首页> 外文期刊>Tissue and Cell >Ultrastructural autoradiographic and immunocytochemical analysis of setae formation and keratinization in the digital pads of the gecko Hemidactylus turcicus (Gekkonidae, Reptilia).
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Ultrastructural autoradiographic and immunocytochemical analysis of setae formation and keratinization in the digital pads of the gecko Hemidactylus turcicus (Gekkonidae, Reptilia).

机译:超壁放射自显影和免疫细胞化学分析,在壁虎半实皮Turcicus(Gekkonidae,Reptilia)的数字垫中,毛齿形成和角化。

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摘要

The modified subdigital scales of some lizards allow them to climb vertical surfaces. This is due to the action of millions of tiny setae present in the digital pads. Setae are mainly composed of beta-keratin which may have some modality of aggregation similar to that of barbs and barbules of feathers. Keratins and associated proteins are involved in the organization of setae. The formation of setae in the climbing pad lamellae of the gecko Hemidactylus turcicus has been analyzed under the electron microscope after injection of tritiated histidine and immunocytochemistry for a chick scale beta-keratin. Setae are made up of dense and pale filaments, both oriented along the longer axis of setae. Beta-keratin is present in the oberhautchen layer and in the growing setae which are highly modified oberhautchen cells. Most of the immunolabeling concentrated in the central part of setae. This cross-reactivity suggests that some epitopes in chick beta-keratin are also present in gecko setae. Four hours after injection of tritiated histidine, the labeling is localized over setae, in particular in the dense filaments and less in the pale filaments. Some labeling is also seen in the keratinaceous material present in the cytoplasm of clear cells, which are believed to mold setae. The present observations suggest that both beta-keratin and denser matrix proteins, possibly incorporating histidine, are packed into growing setae. These proteins may be mixed to form pale and dense filaments oriented along the longer axis of setae, a pattern resembling that of barb and barbule cells of feathers. The role of matrix material in the orientation of the deposited beta-keratin during setal outgrowth is discussed with the problem of barb and barbule differentiation in avian feathers.
机译:某些蜥蜴的改良亚数位标度使它们能够攀登垂直表面。这是由于数字键盘中存在数百万个微小的刚毛引起的。刚毛主要由β-角蛋白组成,其可能具有类似于倒钩和羽毛小桶的聚集方式。角蛋白和相关蛋白参与了刚毛的组织。注射tri化组氨酸和免疫细胞化学法后,在电子显微镜下分析了壁虎半球菌爬壁薄层中刚毛的形成,并对小鸡β-角蛋白进行了免疫细胞化学分析。刚毛由密集且苍白的细丝组成,它们均沿刚毛的较长轴定向。 β-角蛋白存在于Oberhautchen层和已高度修饰的Oberhautchen细胞生长的刚毛中。大多数免疫标记物集中在刚毛的中部。这种交叉反应表明壁虎科中也存在小鸡β-角蛋白中的某些表位。 injection化组氨酸注射后四小时,标记位于刚毛上,特别是在密集的细丝中,在淡色的丝中较少。在透明细胞的细胞质中存在的角蛋白材料中也看到了一些标记,据信它们会霉菌化。目前的观察结果表明,β-角蛋白和较稠密的基质蛋白(可能掺入了组氨酸)都被包装到正在生长的刚毛中。这些蛋白质可以混合形成苍白而密集的细丝,这些细丝沿着刚毛的长轴排列,这种图案类似于羽毛的倒钩和小球细胞。讨论了基质材料在凝结生长过程中在沉积的β-角蛋白取向中的作用,并讨论了禽羽毛中的倒钩和小球分化问题。

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