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螳螂虾尾扇的进化及其在仪式化打斗中的作用。

Evolution of mantis shrimp telson armour and its role in ritualized fighting.

机构信息

Scripps Institution of Oceanography, Marine Biology Research Division, University of California, San Diego, La Jolla, CA 92093, USA.

出版信息

J R Soc Interface. 2019 Aug 30;16(157):20190203. doi: 10.1098/rsif.2019.0203. Epub 2019 Aug 28.

Abstract

Mantis shrimp possess both formidable weapons and impact-resistant armour that clash during ritualized combat. The telson is one of few biological structures known to withstand the repeated high impact forces of smashing mantis shrimp strikes, and it is hypothesized that this pairing of armour and weapon is associated with the evolution of telson sparring. We carried out a comparative analysis of telson impact mechanics across 15 mantis shrimp species to assess if the telsons of sparring species (i) are consistently specialized for impact-resistance, (ii) are more impact-resistant than those of non-sparring species, and (iii) have impact parameters that correlate with body size, and thereby useful for assessment. Our data from ball drop tests show that the telsons of all species function like a stiff spring that dissipates most of the impact energy, but none of the measured impact parameters are correlated with the occurrence of sparring behaviour. Impact parameters were correlated with body mass for only some species, suggesting that it is not broadly useful for size assessment during ritualized fighting. Contrary to expectation, sparring mantis shrimp do not appear to have coevolved telson armour that is more robust to impact than non-sparring species. Rather, telson structure is inherently impact-resistant.

摘要

螳螂虾拥有强大的武器和耐冲击的盔甲,这些盔甲在仪式化的战斗中会发生碰撞。尾节是少数已知能够承受螳螂虾反复重击的高强度冲击力量的生物结构之一,人们推测,这种盔甲和武器的组合与尾节搏击的进化有关。我们对 15 种螳螂虾物种的尾节冲击力学进行了比较分析,以评估搏击物种的尾节(i)是否始终专门用于耐冲击性,(ii)是否比非搏击物种更耐冲击,以及(iii)是否具有与身体大小相关的冲击参数,从而可用于评估。我们从球下落测试中获得的数据表明,所有物种的尾节都像一个坚硬的弹簧一样运作,消耗了大部分冲击能量,但没有一个测量的冲击参数与搏击行为的发生相关。仅对于某些物种,冲击参数与体重相关,这表明在仪式化战斗中,它对于大小评估并不是普遍有用的。与预期相反,搏击螳螂虾似乎并没有共同进化出比非搏击物种更能抵抗冲击的尾节盔甲。相反,尾节结构本身就具有耐冲击性。

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本文引用的文献

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Smashing mantis shrimp strategically impact shells. smashing 螳螂虾策略性地撞击贝壳。
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