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多种因素影响甲螨(蜱螨目)的爪特征。

Multiple factors influence claw characteristics in oribatid mites (Acari).

机构信息

Institute of Biology, University of Graz, Universitaetsplatz 2, 8010, Graz, Austria.

出版信息

Sci Rep. 2024 Apr 2;14(1):7687. doi: 10.1038/s41598-024-58214-4.

Abstract

Claws, as nature's multifaceted instruments, play fundamental roles across the animal kingdom, aiding in prey capture and enabling movement across diverse terrains. Claw features often reflect the ecologies of the respective taxa and thus can provide important insights into the different lifestyles. This study explores the claw morphology of monodactylous oribatid mites through geometric morphometrics, analyzing 559 specimens from 49 species across various ecosystems. The research identifies distinct claw characteristics associated with specific habitats, revealing a significant correlation between claw morphology and the mites' environmental adaptations. Littoral mites exhibit notably larger claws compared to terrestrial counterparts, with aquatic and semiaquatic species presenting intermediate traits. The analysis shows an inverse relationship between claw curvature and sharpness, differing from patterns observed in larger animals. A trend of increasing claw bluntness with body size in terrestrial mites echoes biomechanical constraints seen in larger species. The study also observes consistent claw shapes within oribatid superfamilies, suggesting a potential, albeit muted, phylogenetic influence alongside environmental factors. These findings reveal how ecological, evolutionary, and functional aspects influence claw morphology in oribatid mites, enhancing our knowledge of arthropod biology and potentially inspiring biomimetic advances in material science and engineering.

摘要

爪,作为自然界多面的工具,在动物王国中扮演着基本的角色,帮助捕食者捕获猎物,并使它们能够在不同的地形中移动。爪的特征通常反映了各自分类群的生态环境,因此可以为不同的生活方式提供重要的见解。本研究通过几何形态测量学探索单爪的甲螨的爪形态,分析了来自 49 个不同生态系统的 559 个标本。研究确定了与特定栖息地相关的独特的爪特征,揭示了爪形态与螨虫环境适应之间的显著相关性。滨水螨的爪明显大于陆地螨,而水生和半水生物种则具有中间特征。分析表明,爪的曲率和锋利度之间存在反比关系,这与在较大动物中观察到的模式不同。陆地螨的爪变钝与体型呈正相关,这反映了在较大物种中观察到的生物力学限制。该研究还观察到甲螨超科内一致的爪形状,表明在环境因素之外,可能存在但较弱的系统发育影响。这些发现揭示了生态、进化和功能方面如何影响甲螨的爪形态,增强了我们对节肢动物生物学的认识,并可能为材料科学和工程领域的仿生学进步提供启示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68ba/10985006/36ef7f246582/41598_2024_58214_Fig1_HTML.jpg

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