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利用X射线显微断层扫描技术对楔齿蜥(Sphenodon punctatus)的籽骨进行研究及其对鳞龙超目籽骨进化的意义

Sesamoid bones in tuatara (Sphenodon punctatus) investigated with X-ray microtomography, and implications for sesamoid evolution in Lepidosauria.

作者信息

Regnault Sophie, Hutchinson John R, Jones Marc E H

机构信息

Structure & Motion Lab, Department of Comparative Biomedical Sciences, The Royal Veterinary College, London, United Kingdom.

Department of Genetics and Evolution, School of Biological Sciences, The University of Adelaide, North Terrace, Adelaide, South Australia, 5005, Australia.

出版信息

J Morphol. 2017 Jan;278(1):62-72. doi: 10.1002/jmor.20619. Epub 2016 Nov 24.

Abstract

Sesamoids bones are small intra-tendinous (or ligamentous) ossifications found near joints and are often variable between individuals. Related bones, lunulae, are found within the menisci of certain joints. Several studies have described sesamoids and lunulae in lizards and their close relatives (Squamata) as potentially useful characters in phylogenetic analysis, but their status in the extant outgroup to Squamata, tuatara (Sphenodon), remains unclear. Sphenodon is the only living rhynchocephalian, but museum specimens are valuable and difficult to replace. Here, we use non-destructive X-ray microtomography to investigate the distribution of sesamoids and lunulae in 19 Sphenodon specimens and trace the evolution of these bones in Lepidosauria (Rhynchocephalia + Squamata). We find adult Sphenodon to possess a sesamoid and lunula complement different from any known squamate, but also some variation within Sphenodon specimens. The penultimate phalangeal sesamoids and tibial lunula appear to mineralize prior to skeletal maturity, followed by mineralization of a sesamoid between metatarsal I and the astragalocalcaneum (MTI-AC), the palmar sesamoids, and tibiofemoral lunulae around attainment of skeletal maturity. The tibial patella, ulnar, and plantar sesamoids mineralize late in maturity or variably. Ancestral state reconstruction indicates that the ulnar patella and tibiofemoral lunulae are synapomophies of Squamata, and the palmar sesamoid, tibial patella, tibial lunula, and MTI-AC may be synapomorphies of Lepidosauria. J. Morphol. 278:62-72, 2017. ©© 2016 Wiley Periodicals,Inc.

摘要

籽骨是在关节附近发现的小的肌腱内(或韧带内)骨化结构,个体之间往往存在差异。相关的半月形小骨则存在于某些关节的半月板内。多项研究已将蜥蜴及其近亲(有鳞目)中的籽骨和半月形小骨描述为系统发育分析中可能有用的特征,但它们在有鳞目的现存外类群喙头蜥(楔齿蜥属)中的情况仍不清楚。楔齿蜥是现存唯一的喙头目动物,但博物馆标本很珍贵且难以替代。在此,我们使用非破坏性X射线显微断层扫描技术来研究19个楔齿蜥标本中籽骨和半月形小骨的分布情况,并追溯这些骨骼在鳞龙超目(喙头目 + 有鳞目)中的演化过程。我们发现成年楔齿蜥拥有一套与任何已知有鳞目动物都不同的籽骨和半月形小骨组合,但楔齿蜥标本内部也存在一些差异。倒数第二指节籽骨和胫骨半月形小骨似乎在骨骼成熟之前就开始矿化,接着是第一跖骨与距跟骨之间(MTI - AC)的一块籽骨、掌侧籽骨以及在接近骨骼成熟时的胫股半月形小骨矿化。胫骨髌骨、尺侧和跖侧籽骨在成熟后期矿化或矿化情况不定。祖先状态重建表明,尺侧髌骨和胫股半月形小骨是有鳞目的共有衍征,而掌侧籽骨、胫骨髌骨、胫骨半月形小骨和MTI - AC可能是鳞龙超目的共有衍征。《形态学杂志》278:62 - 72,2017年。©© 2016威利期刊公司

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f784/6680162/66b195ee116e/JMOR-278-62-g001.jpg

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