壁虎半杆的多样性和发育。

IF 1.8 3区 医学 Q2 ANATOMY & MORPHOLOGY
Aaron H Griffing, Daniel J Paluh, Jonathan C DeBoer, Juan D Daza, Tony Gamble, Anthony P Russell, Aaron M Bauer
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引用次数: 0

摘要

在鳞片动物中,已知半圆体进化迅速,并表现出不同的形状、大小和纹饰。鸣叫壁虎在壁虎中是独特的,在它们的半腹体中表现出矿化结构(半束)。我们在这里描述了每一个目前公认的亚里斯多德物种的半骨的大体形态,记录了半骨的组织学,并报告了半骨的发育。我们确认在所有目前公认的物种中都存在半条虫,并证明三种不同的形态对应于该属的三个假定的分支。组织学显示,半杆状骨表面类似于软骨样骨,由矿化致密结缔组织组成,表皮覆盖薄层,矿化基质内嵌有alcian阳性细胞。此外,我们证明了半束骨直到性成熟后才开始发育,并且半束骨的长度与体型成等距。我们假设马兜铃的半棘是通过过变形发育的,这种现象也表现在该属的颅骨形态中。此外,我们推测这些神秘结构的功能意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diversity and development of the hemibacula of croaking geckos (Sphaerodactylidae: Aristelliger).

Among squamates, hemipenes are known to evolve rapidly and exhibit diverse shapes, sizes, and ornamentation. Croaking geckos (Aristelliger) are unique among geckos in exhibiting mineralized structures (hemibacula) in their hemipenes. We here describe the gross morphology of the hemibacula of each currently recognized species of Aristelliger, document hemibacular histology, and report on hemibaculum development. We confirm the presence of hemibacula in all currently recognized species and demonstrate that three distinct morphologies correspond to three putative clades in the genus. Histology revealed that hemibacula are superficially similar to chondroid bone and composed of mineralized dense connective tissue covered in a thin layer of epidermis with alcian-positive cells embedded within a mineralized matrix. Additionally, we demonstrate that hemibacula do not develop until past the onset of sexual maturity and that hemibaculum length scales isometrically with body size. We hypothesize that hemibacula of Aristelliger develop via peramorphosis, a phenomenon also expressed in the cranial morphology of this genus. Additionally, we speculate on the functional significance of these enigmatic structures.

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来源期刊
Journal of Anatomy
Journal of Anatomy 医学-解剖学与形态学
CiteScore
4.80
自引率
8.30%
发文量
183
审稿时长
4-8 weeks
期刊介绍: Journal of Anatomy is an international peer-reviewed journal sponsored by the Anatomical Society. The journal publishes original papers, invited review articles and book reviews. Its main focus is to understand anatomy through an analysis of structure, function, development and evolution. Priority will be given to studies of that clearly articulate their relevance to the anatomical community. Focal areas include: experimental studies, contributions based on molecular and cell biology and on the application of modern imaging techniques and papers with novel methods or synthetic perspective on an anatomical system. Studies that are essentially descriptive anatomy are appropriate only if they communicate clearly a broader functional or evolutionary significance. You must clearly state the broader implications of your work in the abstract. We particularly welcome submissions in the following areas: Cell biology and tissue architecture Comparative functional morphology Developmental biology Evolutionary developmental biology Evolutionary morphology Functional human anatomy Integrative vertebrate paleontology Methodological innovations in anatomical research Musculoskeletal system Neuroanatomy and neurodegeneration Significant advances in anatomical education.
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