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A phylogeny of the fossil and extant zeiform‐like fishes, Upper Cretaceous to Recent, with comments on the putative zeomorph clade (Acanthomorpha)

Identifieur interne : 004115 ( Istex/Curation ); précédent : 004114; suivant : 004116

A phylogeny of the fossil and extant zeiform‐like fishes, Upper Cretaceous to Recent, with comments on the putative zeomorph clade (Acanthomorpha)

Auteurs : James C. Tyler [France] ; Francesco Santini [France]

Source :

RBID : ISTEX:834220458C8790469F0300A64101BB796A090DDD

English descriptors

Abstract

Tyler, J. C. & Santini, F. (2005). A phylogeny of the fossil and extant zeiform‐like fishes, Upper Cretaceous to Recent, with comments on the putative zeomorph clade (Acanthomorpha). —Zoological Scripta, **, ***–***. A phylogenetic hypothesis based on 107 morphological characters is proposed for a data set of 43 taxa. Thirty‐three are extant and belong to the orders Zeiformes (20 taxa), Caproiformes (2), Tetraodontiformes (2), Beryciformes (3), Stephanoberyciformes (3) and Perciformes (3). Ten are fossil taxa previously assigned to the Zeiformes (3), Caproiformes (1), Tetraodontiformes (2), Perciformes (1), and to two extinct Eocene families, the Sorbinipercidae (2) and the Zorzinichthyidae (1). This analysis indicates the existence of a previously undocumented clade formed by the families Sorbinipercidae + Zorzinichthyidae that may be related to the tetraodontiforms. It also shows that two uppermost Palaeocene species, Archaeozeus skamolensis and Protozeus kuehnei, sequentially represent the two most basal lineages of zeiforms, whereas the most ancient known zeiform, the Upper Cretaceous Cretazeus rinaldii, belongs within the clade of extant species in a polytomy with many other zeiform lineages. A reduced data set of 25 mostly zeiform taxa, after the removal of most outgroups, shows at least weak support for Cretazeus being nested deeply within the extant zeiforms; such a placement would indicate that at least six lineages of zeiforms were present during the Upper Cretaceous, and survived the Cretaceous/Tertiary (K/T) extinction to radiate in Cenozoic seas.

