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首页> 外文期刊>Copeia >Skeletal Anatomy of the Bigeye Sand Tiger Shark, Odontaspis noronhai (Lamniformes: Odontaspididae), and Its Implications for Lamniform Phylogeny, Taxonomy, and Conservation Biology
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Skeletal Anatomy of the Bigeye Sand Tiger Shark, Odontaspis noronhai (Lamniformes: Odontaspididae), and Its Implications for Lamniform Phylogeny, Taxonomy, and Conservation Biology

机译:大眼砂虎鲨,Odontaspis Noronhai(Lamniformes:Odontaspididae)的骨骼解剖学,以及对柳叶草发生,分类和保护生物学的影响及其影响

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摘要

Lamniformes (Chondrichthyes: Elasmobranchii) is a group of sharks that consists of 15 extant species with a wide range of morphological diversity. The most rarely captured lamniform is Odontaspis noronhai, and many aspects of its biology remain unknown to date. In this study, the skeletal anatomy of a previously described specimen of O. noronhai was examined using computed tomography. The new skeletal data were then added to a previously published morphologybased character matrix to conduct a new phylogenetic analysis of the Lamniformes. Our phylogenetic study strongly suggests non-monophyly of Odontaspididae, that traditionally consisted of Carcharias taurus, O. ferox, and O. noronhai. Thus, the family Carchariidae is formally resurrected for the genus Carcharias to separate it from the family Odontaspididae sensu stricto for Odontaspis. The overall topology of our phylogenetic trees is similar to that of previously published morphology-based trees and drastically different from the tree topology generally attained by molecular data that cluster Alopias, Megachasma, Odontaspis, and Pseudocarcharias together as a separate clade. The major topological discrepancy between molecular and morphological trees may be attributed to unconventionally asynchronous rates between morphological and molecular evolution, at least in certain species within the Lamniformes, along with likely manifestation of mosaic evolution. The recognition of the family Carchariidae is important to conservation biology, because the extinction of C. taurus would not only mean the elimination of the genus Carcharlas, but also the entire family Carchariidae. Our study demonstrates the importance of the integration of both morphological and molecular information to understand organismal evolution.
机译:Lamniformes(Chondrichthyes:Elasmobranchii)是一组鲨鱼,由15种具有广泛形态多样性的现存物种组成。最少捕获的Lamniform是Odontaspis Noronhai,其生物学的许多方面迄今为止仍然不为人知。在该研究中,使用计算机断层扫描检查了O. Noronhah的先前描述的样本的骨骼解剖。然后将新的骨骼数据加入到先前公布的形态学基质基质中,以进行Lamniformes的新系统发育分析。我们的系统发育研究强烈表明Odontaspididae的非单层,传统上由Carcharias Taurus,O.Ferox和O. Noronhai组成。因此,家庭Carchariidae被正式复活用于Carcharias,将其与Odontaspis的odontaspididae Sensustomstoms分开。系统的整体拓扑结构与先前公布的基于形态的树木的拓扑相似,并且与群体数据,甲状腺素,odontaspis和伪厘厘和作为单独的人的分子数据一起获得的树拓种繁重地不同。分子和形态学树之间的主要拓扑差异可以归因于形态学和分子演化之间的非常多种异步速率,至少在兰姆条内的某些物种中,以及可能的锦缎进化的情况。识别家庭的Carchariidae对保护生物学很重要,因为C.金牛座的灭绝不仅意味着消除Carcharlas属,而且是整个家庭的Carchariidae。我们的研究表明了形态学和分子信息整合的重要性,以了解有机体演变。

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    《Copeia》 |2019年第4期|共21页
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  • 正文语种 eng
  • 中图分类 鱼纲;
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