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快速运动中的模块化和缩放:螳螂虾的功率放大。

Modularity and scaling in fast movements: power amplification in mantis shrimp.

机构信息

Department of Biology, University of Massachusetts, Amherst, Massachusetts 01003, USA.

出版信息

Evolution. 2011 Feb;65(2):443-61. doi: 10.1111/j.1558-5646.2010.01133.x. Epub 2010 Oct 7.

Abstract

Extremely fast animal actions are accomplished with mechanisms that reduce the duration of movement. This process is known as power amplification. Although many studies have examined the morphology and performance of power-amplified systems, little is known about their development and evolution. Here, we examine scaling and modularity in the powerful predatory appendages of a mantis shrimp, Gonodactylaceus falcatus (Crustacea, Stomatopoda). We propose that power-amplified systems can be divided into three units: an engine (e.g., muscle), an amplifier (e.g., spring), and a tool (e.g., hammer). We tested whether these units are developmentally independent using geometric morphometric techniques that quantitatively compare shapes. Additionally, we tested whether shape and several mechanical features are correlated with size and sex. We found that the morphological regions that represent the engine, amplifier, and tool belong to independent developmental modules. In both sexes, body size was positively correlated with the size of each region. Shape, however, changed allometrically with appendage size only in the amplifier (both sexes) and tool (males). These morphological changes were correlated with strike force and spring force (amplifier), but not spring stiffness (amplifier). Overall, the results indicate that each functional unit belongs to different developmental modules in a power-amplified system, potentially allowing independent evolution of the engine, amplifier, and tool.

摘要

极快速的动物动作是通过缩短运动时间的机制来完成的。这个过程被称为功率放大。虽然许多研究已经研究了功率放大系统的形态和性能,但对其发展和进化知之甚少。在这里,我们研究了螳螂虾 Gonodactylaceus falcatus(甲壳纲,十足目)强大捕食附肢的缩放和模块化。我们提出,功率放大系统可以分为三个单元:发动机(例如肌肉)、放大器(例如弹簧)和工具(例如锤子)。我们使用定量比较形状的几何形态测量技术来测试这些单元是否在发育上是独立的。此外,我们还测试了形状和几个机械特征是否与大小和性别相关。我们发现,代表发动机、放大器和工具的形态区域属于独立的发育模块。在两性中,体型大小与每个区域的大小呈正相关。然而,只有在放大器(两性)和工具(雄性)中,形状才会随附肢大小发生异速生长变化。这些形态变化与打击力和弹簧力(放大器)相关,但与弹簧刚度(放大器)无关。总体而言,结果表明,每个功能单元都属于功率放大系统中的不同发育模块,这可能允许发动机、放大器和工具的独立进化。

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