首页> 外文期刊>Evolutionary biology >The Skull Integration Pattern and Internal Constraints in Myotis myotis-Myotis blythii Species Group (Vespertilionidae, Chiroptera) Might be Shaped by Natural Selection During Evolution Along the Genetic Line of Least Resistance
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The Skull Integration Pattern and Internal Constraints in Myotis myotis-Myotis blythii Species Group (Vespertilionidae, Chiroptera) Might be Shaped by Natural Selection During Evolution Along the Genetic Line of Least Resistance

机译:Myotis-myotis-myotis Blythii种群(Vespertolionidae,Chiroptera)的头骨整合模式和内部约束可能是通过沿着最低阻力的遗传线的进化过程中的自然选择而形成

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摘要

Evolutionary dynamics of covariation patterns in craniometric traits was studied for bats from the Myotis myotis-Myotis blythii species group (Mammalia, Chiroptera, Vespertilionidae) namely M.m.myotis, M.b.oxygnathus, M.b.omari, M.b.blythii, and M.b.altaicus. These species evolved towards increasing the size. One more species, M.dasycneme, which is phylogenetically, morphologically, and ecologically rather distant from these OTUs, also was studied for comparison with them. A set of 30 craniometric traits was studied for each of the OTUs using the quantitative genetics approaches. Phenotypic covariance matrices were used as proxies for additive genetic covariance matrices. The analysis has shown that multivariate divergence of the studied Myotis OTUs was governed by selection rather than by random drift and that these OTUs evolved in the direction close to the line of least evolutionary resistance. As overall size increases, the skull integration, respondability, and evolvability increase, while flexibility slightly decreases. Such a pattern can possibly be explained as a consequence of adaptation of M.blythii and especially M.myotis to prey on considerably large hard-shelled insects. A high cohesion of skull structures is needed for the effective functioning of their jaw apparatus. For Myotis bats with other foraging strategies (such as M. dasycneme that catches insects mainly using the claws of hind feet) this cohesion seems to be of lesser importance.
机译:研究了肉豆蔻菌肌肌肌瘤的蝙蝠对颅杆菌性状调节模式的进化动力学这些物种发展朝着增加尺寸。还研究了一种更多种,M.Dasycneme,其在这种OTU的系统中,形态学,和生态相同,而且还研究了它们。使用定量遗传学方法对每个OTU进行研究了一组30个渐进量性状。表型协方差矩阵用作添加剂遗传协方差基质的代理。分析表明,研究的肌球灰耳的多变量分歧是通过选择而不是随机漂移来治理,并且这些OTU在靠近最小进化抗线的方向上进化。随着总体尺寸的增加,颅骨集成,响应性和进化性增加,而灵活性略有降低。可以通过适应M.blythii和特别是M.myotis对大量的硬壳昆虫的捕食来解释这种模式。需要高颅骨结构的颅骨结构,以便有效地运作它们的钳口设备。对于肌肌蝙蝠与其他觅食策略(如捕获昆虫的M. Dasycneme,主要使用后脚爪子)这种凝聚力似乎具有较小的重要性。

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