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首页> 外文期刊>Biological Journal of the Linnean Society >Morphological and genetic correlates in the left-right asymmetric scale-eating cichlid fish of Lake Tanganyika
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Morphological and genetic correlates in the left-right asymmetric scale-eating cichlid fish of Lake Tanganyika

机译:形态学和遗传在Tanganyika湖的左右非对称规模牛皮鱼中相关

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摘要

The stable polymorphism in mouth asymmetry in the cichlid fish Perissodus microlepis is a textbook example of adaptive evolution accomplished by functionally relevant morphological changes, ecological specialization and negative frequency-dependent selection. Knowledge about the morphological and developmental basis of this stable polymorphism and the mechanisms driving intraspecific variation in this fish remains largely incomplete. Here, we focus on often-neglected but potentially important aspects of the biology of this fish. In particular, we explore patterns of body shape variation, neutral genome-wide genetic diversity across its geographical distribution, and the presence of asymmetry in eyes centroid size in relationship to mouth bending angle. Geographical space (or a factor associated with geography) has a significant effect on both morphological and genetic diversity, suggesting restricted gene flow across the range of this species. We discuss potential implications of these observed patterns, including the possibility that the genetic basis of asymmetry could vary among locations. A significant association between eye and mouth laterality suggests that the entire head might be involved in the asymmetry. These findings highlight that head asymmetry in P. microlepis is a complex polymorphism involving the interaction of the genetic basis of multiple potentially independent traits and the environment.
机译:小鳞鱼嘴不对称的稳定多态性是通过功能相关的形态变化、生态专门化和负频率依赖性选择实现的适应性进化的教科书式例子。关于这种稳定多态性的形态学和发育基础,以及驱动这种鱼种内变异的机制的知识在很大程度上仍然不完整。在这里,我们关注的是这种鱼生物学中经常被忽视但潜在重要的方面。特别是,我们探索了体型变异的模式、中性基因组范围的遗传多样性在其地理分布中的分布,以及眼睛质心大小与嘴弯曲角度之间的不对称性。地理空间(或与地理相关的因素)对形态和遗传多样性都有显著影响,表明该物种范围内的基因流动受到限制。我们讨论了这些观察到的模式的潜在影响,包括不对称的遗传基础可能在不同位置有所不同的可能性。眼睛和嘴的偏侧性之间的显著关联表明,整个头部可能参与了不对称性。这些发现突出表明,小鳞茎线虫头部不对称是一种复杂的多态性,涉及多个潜在独立性状的遗传基础与环境的相互作用。

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