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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Evolutionary dynamics of complex biomechanical systems: An example using the four-bar mechanism
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Evolutionary dynamics of complex biomechanical systems: An example using the four-bar mechanism

机译:复杂生物力学系统的演化动力学:使用四杆机构的示例

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摘要

Like many phenotypic traits, biomechanical systems are defined by both an underlying morphology and an emergent functional property. The relationship between these levels may have a profound impact on how selection for functional performance is translated into morphological evolution. In particular, complex mechanical systems are likely to be highly redundant, because many alternative morphologies yield equivalent functions. We suggest that this redundancy weakens the relationship between morphological and functional diversity, and we illustrate this effect using an evolutionary model of the four-bar lever system of labrid fishes. Our results demonstrate that, when traits are complex, the morphological diversity of a clade may only weakly predict its mechanical diversity. Furthermore, parallel or convergent selection on function does not necessarily produce convergence in morphology. Empirical observations suggest that this weak form-function relationship has contributed to the morphological diversity of labrid fishes, as functionally equivalent species may nevertheless possess morphologically distinct jaws. We suggest that partial decoupling of morphology and mechanics due to redundancy is a major factor in morphological diversification.
机译:像许多表型特征一样,生物力学系统由基本形态和新兴功能特性共同定义。这些级别之间的关系可能对如何将功能性能选择转换为形态演变产生深远影响。尤其是,复杂的机械系统可能是高度冗余的,因为许多替代形态会产生同等的功能。我们建议这种冗余削弱了形态和功能多样性之间的关系,并且我们使用唇鱼的四杆杠杆系统的进化模型来说明这种效果。我们的结果表明,当性状复杂时,进化枝的形态多样性可能只能弱预测其机械多样性。此外,对功能的并行或收敛选择不一定会在形态上产生收敛。经验观察表明,这种弱的形式-功能关系促进了唇形鱼类的形态多样性,因为功能上等效的物种可能仍具有形态上截然不同的颚。我们建议,由于冗余而导致的形态学和力学的局部解耦是形态多样化的主要因素。

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