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首页> 外文期刊>Journal of evolutionary biology >The influence of feeding on the evolution of sensory signals: a comparative test of an evolutionary trade-off between masticatory and sensory functions of skulls in southern African Horseshoe bats (Rhinolophidae)
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The influence of feeding on the evolution of sensory signals: a comparative test of an evolutionary trade-off between masticatory and sensory functions of skulls in southern African Horseshoe bats (Rhinolophidae)

机译:进食对感觉信号进化的影响:南部非洲马蹄蝠(Rhinolophidae)的咀嚼和感觉功能之间的进化权衡的比较测试

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摘要

The skulls of animals have to perform many functions. Optimization for one function may mean another function is less optimized, resulting in evolutionary trade-offs. Here, we investigate whether a trade-off exists between the masticatory and sensory functions of animal skulls using echolocating bats as model species. Several species of rhinolophid bats deviate from the allometric relationship between body size and echolocation frequency. Such deviation may be the result of selection for increased bite force, resulting in a decrease in snout length which could in turn lead to higher echolocation frequencies. If so, there should be a positive relationship between bite force and echolocation frequency. We investigated this relationship in several species of southern African rhinolophids using phylogenetically informed analyses of the allometry of their bite force and echolocation frequency and of the three-dimensional shape of their skulls. As predicted, echolocation frequency was positively correlated with bite force, suggesting that its evolution is influenced by a trade-off between the masticatory and sensory functions of the skull. In support of this, variation in skull shape was explained by both echolocation frequency (80%) and bite force (20%). Furthermore, it appears that selection has acted on the nasal capsules, which have a frequency-specific impedance matching function during vocalization. There was a negative correlation between echolocation frequency and capsule volume across species. Optimization of the masticatory function of the skull may have been achieved through changes in the shape of the mandible and associated musculature, elements not considered in this study.
机译:动物的头骨必须执行许多功能。一个功能的优化可能意味着另一功能的优化程度较低,从而导致了折衷方案。在这里,我们研究使用回声定位蝙蝠作为模型物种,在动物头骨的咀嚼和感觉功能之间是否存在取舍。几种犀牛蝙蝠偏离了体型和回声定位频率之间的异形关系。这种偏差可能是由于选择咬合力增加而导致的,这导致吻口长度减小,进而导致较高的回声定位频率。如果是这样,则咬合力和回声定位频率之间应该存在正向关系。我们使用对它们的咬合力和回声定位频率以及其头骨的三维形状进行异相分析的系统发育学信息分析,对南部非洲犀牛的几种物种进行了调查。如预测的那样,回声定位频率与咬合力呈正相关,表明其进化受到头骨咀嚼和感觉功能之间的权衡影响。为此,回声定位频率(80%)和咬合力(20%)解释了头骨形状的变化。此外,似乎选择已经作用于鼻囊,其在发声期间具有特定频率的阻抗匹配功能。回声定位频率与整个物种的囊体体积之间呈负相关。可以通过改变下颌骨和相关肌肉组织的形状来实现头骨咀嚼功能的优化,这是本研究中未考虑的要素。

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