慢蠕虫蜥蜴 Anguis fragilis(Anguidae,金牛目,爬行动物科)的皮肤结构,重点是与动物运动有关的表皮微刺纹

IF 1.1 4区 生物学 Q4 ANATOMY & MORPHOLOGY
Acta Zoologica Pub Date : 2024-02-26 DOI:10.1111/azo.12497
Antonio Bonfitto, Maria Roberta Randi, Lorenzo Alibardi
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引用次数: 0

摘要

慢蠕虫蜥 Anguis fragilis(蜥形目、金牛科、爬行纲)的皮肤结构,重点是与动物运动有关的表皮微丝(斯德哥尔摩动物学报)。通过组织学、免疫荧光、扫描和透射电子显微镜,研究了无肢蜥蜴 Anguis fragilis 的皮肤结构和表皮微丝。鳞片呈三角形至梯形,重叠交错,形成光滑的表面,并由骨膜加固。表皮显示出一层较薄的奥伯豪森层与一层较厚的β层合并,其中含有角质β蛋白。扫描电子显微镜检查发现,光滑的表面由瓦片状的奥伯豪森细胞图案组成,周缘不规则,形成一个交错的表面。仅在头部鳞片上观察到直径为 15-20 μm 的盘状感觉器官,这些鳞片最先感知环境并接触地面。在躯干和尾部腹侧鳞片的奥伯豪森细胞的尾部周围,有许多奥伯豪森小齿,即直径约 0.2-0.3 μm 的角质刺。这种微观结构可能决定了慢速蠕虫在横向起伏和向前运动时对基质的抓取和摩擦力的增加。TEM 观察结果显示,奥伯豪森细胞的短锯齿状突起稀疏,这些突起在很大程度上与底层的贝塔细胞融为一体。总之,慢速蠕虫的鳞片表面使这种无肢蜥蜴有效地适应了环境和生活方式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Skin structure of the slow worm lizard Anguis fragilis (Anguidae, Sauria, Reptilia) with emphasis on the epidermal micro-ornamentation in relation to the animal movements
Skin structure of the slow worm lizard Anguis fragilis (Anguidae, Sauria, Reptilia) with emphasis on the epidermal micro-ornamentation in relation to the animal movements (Acta Zoologica, Stockholm). The structure of the skin and superficial micro-ornamentation in the slow worm Anguis fragilis, a limbless lizard with a fossorial activity, was examined using histology, immunofluorescence, scanning and transmission electron microscopy. The scales, with a triangular to trapezoidal shape, are very overlapped and interlocked to form a smooth surface and are reinforced by osteoderms. The epidermis shows a thin Oberhautchen layer merged with a thicker beta-layer that contains corneous beta-proteins. The SEM survey detects a smooth surface made of tile-like patterned Oberhautchen cells with irregular perimeters that form an interlocking surface. Disk-like sensory organs of 15–20 μm diameter are observed only on the head scales, the first to sense the environment and contact the ground. Numerous Oberhautchen denticles, namely corneous thorns of about 0.2–0.3 μm, adorn the caudally directed perimeter of Oberhautchen cells in the ventral scales of the trunk and tail. This microstructure may determine gripping and increased friction with the substrate during the lateral undulating and forward movements of the slow worm. TEM observations reveal sparse short serrated protrusions of Oberhautchen cells that are largely merged with the underlying beta-cells. Altogether, the scale surface of the slow worm efficiently suites this limbless lizard to its environment and lifestyle.
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来源期刊
Acta Zoologica
Acta Zoologica 生物-动物学
CiteScore
2.90
自引率
8.30%
发文量
35
审稿时长
>12 weeks
期刊介绍: Published regularly since 1920, Acta Zoologica has retained its position as one of the world''s leading journals in the field of animal organization, development, structure and function. Each issue publishes original research of interest to zoologists and physiologists worldwide, in the field of animal structure (from the cellular to the organismic level) and development with emphasis on functional, comparative and phylogenetic aspects. Occasional review articles are also published, as well as book reviews.
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