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首页> 外文期刊>Journal of Morphology >Subdigital and subcaudal microornamentation in chamaeleonidae-A comparative study
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Subdigital and subcaudal microornamentation in chamaeleonidae-A comparative study

机译:蛛形亚科的亚指状和尾下微装饰-比较研究

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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.
机译:在水平和垂直基材上的移动需要有效的附着系统。在三个进化树中,由微观的毛状结构(刚毛)组成的Gekkota和Scincidae粘着系统分别是树栖和科。变色龙(Chamaeleonidae)的脚趾和尾巴上的底物接触部位也被刚毛覆盖。在目前的比较型扫描电子显微镜研究中,我们显示了来自Chaumeleonid属Calumma,Chamaeleo,Furcifer和Trioceros的代表具有高度发达的刚毛,这些刚毛具有物种特异性且在它们的脚和尾巴上相似。与某些壁虎物种的较大和分支的刚毛相比,这些10μm长的无支链刚毛更像是碱和蜥蜴蜥蜴。与其他蜥蜴的细三角形尖端相反,Furcifer和Calumma属的所有受检物种以及Trioceros属的五个受检物种之一均具结舌。 Trioceros和Chamaeleo属的所有其他已检查物种有刚毛变窄的刚毛的刚毛。与其他蜥蜴的刚毛不同,chamaeleonid的刚毛尖端没有沿着脚趾轴显示任何方向,但是可以灵活地向任何方向弯曲。由于存在这些差异,变色龙在合趾甲脚和前尾巴尾部上独特的微观结构比树突作为其他蜥蜴的固定垫的剪切诱导粘合系统更能增加树木运动的摩擦力。

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