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Wnt signalling underlies the evolution of new phenotypes and craniofacial variability in Lake Malawi cichlids

机译:Wnt信号是马拉维丽鱼科鱼新表型和颅面变异性进化的基础

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Progress towards understanding adaptive radiations at the mechanistic level is still limited with regard to the proximate molecular factors that both promote and constrain evolution. Here we focus on the craniofacial skeleton and show that expanded Wnt/ β -catenin signalling early in ontogeny is associated with the evolution of phenotypic novelty and ecological opportunity in Lake Malawi cichlids. We demonstrate that the mode of action of this molecular change is to effectively lock into place an early larval phenotype, likely through accelerated rates of bone deposition. However, we demonstrate further that this change toward phenotypic novelty may in turn constrain evolutionary potential through the corresponding reduction in craniofacial plasticity at later stages of ontogeny. In all, our data implicate the Wnt pathway as an important mediator of craniofacial form and offer new insights into how developmental systems can evolve to both promote and constrain evolutionary change.
机译:就促进和限制进化的近来分子因素而言,在机械水平上理解适应性辐射的进展仍然有限。在这里,我们专注于颅面骨架,并显示在个体发育早期,扩大的Wnt /β-catenin信号传导与马拉维丽鱼科鱼表型新奇的进化和生态机会相关。我们证明这种分子改变的作用方式是有效地锁定早期幼虫表型,很可能是通过加快骨沉积速度。但是,我们进一步证明,这种向表型新颖性的改变可能反过来通过在个体发育后期对颅面可塑性的相应降低而限制了进化潜力。总而言之,我们的数据暗示了Wnt通路是颅面形式的重要中介,并为发展系统如何演化以促进和限制演化变化提供了新的见解。

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