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功能模块化与猎物捕获系统增强力量的进化变化率。

Modularity and rates of evolutionary change in a power-amplified prey capture system.

机构信息

Department of Biology, Organismic and Evolutionary Biology Graduate Program, University of Massachusetts, Amherst, Massachusetts.

出版信息

Evolution. 2013 Nov;67(11):3191-207. doi: 10.1111/evo.12185. Epub 2013 Jul 4.

Abstract

The dynamic interplay among structure, function, and phylogeny form a classic triad of influences on the patterns and processes of biological diversification. Although these dynamics are widely recognized as important, quantitative analyses of their interactions have infrequently been applied to biomechanical systems. Here we analyze these factors using a fundamental biomechanical mechanism: power amplification. Power-amplified systems use springs and latches to generate extremely fast and powerful movements. This study focuses specifically on the power amplification mechanism in the fast raptorial appendages of mantis shrimp (Crustacea: Stomatopoda). Using geometric morphometric and phylogenetic comparative analyses, we measured evolutionary modularity and rates of morphological evolution of the raptorial appendage's biomechanical components. We found that "smashers" (hammer-shaped raptorial appendages) exhibit lower modularity and 10-fold slower rates of morphological change when compared to non-smashers (spear-shaped or undifferentiated appendages). The morphological and biomechanical integration of this system at a macroevolutionary scale and the presence of variable rates of evolution reveal a balance between structural constraints, functional variation, and the "roles of development and genetics" in evolutionary diversification.

摘要

结构、功能和系统发生之间的动态相互作用构成了影响生物多样化模式和过程的经典三联体。尽管这些动态因素被广泛认为很重要,但它们之间的相互作用的定量分析很少应用于生物力学系统。在这里,我们使用一种基本的生物力学机制来分析这些因素:功率放大。功率放大系统使用弹簧和闩锁来产生极快和强大的运动。本研究特别关注于螳螂虾(甲壳纲:十足目)快速捕食附肢中的功率放大机制。通过几何形态测量和系统发育比较分析,我们测量了捕食附肢生物力学组件的进化模块性和形态进化率。我们发现,与非粉碎者(矛状或未分化的附肢)相比,“粉碎者”(锤状捕食附肢)表现出较低的模块性和 10 倍的形态变化率。在宏观进化尺度上,该系统的形态和生物力学的整合以及可变进化率的存在,揭示了结构约束、功能变异以及“发育和遗传的作用”在进化多样化中的平衡。

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