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SELECTION FOR MECHANICAL ADVANTAGE UNDERLIES MULTIPLE CRANIAL OPTIMA IN NEW WORLD LEAF-NOSED BATS

机译:机械优势在新世界叶鼻WORLD中的多重颅骨优化基础上的选择

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Selection for divergent performance optima has been proposed as a central mechanism underlying adaptive radiation. Uncovering multiple optima requires identifying forms associated with different adaptive zones and linking those forms to performance. However, testing and modeling the performance of complex morphologies like the cranium is challenging. We introduce a threedimensional finite-element (FE) model of the cranium that can be morphed into different shapes by varying simple parameters to investigate the relationship between two engineering-based measures of performance, mechanical advantage and von Mises stress, and four divergent adaptive zones occupied by New World Leaf-nosed bats. To investigate these relationships, we tested the fit of Brownian motion and Ornstein–Uhlenbeck models of evolution in mechanical advantage and von Mises stress using dated multilocus phylogenies. The analyses revealed three performance optima for mechanical advantage among species from three adaptive zones: bats that eat nectar; generalized insectivores, omnivores and some frugivores; and bats that specialize on hard canopy fruits. Only two optima, one corresponding to nectar feeding, were consistently uncovered for von Mises stress. These results suggest that mechanical advantage played a larger role than von Mises stress in the radiation of New World Leaf-nosed bats into divergent adaptive zones.
机译:已经提出了发散性能最优的选择,作为适应性辐射的主要机制。要发现多个最佳状态,需要识别与不同自适应区域关联的表格,并将这些表格与性能联系起来。但是,对颅骨等复杂形态的性能进行测试和建模具有挑战性。我们介绍了颅骨的三维有限元(FE)模型,该模型可以通过更改简单的参数来变形为不同的形状,以研究两种基于工程的性能,机械优势和冯·米塞斯应力测量方法以及四个不同的适应区之间的关系被新世界的叶鼻蝙蝠占领。为了研究这些关系,我们使用过时的多基因组系统发育测试了布朗运动和Ornstein–Uhlenbeck进化模型在机械优势和von Mises应力方面的拟合。分析揭示了三个适应区物种在机械优势方面的三个性能最佳选择:蝙蝠吃花蜜;食虫,杂食动物和一些食食动物;和专门研究硬树冠果实的蝙蝠。对于冯·米塞斯(von Mises)压力,始终没有发现两个最优值,一个对应于花蜜摄食。这些结果表明,在将新世界的叶鼻蝙蝠辐射到不同的适应区时,机械优势比冯·米塞斯应力发挥的作用更大。

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