Url:
DOI: 10.1111/j.1463-6409.2005.00180.x

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James C. Tyler
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Francesco Santini
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<term>Abdominal haemal spines</term>
<term>Abdominal vertebrae</term>
<term>Acanthomorpha</term>
<term>Acanthonemus</term>
<term>Acanthonemus subaureus</term>
<term>Adjacent part</term>
<term>Allocyttus</term>
<term>Allocyttus verrucosus</term>
<term>Alveolar process</term>
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<term>Anterolateral processes</term>
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<term>Antigonia veronensis</term>
<term>Archaeozeus</term>
<term>Archaeozeus skamolensis</term>
<term>Articulation</term>
<term>Baciu</term>
<term>Bannikov</term>
<term>Basal</term>
<term>Basibranchial</term>
<term>Beryciform foramen</term>
<term>Bolca</term>
<term>Bony interdigitated articulations</term>
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<term>Cretatriacanthus guidottii</term>
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<term>Cretazeus rinaldii</term>
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<term>Decay index</term>
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<term>Ethmoid</term>
<term>Extant</term>
<term>Extant species</term>
<term>Extant taxa</term>
<term>Extant zeiforms</term>
<term>Farris</term>
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<term>Fossil</term>
<term>Fossil record</term>
<term>Fossil taxa</term>
<term>Fourth ceratobranchial</term>
<term>Fourth gill slit</term>
<term>Frequent condition</term>
<term>Full data</term>
<term>Giacimenti terziari</term>
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<term>Haemal</term>
<term>Haemal arches</term>
<term>Haemal canal</term>
<term>Haemal spine</term>
<term>Haemal spines</term>
<term>Holotype</term>
<term>Hypurals</term>
<term>Incomplete taxa</term>
<term>Infraorbitals</term>
<term>Interhaemal space</term>
<term>Interneural</term>
<term>Interneural space</term>
<term>Large size</term>
<term>Lateral</term>
<term>Lateral ethmoid</term>
<term>Lateral expansions</term>
<term>Lateral surface</term>
<term>Lineage</term>
<term>Locking mechanism</term>
<term>Lower border</term>
<term>Majority rule consensus tree</term>
<term>Mass extinctions</term>
<term>Mcsnv</term>
<term>Medial</term>
<term>Medial surfaces</term>
<term>Median spine</term>
<term>Middle region</term>
<term>Midline</term>
<term>Moderate cartilages</term>
<term>Monte bolca</term>
<term>Museo</term>
<term>Museo civico</term>
<term>National naturelle</term>
<term>Natural history</term>
<term>Naturale</term>
<term>Neural</term>
<term>Neural arch</term>
<term>Neural spine</term>
<term>Neural spines</term>
<term>Norwegian</term>
<term>Norwegian academy</term>
<term>Opposite member</term>
<term>Oreosomatidae</term>
<term>Palaeocene</term>
<term>Parazen</term>
<term>Parsimonious</term>
<term>Parsimonious trees</term>
<term>Peduncle</term>
<term>Pharyngobranchial</term>
<term>Phylogenetic</term>
<term>Phylogenetic analyses</term>
<term>Phylogenetic analysis</term>
<term>Phylogenetic hypothesis</term>
<term>Phylogenetic relationships</term>
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<term>Plectocretacicus clarae</term>
<term>Poissons fossiles</term>
<term>Postcleithrum</term>
<term>Posterior border</term>
<term>Posterior myodome</term>
<term>Prehaemal space</term>
<term>Premaxilla</term>
<term>Present midabdominally</term>
<term>Principal rays</term>
<term>Procurrent rays</term>
<term>Prominent notches</term>
<term>Protozeus</term>
<term>Protozeus kuehnei</term>
<term>Pterygiophore</term>
<term>Pterygiophores</term>
<term>Rear border</term>
<term>Recent species</term>
<term>Rinaldii</term>
<term>Same middle eocene locality</term>
<term>Santini</term>
<term>Santini phylogeny</term>
<term>Santini tyler</term>
<term>Scripta</term>
<term>Second basibranchial</term>
<term>Second pharyngobranchial</term>
<term>Second spines</term>
<term>Serration</term>
<term>Several rays</term>
<term>Shes</term>
<term>Shes appendix</term>
<term>Single outgroup</term>
<term>Single plate</term>
<term>Single postcleithrum</term>
<term>Sister group</term>
<term>Skull</term>
<term>Smithsonian contributions</term>
