首页> 外文期刊>Zoological Journal of the Linnean Society >Early fossils illuminate character evolution and interrelationships of Lampridiformes (Teleostei, Acanthomorpha)
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Early fossils illuminate character evolution and interrelationships of Lampridiformes (Teleostei, Acanthomorpha)

机译:早期的化石阐明了羊眼兽(Teleostei,Acanthomorpha)的性状进化和相互关系。

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摘要

Lampridiformes is a peculiar clade of pelagic marine acanthomorph (spiny-rayed) teleosts. Its phylogenetic position remains ambiguous, and varies depending on the type of data (morphological or molecular) used to infer interrelationships. Because the extreme morphological specializations of lampridiforms may have overwritten the ancestral features of the group with a bearing on its relationships, the inclusion of fossils that exhibit primitive character state combinations for the group as a whole is vital in establishing its phylogenetic position. Therefore, we present an osteological data set of extant (ten taxa) and fossil (14 taxa) acanthomorphs, including early Late Cretaceous taxa for which a close relationship with extant Lampridifonnes has been suggested: tAipichthyoidea, Wharmacichthyidae, and -Tycnosteroididae. We find that all three taxa plus Lampridiformes form a clade that we call Lampridomorpha. Under this hypothesis, -tAipichthyoidea is paraphyletic. The inclusion of fossils in the analysis changes the topology, highlighting their critical importance in phylogenetic studies of morphological characters. When fossils are included, Lampridomorpha is sister to Euacanthomorpha (all other extant acanthomorphs), concurring with most previous anatomical studies, but conflicting with most molecular results. Lampridomorpha as a whole was a major component of the earliest acantlaomorpla faunas, notably in the Cenomanian.
机译:Lampridiformes是远洋海洋棘鱼(棘刺射线)硬骨鱼的特殊进化枝。它的系统发育位置仍然是模棱两可的,并且根据用来推断相互关系的数据类型(形态或分子)而有所不同。由于Lampridiforms的极端形态学特质可能已经影响了该群体的祖先特征而影响了它们之间的关系,因此,包含表现出整个群体原始特征状态组合的化石对于确定其系统发育位置至关重要。因此,我们提出了一个现存的(十个分类单元)和化石(十四个分类单元)棘皮动物​​的骨科学数据集,其中包括早白垩纪的分类单元,其中提出了与现存的灯盏花科密切的联系:tAipichthyoidea,Wharmacichthyidae和-Tycnosteroididae。我们发现所有三个类群加上Lampridiformes形成了一个进化枝,我们称为Lampridomorpha。在这种假设下,-tAipichthyoidea是共生的。分析中包含的化石改变了拓扑结构,突显了它们在形态特征的系统发育研究中的至关重要性。如果包括化石,则兰rid蝶是Euacanthomorpha(所有其他现存的棘can蝶)的姊妹,与大多数先前的解剖学研究一致,但与大多数分子结果相矛盾。整体而言,Lampridomorpha是最早的棘皮动物区系的主要组成部分,特别是在塞诺曼尼亚。

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