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Perspectives on the Genetic Architecture of Divergence in Body Shape in Sticklebacks

机译:棘背动物身体形态发散的遗传结构透视

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The body shape of fishes encompasses a number of morphological traits that are intrinsically linked to functional systems and affect various measures of performance, including swimming, feeding, and avoiding predators. Changes in shape can allow a species to exploit a new ecological niche and can lead to ecological speciation. Body shape results from the integration of morphological, behavioral and physiological traits. It has been well established that functional interdependency among traits plays a large role in constraining the evolution of shape, affecting both the speed and the repeated evolution of particular body shapes. However, it is less clear what role genetic or developmental constraints might play in biasing the rate or direction of the evolution of body shape. Here, we suggest that the threespine stickleback (Gasterosteus aculeatus) is a powerful model system in which to address the extent to which genetic or developmental constraints play a role in the evolution of body shape in fishes. We review the existing data that begins to address these issues in sticklebacks and provide suggestions for future areas of research that will be particularly fruitful for illuminating the mechanisms that contribute to the evolution of body shape in fishes.
机译:鱼的体形包含许多与功能系统内在联系的形态特征,并影响各种性能指标,包括游泳,喂养和避免捕食。形状的变化可以使物种利用新的生态位,并可能导致生态物种形成。身体形态来自形态,行为和生理特征的综合。众所周知,性状之间的功能相互依赖性在限制形状演变,影响速度和特定身体形状的反复演变中起着重要作用。但是,尚不清楚遗传或发育限制因素在偏向身体形状的演化速率或方向中可能起什么作用。在这里,我们建议三棘棘背式(Gasterosteus aculeatus)是一个强大的模型系统,其中可以解决遗传或发育限制在鱼类体形演变中发挥作用的程度。我们回顾了现有的数据,这些数据开始解决棘手问题,并为未来的研究领域提供了建议,这些领域对于阐明有助于鱼类体形进化的机制特别有用。

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