<term>Smithsonian institution</term>
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<term>Sorbinicapros sorbiniorum</term>
<term>Sorbiniperca scheuchzeri</term>
<term>Spine</term>
<term>Spinous dorsal</term>
<term>Spiny</term>
<term>Spiny dorsal</term>
<term>Spiny processes</term>
<term>Spiny projections</term>
<term>Storia</term>
<term>Storia naturale</term>
<term>Strict consensus tree</term>
<term>Supracleithral serrations</term>
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<term>Systematic biology</term>
<term>Taxon</term>
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<term>Third caudal vertebra</term>
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<term>Third spines</term>
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<term>Tyler</term>
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<term>Upper cretaceous</term>
<term>Upper maastrichtian</term>
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<term>Vacant interneural space</term>
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<term>Vertebral column</term>
<term>Zeiform</term>
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<term>Abdominal haemal spines</term>
<term>Abdominal vertebrae</term>
<term>Acanthomorpha</term>
<term>Acanthonemus</term>
<term>Acanthonemus subaureus</term>
<term>Adjacent part</term>
<term>Allocyttus</term>
<term>Allocyttus verrucosus</term>
<term>Alveolar process</term>
<term>Ange</term>
<term>Anterolateral processes</term>
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<term>Antigonia veronensis</term>
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<term>Archaeozeus skamolensis</term>
<term>Articulation</term>
<term>Baciu</term>
<term>Bannikov</term>
<term>Basal</term>
<term>Basibranchial</term>
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<term>Bolca</term>
<term>Bony interdigitated articulations</term>
<term>Branchiostegal rays</term>
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<term>Capros</term>
<term>Cartilage</term>
<term>Caudal</term>
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<term>Caudal vertebrae</term>
<term>Centrum</term>
<term>Ceratohyal</term>
<term>Civico</term>
<term>Clade</term>
<term>Cladistics</term>
<term>Composite plate</term>
<term>Cretaceous</term>
<term>Cretatriacanthus guidottii</term>
<term>Cretazeus</term>
<term>Cretazeus rinaldii</term>
<term>Cyttidae</term>
<term>Cyttus</term>
<term>Decay index</term>
<term>Dentary</term>
<term>Distal ends</term>
<term>Dorsal</term>
<term>Dorsal pterygiophore</term>
<term>Dorsal surface</term>
<term>Eocene</term>
<term>Ethmoid</term>
<term>Extant</term>
<term>Extant species</term>
<term>Extant taxa</term>
<term>Extant zeiforms</term>
<term>Farris</term>
<term>First vertebra</term>
<term>Fossil</term>
<term>Fossil record</term>
<term>Fossil taxa</term>
<term>Fourth ceratobranchial</term>
<term>Fourth gill slit</term>
<term>Frequent condition</term>
<term>Full data</term>
<term>Giacimenti terziari</term>
<term>Gill</term>
<term>Haemal</term>
<term>Haemal arches</term>
<term>Haemal canal</term>
<term>Haemal spine</term>
<term>Haemal spines</term>
<term>Holotype</term>
<term>Hypurals</term>
<term>Incomplete taxa</term>
<term>Infraorbitals</term>
<term>Interhaemal space</term>
<term>Interneural</term>
<term>Interneural space</term>
<term>Large size</term>
<term>Lateral</term>
<term>Lateral ethmoid</term>
<term>Lateral expansions</term>
<term>Lateral surface</term>
<term>Lineage</term>
<term>Locking mechanism</term>
<term>Lower border</term>
<term>Majority rule consensus tree</term>
<term>Mass extinctions</term>
<term>Mcsnv</term>
<term>Medial</term>
<term>Medial surfaces</term>
<term>Median spine</term>
<term>Middle region</term>
<term>Midline</term>
<term>Moderate cartilages</term>
<term>Monte bolca</term>
<term>Museo</term>
<term>Museo civico</term>
<term>National naturelle</term>
<term>Natural history</term>
<term>Naturale</term>
<term>Neural</term>
<term>Neural arch</term>
<term>Neural spine</term>
<term>Neural spines</term>
<term>Norwegian</term>
<term>Norwegian academy</term>
<term>Opposite member</term>
<term>Oreosomatidae</term>
<term>Palaeocene</term>
<term>Parazen</term>
<term>Parsimonious</term>
<term>Parsimonious trees</term>
<term>Peduncle</term>
<term>Pharyngobranchial</term>
<term>Phylogenetic</term>
