Microscopic and ultrastructural observations on the regenerating scales of the lizard Podarcis muralis clarify the origin of the micro-ornamentation.

IF 2.5 3区 生物学 Q3 CELL BIOLOGY
Protoplasma Pub Date : 2025-07-01 Epub Date: 2025-02-10 DOI:10.1007/s00709-025-02040-6
A Bonfitto, R Randi, M Ciubotaru, L Alibardi
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Abstract

The present study conducted using immunofluorescence, scanning electron microscopy, and transmission electron microscopy aims to determine the origin of the lamellated pattern and of the micro-ornamentation formed in tail scales of the lacertid lizard Podarcis muralis. Regenerating scales shows the typical formation of all the epidermal layers of lizard epidermis, including clear and Oberhautchen layers. The latter initiates the accumulation of hard corneous material containing corneous beta proteins (CBPs) that determine a tension with the overlaying softer clear layer containing mainly intermediate filaments of keratins (IFKs). The two layers, initially joined by numerous desmosomes, are later displaced one from the other with the growth of regenerating scales, forming a slanted surface as observed under transmission electron microscopy (TEM). At the beginning of scale regeneration, the slanted tips form an irregular lamellated pattern on the surface of Oberhautchen cells, appearing as crests or waves under scanning electron microscopy (SEM). In the following scale differentiation, growth, and shedding of molt, the irregular crests form a more ordered and parallel microsculptured and micro-ornamentation pattern when Oberhautchen and beta-cells merge one to another and give rise to a mature beta-layer. Hard CBP-based corneous material and electron-dense materials of unknown composition together with IFKs are accumulated in the slanted surface of the differentiating Oberhautchen cells. During scale growth, the Oberhautchen surface matures into a jig-saw outline that gives rise to the lamellated pattern of mature micro-ornamentation. The study suggests that complex micro-ornamentation patterns in other lizard species can also vary during scale formation, in development, growth, or regeneration.

对壁画足蜥再生鳞片的显微和超微结构观察阐明了微纹饰的起源。
本研究采用免疫荧光、扫描电镜和透射电镜技术,旨在确定斑蜥尾鳞上的片状图案和微纹饰的起源。再生鳞片显示了蜥蜴表皮所有表皮层的典型形成,包括透明层和奥伯豪臣层。后者引发含有角质层β蛋白(CBPs)的硬角质层的积累,CBPs与覆盖的主要含有中间角蛋白细丝(ifk)的柔软透明层之间的张力。这两层,最初由许多桥粒连接,后来随着再生鳞片的生长而相互移位,形成一个倾斜的表面,在透射电子显微镜(TEM)下观察到。在尺度再生开始时,倾斜的尖端在奥伯豪臣细胞表面形成不规则的片状图案,在扫描电镜下表现为波峰或波状。在接下来的鳞片分化、生长和蜕皮过程中,当Oberhautchen细胞和β细胞相互融合并形成成熟的β细胞层时,不规则的冠状物形成了更有序和平行的微雕刻和微纹饰图案。在正在分化的奥伯豪肯细胞的斜面上,聚集了以硬cbp为基础的角膜物质和未知成分的电子致密物质以及ifk。在鳞片生长过程中,奥伯豪琴表面成熟为锯齿形轮廓,形成成熟微装饰的层状图案。该研究表明,在其他蜥蜴物种中,复杂的微纹饰模式在鳞片形成、发育、生长或再生过程中也会发生变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Protoplasma
Protoplasma 生物-细胞生物学
CiteScore
6.60
自引率
6.90%
发文量
99
审稿时长
4-8 weeks
期刊介绍: Protoplasma publishes original papers, short communications and review articles which are of interest to cell biology in all its scientific and applied aspects. We seek contributions dealing with plants and animals but also prokaryotes, protists and fungi, from the following fields: cell biology of both single and multicellular organisms molecular cytology the cell cycle membrane biology including biogenesis, dynamics, energetics and electrophysiology inter- and intracellular transport the cytoskeleton organelles experimental and quantitative ultrastructure cyto- and histochemistry Further, conceptual contributions such as new models or discoveries at the cutting edge of cell biology research will be published under the headings "New Ideas in Cell Biology".
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