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变色龙科指下和尾下的微纹饰——一项比较研究。

Subdigital and subcaudal microornamentation in Chamaeleonidae--a comparative study.

作者信息

Spinner Marlene, Westhoff Guido, Gorb Stanislav N

机构信息

Institute of Zoology, University of Bonn, Poppelsdorfer Schloss, Meckenheimer Allee 169, Bonn, Germany.

出版信息

J Morphol. 2013 Jun;274(6):713-23. doi: 10.1002/jmor.20137. Epub 2013 Mar 18.

DOI:10.1002/jmor.20137
PMID:23504635
Abstract

Locomotion on horizontal and vertical substrates requires effective attachment systems. In three clades of arboreal and rupicolous Iguanidae, Gekkota and Scincidae adhesive systems consisting of microscopic hair-like structures (setae) have been evolved independently. Also the substrate contacting sites on toes and tails of chameleons (Chamaeleonidae) are covered with setae. In the present comparative scanning electron microscopy study, we show that representatives from the chamaeleonid genera Calumma, Chamaeleo, Furcifer, and Trioceros feature highly developed setae that are species-specific and similar on their feet and tail. These 10 μm long, unbranched setae rather resemble those in anoline and scincid lizards than the larger and branched setae of certain gecko species. In contrast to the thin triangular tips of other lizards, all examined species of the genera Furcifer and Calumma and one of the five examined species of the genus Trioceros have spatulate tips. All other examined species of genera Trioceros and Chamaeleo bear setae with narrowed, fibrous tips. Unlike the setae of other lizards, chamaeleonid setal tips do not show any orientation along the axis of the toes, but they are flexible to bend in any direction. With these differences, the chameleon's unique microstructures on the zygodactylous feet and prehensile tail rather increase friction for arboreal locomotion than being a shear-induced adhesive system as setal pads of other lizards.

摘要

在水平和垂直基质上移动需要有效的附着系统。在树栖和岩栖的三个鬣蜥科、壁虎科和石龙子科分支中,由微小毛发状结构(刚毛)组成的附着系统是独立进化而来的。变色龙(避役科)脚趾和尾巴上与基质接触的部位也覆盖着刚毛。在本次比较扫描电子显微镜研究中,我们发现来自避役属、避役属、饰纹避役属和三角避役属的代表具有高度发达的刚毛,这些刚毛具有物种特异性,并且在它们的足部和尾巴上相似。这些10微米长、无分支的刚毛与安乐蜥和石龙子蜥蜴的刚毛更为相似,而不像某些壁虎物种的较大且有分支的刚毛。与其他蜥蜴细三角形的尖端不同,饰纹避役属和避役属的所有被检查物种以及三角避役属五个被检查物种中的一个具有铲状尖端。三角避役属和避役属的所有其他被检查物种的刚毛尖端狭窄且呈纤维状。与其他蜥蜴的刚毛不同,避役科刚毛尖端在脚趾轴向上没有任何取向,但它们可以向任何方向灵活弯曲。有了这些差异,变色龙对趾型足部和抓握性尾巴上独特的微观结构与其说是像其他蜥蜴的刚毛垫那样的剪切诱导附着系统,不如说是增加了在树栖移动时的摩擦力。

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引用本文的文献

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Morphological studies of the toe pads of the rock frog, Staurois parvus (family: Ranidae) and their relevance to the development of new biomimetically inspired reversible adhesives.小岩蛙(Staurois parvus,蛙科)趾垫的形态学研究及其与新型仿生可逆粘合剂开发的相关性。
Interface Focus. 2015 Feb 6;5(1):20140036. doi: 10.1098/rsfs.2014.0036.
2
Subdigital setae of chameleon feet: friction-enhancing microstructures for a wide range of substrate roughness.变色龙足部的指下刚毛:适用于多种粗糙度基底的摩擦增强微结构
Sci Rep. 2014 Jun 27;4:5481. doi: 10.1038/srep05481.
3
Experimental evidence for friction-enhancing integumentary modifications of chameleons and associated functional and evolutionary implications.
实验证据表明变色龙的表皮具有增强摩擦的特性,并具有相关的功能和进化意义。
Proc Biol Sci. 2013 Nov 27;281(1775):20132334. doi: 10.1098/rspb.2013.2334. Print 2014 Jan 22.