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Morphogenesis in bat wings: linking development, evolution and ecology.

机译:蝙蝠翅膀的形态发生:将发展,进化和生态联系在一起。

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The evolution of powered flight in mammals required specific developmental shifts from an ancestral limb morphology to one adapted for flight. Through studies of comparative morphogenesis, investigators have quantified points and rates of divergence providing important insights into how wings evolved in mammals. Herein I compare growth,development and skeletogenesis of forelimbs between bats and the more ancestral state provided by the rat (Rattus norvegicus)and quantify growth trajectories that illustrate morphological divergence both developmentally and evolutionarily.In addition, I discuss how wing shape is controlled during morphogenesis by applying multivariate analyses of wing bones and wing membranes and discuss how flight dynamics are stabilized during flight ontogeny. Further, I discuss the development of flight in bats in relation to the ontogenetic niche and how juveniles effect populational foraging patterns. In addition, I provide a hypothetical ontogenetic landscape model that predicts how and when selection is most intense during juvenile morphogenesis and test this model with data from a population of the little brown bat, Myotis lucifugus.
机译:哺乳动物中动力飞行的进化需要从祖先肢体形态到适合飞行的特定形态发展。通过对比较形态发生的研究,研究人员已经量化了差异点和速率,从而提供了关于哺乳动物机翼如何进化的重要见解。在本文中,我比较了蝙蝠与大鼠(Rattus norvegicus)提供的更祖先状态之间蝙蝠的前肢的生长,发育和骨骼形成,并量化了说明发育和进化过程中形态差异的生长轨迹。此外,我还讨论了在形态发生过程中如何控制机翼形状通过对翼骨和翼膜进行多变量分析,并讨论在飞行个体发育过程中如何稳定飞行动力学。此外,我讨论了与个体发育利基有关的蝙蝠飞行的发展,以及少年如何影响种群觅食模式。另外,我提供了一个假设的本体遗传景观模型,该模型预测了少年形态发生过程中选择的方式和时间最密集,并使用来自小棕蝙蝠Myotis lucifugus的数据测试了该模型。

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