<term>Phylogenetic analyses</term>
<term>Phylogenetic analysis</term>
<term>Phylogenetic hypothesis</term>
<term>Phylogenetic relationships</term>
<term>Phylogeny</term>
<term>Plectocretacicus clarae</term>
<term>Poissons fossiles</term>
<term>Postcleithrum</term>
<term>Posterior border</term>
<term>Posterior myodome</term>
<term>Prehaemal space</term>
<term>Premaxilla</term>
<term>Present midabdominally</term>
<term>Principal rays</term>
<term>Procurrent rays</term>
<term>Prominent notches</term>
<term>Protozeus</term>
<term>Protozeus kuehnei</term>
<term>Pterygiophore</term>
<term>Pterygiophores</term>
<term>Rear border</term>
<term>Recent species</term>
<term>Rinaldii</term>
<term>Same middle eocene locality</term>
<term>Santini</term>
<term>Santini phylogeny</term>
<term>Santini tyler</term>
<term>Scripta</term>
<term>Second basibranchial</term>
<term>Second pharyngobranchial</term>
<term>Second spines</term>
<term>Serration</term>
<term>Several rays</term>
<term>Shes</term>
<term>Shes appendix</term>
<term>Single outgroup</term>
<term>Single plate</term>
<term>Single postcleithrum</term>
<term>Sister group</term>
<term>Skull</term>
<term>Smithsonian contributions</term>
<term>Smithsonian institution</term>
<term>Soft base</term>
<term>Sorbini</term>
<term>Sorbinicapros sorbiniorum</term>
<term>Sorbiniperca scheuchzeri</term>
<term>Spine</term>
<term>Spinous dorsal</term>
<term>Spiny</term>
<term>Spiny dorsal</term>
<term>Spiny processes</term>
<term>Spiny projections</term>
<term>Storia</term>
<term>Storia naturale</term>
<term>Strict consensus tree</term>
<term>Supracleithral serrations</term>
<term>Supraocular serrations</term>
<term>Suspensory</term>
<term>Suspensory shaft</term>
<term>Systematic biology</term>
<term>Taxon</term>
<term>Tetraodontiform</term>
<term>Tetraodontiformes</term>
<term>Tetraodontiforms</term>
<term>Third caudal vertebra</term>
<term>Third pharyngobranchial</term>
<term>Third spines</term>
<term>Total number</term>
<term>Tyler</term>
<term>Tyler sorbini</term>
<term>Upper cretaceous</term>
<term>Upper maastrichtian</term>
<term>Upper surface</term>
<term>Uroneural</term>
<term>Vacant interneural space</term>
<term>Vacant interneural spaces</term>
<term>Ventral</term>
<term>Verona</term>
<term>Veronensis</term>
<term>Vertebra</term>
<term>Vertebral column</term>
<term>Zeiform</term>
<term>Zeiform taxa</term>
<term>Zeiformes</term>
<term>Zeiforms</term>
<term>Zenopsis</term>
<term>Zeomorph</term>
<term>Zoologica</term>
<term>Zoologica scripta</term>
<term>Zorzinichthys annae</term>
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<front>
<div type="abstract" xml:lang="en">Tyler, J. C. & Santini, F. (2005). A phylogeny of the fossil and extant zeiform‐like fishes, Upper Cretaceous to Recent, with comments on the putative zeomorph clade (Acanthomorpha). —Zoological Scripta, **, ***–***. A phylogenetic hypothesis based on 107 morphological characters is proposed for a data set of 43 taxa. Thirty‐three are extant and belong to the orders Zeiformes (20 taxa), Caproiformes (2), Tetraodontiformes (2), Beryciformes (3), Stephanoberyciformes (3) and Perciformes (3). Ten are fossil taxa previously assigned to the Zeiformes (3), Caproiformes (1), Tetraodontiformes (2), Perciformes (1), and to two extinct Eocene families, the Sorbinipercidae (2) and the Zorzinichthyidae (1). This analysis indicates the existence of a previously undocumented clade formed by the families Sorbinipercidae + Zorzinichthyidae that may be related to the tetraodontiforms. It also shows that two uppermost Palaeocene species, Archaeozeus skamolensis and Protozeus kuehnei, sequentially represent the two most basal lineages of zeiforms, whereas the most ancient known zeiform, the Upper Cretaceous Cretazeus rinaldii, belongs within the clade of extant species in a polytomy with many other zeiform lineages. A reduced data set of 25 mostly zeiform taxa, after the removal of most outgroups, shows at least weak support for Cretazeus being nested deeply within the extant zeiforms; such a placement would indicate that at least six lineages of zeiforms were present during the Upper Cretaceous, and survived the Cretaceous/Tertiary (K/T) extinction to radiate in Cenozoic seas.</div>
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