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侏罗纪晚期汝拉山脉(瑞士和法国)的真鳄龟类龟鳖目动物的分类学综述。

A taxonomic review of the Late Jurassic eucryptodiran turtles from the Jura Mountains (Switzerland and France).

机构信息

Section d'archéologie et paléontologie, Office de la culture, République et Canton du Jura , Porrentruy , Switzerland ; UMR CNRS 7207 MNHN UPMC, Muséum national d'histoire naturelle , Paris , France.

Section d'archéologie et paléontologie, Office de la culture, République et Canton du Jura , Porrentruy , Switzerland.

出版信息

PeerJ. 2014 May 13;2:e369. doi: 10.7717/peerj.369. eCollection 2014.

Abstract

Background. Eucryptodiran turtles from the Late Jurassic (mainly Kimmeridgian) deposits of the Jura Mountains (Switzerland and France) are among the earliest named species traditionally referred to the Plesiochelyidae, Thalassemydidae, and Eurysternidae. As such, they are a reference for the study of Late Jurassic eucryptodires at the European scale. Fifteen species and four genera have been typified based on material from the Late Jurassic of the Jura Mountains. In the past 50 years, diverging taxonomic reassessments have been proposed for these turtles with little agreement in sight. In addition, there has been a shift of focus from shell to cranial anatomy in the past forty years, although most of these species are only represented by shell material. As a result, the taxonomic status of many of these 15 species remains ambiguous, which prevents comprehensive comparison of Late Jurassic turtle assemblages throughout Europe and hinders description of new discoveries, such as the new assemblage recently unearthed in the vicinity of Porrentruy, Switzerland. Methods. An exhaustive reassessment of the available material provides new insights into the comparative anatomy of these turtles. The taxonomic status of each of the 15 species typified based on material from the Late Jurassic of the Jura Mountains is evaluated. New diagnoses and general descriptions are provided for each valid taxon. Results. Six out of the 15 available species names are recognized as valid: Plesiochelys etalloni, Craspedochelys picteti, Craspedochelys jaccardi, Tropidemys langii, Thalassemys hugii, and 'Thalassemys' moseri. The intraspecific variability of the shell of P. etalloni is discussed based on a sample of about 30 relatively complete specimens from Solothurn, Switzerland. New characters are proposed to differentiate P. etalloni, C. picteti, and C. jaccardi, therefore rejecting the previously proposed synonymy of these forms. Based partly on previously undescribed specimens, the plastral morphology of Th. hugii is redescribed. The presence of lateral plastral fontanelles is notably revealed in this species, which calls into question the traditional definitions of the Thalassemydidae and Eurysternidae. Based on these new data, Eurysternum ignoratum is considered a junior synonym of Th. hugii. The Eurysternidae are therefore only represented by Solnhofia parsonsi in the Late Jurassic of the Jura Mountains. Finally, 'Th.' moseri is recognized as a valid species, although a referral to the genus Thalassemys is refuted.

摘要

背景

来自侏罗纪晚期(主要是 Kimmeridgian 期)汝拉山脉(瑞士和法国)的 Eucryptodiran 龟类是最早被命名的物种之一,传统上被归入 Plesiochelyidae、Thalassemydidae 和 Eurysternidae。因此,它们是研究欧洲侏罗纪晚期 Eucryptodires 的参考。根据汝拉山脉侏罗纪晚期的材料,已经确定了 15 个物种和 4 个属。在过去的 50 年里,对这些龟类进行了分歧的分类学重新评估,但几乎没有达成一致意见。此外,过去四十年的研究重点从壳转移到了颅骨解剖学,但这些物种中的大多数仅以壳材料为代表。因此,这些 15 个物种中的许多种的分类地位仍然不明确,这阻碍了对整个欧洲侏罗纪龟类组合的综合比较,并阻碍了对最近在瑞士蓬特吕伊地区新发现的新组合的描述。

方法

对现有材料的详尽重新评估为这些龟类的比较解剖学提供了新的见解。评估了根据汝拉山脉侏罗纪晚期的材料确定的 15 个物种中的每一个的分类地位。为每个有效分类群提供了新的诊断和一般描述。

结果

15 个可用物种名称中有 6 个被认为是有效的:Plesiochelys etalloni、Craspedochelys picteti、Craspedochelys jaccardi、Tropidemys langii、Thalassemys hugii 和 'Thalassemys' moseri。讨论了瑞士索洛图恩约 30 个相对完整标本的壳内种间变异性。提出了新的特征来区分 P. etalloni、C. picteti 和 C. jaccardi,因此拒绝了这些形态以前被认为是同义词的说法。部分基于以前未描述的标本,重新描述了 Th. hugii 的腹板形态。在这个物种中明显揭示了侧腹板囟门的存在,这对 Thalassemydidae 和 Eurysternidae 的传统定义提出了质疑。根据这些新数据,Eurysternum ignoratum 被认为是 Th. hugii 的一个次同义词。因此,侏罗纪晚期汝拉山脉的 Eurysternidae 仅由 Solnhofia parsonsi 代表。最后,'Th.' moseri 被认为是一个有效的物种,尽管将其归入 Thalassemys 属的说法被驳斥。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0734/4034614/d55ed702566f/peerj-02-369-g001.jpg

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