What's the point? The functional role of claws in pad-bearing taxa (Gekkota: Diplodactylidae).

IF 3.5
Proceedings. Biological sciences Pub Date : 2025-09-01 Epub Date: 2025-09-03 DOI:10.1098/rspb.2025.1362
Rishab Rajan Pillai, Jendrian Riedel, Wytamma Wirth, Slade Allen-Ankins, Eric Nordberg, Will Edwards, Lin Schwarzkopf
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Abstract

Morphological adaptations facilitate effective movement within habitats. Claws are among the most common adaptations enabling organisms to use inclined and vertical surfaces. However, some taxa have evolved adhesive pads in addition to claws, with claws suggested to be more effective at gripping coarse surfaces, while pads attach better to fine-grained surfaces. Using test surfaces that represented the range of surface roughness used by six species of diplodactylid geckos in nature, we quantified the role of claws and pads acting together, and of pads alone. We examined two functional traits, attachment (on inclines, 45° and vertical surfaces, 90°) and clinging ability (on inclines only). Claws were critical to attachment on vertical surfaces, and attachment declined linearly with decreasing surface roughness. Although attachment was lowest on fine-grained surfaces, this was where claws had the greatest functional contribution. Clinging ability also declined linearly with decreasing surface roughness, where claws played an additive role. Our study highlights novel results describing the function of gecko adhesive systems on different surfaces and suggests a clade-specific interaction of claws and pads. Specifically, we highlight that pads alone can be capable of attachment on rough surfaces, with claws contributing more on fine-grained surfaces.

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有什么意义?爪在垫类动物中的功能作用(虎科目:梁足科)。
形态上的适应有助于在栖息地内有效地移动。爪子是最常见的适应之一,使生物能够使用倾斜和垂直的表面。然而,一些分类群除了爪子外还进化出了粘着的脚垫,爪子更能有效地抓住粗糙的表面,而脚垫更能附着在细颗粒的表面上。使用代表自然界六种双趾壁虎使用的表面粗糙度范围的测试表面,我们量化了爪子和脚垫共同作用以及脚垫单独作用的作用。我们研究了两个功能特征,附着(在倾斜的45°表面和垂直的90°表面)和附着能力(仅在倾斜的表面)。爪对垂直表面的附着至关重要,随着表面粗糙度的减小,附着量呈线性下降。尽管细颗粒表面的附着力最低,但这是爪子发挥最大功能的地方。附着能力也随表面粗糙度的降低而线性下降,其中爪起附加作用。我们的研究突出了描述壁虎粘附系统在不同表面上的功能的新结果,并提出了爪和垫的进化枝特异性相互作用。具体来说,我们强调,脚垫本身可以附着在粗糙的表面上,而爪子在细颗粒表面上的作用更大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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