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Genetic architecture sets limits on transgressive segregation in hybrid cichlid fishes

机译:遗传结构对杂交丽鱼科鱼的海生分离提出了限制

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The role of hybridization in the evolution of animal species is poorly understood. Transgressive segregation is a mechanism through which hybridization can generate diversity and ultimately lead to speciation. In this report we investigated the capacity of hybridization to generate novel (transgressive) phenotypes in the taxonomically diverse cichlid fishes. We generated a large F-2 hybrid population by crossing two closely related cichlid species from Lake Malawi in Africa with differently shaped heads. Our morphometric analysis focused on two traits with different selective histories. The cichlid lower jaw (mandible) has evolved in response to strong directional selection, and does not segregate beyond the parental phenotype. The cichlid neurocranium (skull) has likely diverged in response to forces other than consistent directional selection (e.g., stabilizing selection), and exhibits marked transgressive segregation in our F2 population. We show that the genetic architecture of the cichlid jaw limits transgression, whereas the genetic basis of skull shape is permissive of transgressive segregation. These data suggest that natural selection, acting through the genome, will limit the degree of diversity that may be achieved via hybridization. Results are discussed in the context of the broader question of how phenotypic diversity may be achieved in rapidly evolving systems.
机译:杂交在动物物种进化中的作用了解得很少。过度隔离是杂交可产生多样性并最终导致物种形成的机制。在本报告中,我们研究了在分类学上不同的丽鱼科鱼类中杂交产生新的(侵袭性)表型的能力。我们通过将非洲马拉维湖的两个密切相关的丽鱼科动物的头部形状不同而杂交,从而产生了大量的F-2杂种。我们的形态计量分析着眼于具有不同选择历史的两个特征。丽鱼科鱼的下颌(下颌骨)已响应强烈的方向选择而进化,并且没有分离出亲本表型。慈鲷神经头盖骨(头骨)可能会在对方向选择(例如稳定选择)以外的其他力的反应中发散,并在我们的F2种群中表现出明显的过犯隔离。我们表明,丽鱼科鱼颚的遗传结构限制了侵害,而头骨形状的遗传基础是允许的侵害性分离。这些数据表明,通过基因组起作用的自然选择将限制可能通过杂交获得的多样性程度。在关于如何在快速发展的系统中实现表型多样性的更广泛问题的背景下讨论了结果。

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