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Gene(s) and individual feeding behavior: Exploring eco‐evolutionary dynamics underlying left‐right asymmetry in the scale‐eating cichlid fish Perissodus microlepis

机译:基因和个体取食行为:探索鳞翅目丽鱼科鱼类Perissodus microlepis左右不对称的生态进化动力学

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The scale‐eating cichlid fish Perissodus microlepis is a textbook example of bilateral asymmetry due to its left or right‐bending heads and of negative frequency‐dependent selection, which is proposed to maintain this stable polymorphism. The mechanisms that underlie this asymmetry remain elusive. Several studies had initially postulated a simple genetic basis for this trait, but this explanation has been questioned, particularly by reports observing a unimodal distribution of mouth shapes. We hypothesize that this unimodal distribution might be due to a combination of genetic and phenotypically plastic components. Here, we expanded on previous work by investigating a formerly identified candidate SNP associated to mouth laterality, documenting inter‐individual variation in feeding preference using stable isotope analyses, and testing their association with mouth asymmetry. Our results suggest that this polymorphism is influenced by both a polygenic basis and inter‐individual non‐genetic variation, possibly due to feeding experience, individual specialization, and intraspecific competition. We introduce a hypothesis potentially explaining the simultaneous maintenance of left, right, asymmetric and symmetric mouth phenotypes due to the interaction between diverse eco‐evolutionary dynamics including niche construction and balancing selection. Future studies will have to further tease apart the relative contribution of genetic and environmental factors and their interactions in an integrated fashion.
机译:吃鳞鱼的丽鱼科鱼类Perissodus microlepis因其左或右弯曲的头部以及负频率依赖性选择而成为双边不对称的教科书实例,建议维持这种稳定的多态性。这种不对称的基础机制仍然难以捉摸。最初有几项研究假设该特征具有简单的遗传基础,但这一解释受到质疑,尤其是观察到嘴形呈单峰分布的报道。我们假设这种单峰分布可能是由于遗传和表型塑性成分的组合。在这里,我们通过研究先前确定的与嘴巴侧向性相关的候选SNP,使用稳定的同位素分析记录进食偏好的个体间差异以及测试它们与嘴巴不对称性之间的关系来扩展先前的工作。我们的结果表明,这种多态性受多基因基础和个体间非遗传变异的影响,可能是由于进食经验,个体专长和种内竞争所致。我们引入了一个假设,该假设可能解释了由于生态位构建和平衡选择等多种生态进化动力学之间的相互作用而同时维持左,右,不对称和对称嘴表型的情况。未来的研究将不得不进一步梳理遗传和环境因素的相对贡献及其相互作用。

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