome scans in combination with phenotypic and environmental data to disentangle how ecological and non-ecological processes contributed to population differentiation and speciation in an ongoing radiation of gastropods from the Malawi Basin. I found a remarkable hierarchical structure of differentiation mechanisms in space and time: neutral and mutation-order processes are older and occur mainly between regions, whereas more recent adaptive processes are the main driver of genetic differentiation and reproductive isolation within regions. The strongest differentiation occurs between habitats and between regions, i.e. when ecological and non-ecological processes act synergistically. The structured occurrence of these processes based on the specific geographical setting and ecological opportunities strongly influenced the potential for evolutionary radiation. The results highlight the importance of interactions between various mechanisms of differentiation in evolutionary radiations, and suggest that non-ecological processes are important in adaptive radiations, including those of cichlids. Insight into such interactions is critical to understanding large-scale patterns of organismal diversity.
生态过程、非生态过程或二者的结合都可能导致生殖隔离和物种形成,但它们在进化辐射中的具体作用以及潜在的复杂相互作用仍知之甚少,这在微观进化和宏观进化的交叉领域构成了一个核心知识空白。在此,我结合表型和环境数据对基因组扫描进行分析,以厘清在马拉维湖盆腹足动物正在进行的辐射演化中,生态和非生态过程是如何导致种群分化和物种形成的。我发现了分化机制在空间和时间上显著的层次结构:中性和突变顺序过程更为古老,主要发生在不同区域之间,而较新的适应性过程是区域内遗传分化和生殖隔离的主要驱动因素。最强的分化发生在栖息地之间和区域之间,即当生态和非生态过程协同作用时。这些过程基于特定地理环境和生态机遇的结构化出现,强烈影响了进化辐射的潜力。研究结果凸显了进化辐射中各种分化机制之间相互作用的重要性,并表明非生态过程在适应性辐射中很重要,包括丽鱼科鱼类的适应性辐射。深入了解此类相互作用对于理解生物多样性的大规模模式至关重要。