The bigger you are, the weaker you are: Multispecies evidence for the weakening combatant hypothesis

IF 1.2 4区 生物学 Q3 MARINE & FRESHWATER BIOLOGY Journal of Crustacean Biology Pub Date : 2023-12-01 DOI:10.1093/jcbiol/ruad075
J. Levinton
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Abstract

As fiddler crabs increase in size, closing force weakens proportionally because claw growth is not isometric. As a result, mechanical advantage decreases at the tip with increasing claw length. Closing force at an interior tubercle is greater at the tip, and a previous study of two species claimed evidence for compensation by relative movement of tubercles toward the hinge as size increases. I reconsidered this hypothesis with a biometric analysis of eight species from five genera and all three major biogeographic regions. I tested test two null hypotheses: 1) as claw length increases, mechanical advantage did not increase at the tubercle, relative to the claw tip, and 2) closing force did not increase at the tubercle, relative to the claw tip, as claw size increased. Both null hypotheses are largely supported, which in turn supports the weakening combatant hypothesis. In all cases, log force as a function of log claw length at an interior tubercle is 1.40, which is less than 2, the slope value expected if there was complete compensation. This is only slightly greater than the slope at the dactyl tip, which is 1.21. Thus, as a fiddler crab gets larger, with an incremental increase of claw length its closing force proportionally decreases, supporting the idea of a weakening combatant. But it gains a large showy claw with relatively narrow pincers and relatively less mass required to swing around while waving. This is indeed a beautiful weapon, but not for sheer closing force.
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你越大,你就越弱:削弱战斗力假说的多物种证据
随着大闸蟹体型的增大,闭合力也会相应减弱,因为蟹爪的增长不是等距的。因此,随着爪子长度的增加,顶端的机械优势会减弱。内部小瘤的闭合力在顶端更大,以前对两个物种的研究声称,有证据表明,随着体型的增大,小瘤会向铰链方向相对移动,从而起到补偿作用。我重新考虑了这一假设,对来自五个属和所有三个主要生物地理区域的八个物种进行了生物计量分析。我测试了两个零假设:1)随着爪子长度的增加,相对于爪尖而言,小结处的机械优势并没有增加;2)随着爪子尺寸的增加,相对于爪尖而言,小结处的闭合力并没有增加。这两个零假设都得到了很大程度的支持,这反过来又支持了战斗力减弱的假设。在所有情况下,内部小节处的对数力与对数爪长的函数关系为 1.40,小于 2,即如果存在完全补偿时的预期斜率值。这个斜率仅略大于双爪顶端的斜率,即 1.21。因此,当大闸蟹体型变大时,随着蟹爪长度的增加,其闭合力也会成正比地减小,这支持了战斗力减弱的观点。但是,它获得了一个炫耀性的大钳子,钳子相对较窄,挥舞时所需的质量相对较小。这确实是一种漂亮的武器,但不是纯粹的闭合力。
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来源期刊
Journal of Crustacean Biology
Journal of Crustacean Biology 生物-海洋与淡水生物学
CiteScore
2.10
自引率
9.10%
发文量
66
审稿时长
6-12 weeks
期刊介绍: The Journal of Crustacean Biology is the official journal of The Crustacean Society, publishing peer-reviewed research on all aspects of crustacean biology and other marine arthropods. Papers are published in English only, but abstracts or summaries in French, German, Portuguese, or Spanish may be added when appropriate.
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