To install click the Add extension button. That's it.

The source code for the WIKI 2 extension is being checked by specialists of the Mozilla Foundation, Google, and Apple. You could also do it yourself at any point in time.

4,5
Kelly Slayton
Congratulations on this excellent venture… what a great idea!
Alexander Grigorievskiy
I use WIKI 2 every day and almost forgot how the original Wikipedia looks like.
What we do. Every page goes through several hundred of perfecting techniques; in live mode. Quite the same Wikipedia. Just better.
.
Leo
Newton
Brights
Milds

From Wikipedia, the free encyclopedia

Aulopiformes
Temporal range: 125–0 Ma Early Cretaceous to present[1]
Variegated lizardfish, Synodus variegatus
(Synodontoidei: Synodontidae)
Scientific classification Edit this classification
Domain: Eukaryota
Kingdom: Animalia
Phylum: Chordata
Class: Actinopterygii
Clade: Eurypterygii
Superorder: Cyclosquamata
Order: Aulopiformes
D. E. Rosen, 1973
Type genus
Aulopus
Cloquet, 1816
Suborders
  • Alepisauroidei
  • Chlorophthalmoidei
  • Enchodontoidei
  • Giganturoidei
  • Synodontoidei
Synonyms

Macristiidae (see text)

Aulopiformes /ˈɔːləpɪfɔːrmz/ is a diverse order of marine ray-finned fish consisting of some 15 extant and several prehistoric families with about 45 genera and over 230 species. The common names grinners, lizardfishes and allies, or aulopiforms are sometimes used for this group. The scientific name means "Aulopus-shaped", from Aulopus (the type genus) + the standard fish order suffix "-formes". It ultimately derives from Ancient Greek aulós (αὐλός, "flute" or "pipe") + Latin forma ("external form"), the former in reference to the elongated shape of many aulopiforms.[2][3][4]

They are grouped together because of common features in the structure of their gill arches. Indeed, many authors have considered them so distinct as to warrant separation in a monotypic superorder of the Teleostei, under the name Cyclosquamata. However, monotypic taxa are generally avoided by modern taxonomists if not necessary, and in this case a distinct superorder seems indeed unwarranted: together with the equally dubious superorder "Stenopterygii", the grinners appear to be so closely related to some Protacanthopterygii to be included in that superorder. In particular, this group might be the sister taxon of the Salmoniformes (salmon, trout, and relatives). As an alternative, the superorders are sometimes united as an unranked clade named Euteleostei, but in that case the Protacanthopterygii would need to be split further to account for the phylogenetic uncertainty. This would result in a highly cumbersome and taxonomically redundant group of two very small and no less than four monotypic superorders.[5][6]

An extinct clade of Aulopiformes, the suborder Enchodontoidei and its many constituent families, were dominant nektonic fish throughout much of the Late Cretaceous.[1][7] Several other extant aulopiform families also have Cretaceous representatives, and phylogenetic evidence indicates that the order as a whole diversified into its extant families around the Early Cretaceous, making it rather ancient. These diversifications included the earliest adaptations for deep-sea living, which is common among many extant aulopiform taxa.[8]

YouTube Encyclopedic

  • 1/4
    Views:
    5 617
    1 582
    13 974
    6 066
  • More Terrifying Abyss Dwelling Animals
  • Phylogenetic Approaches to the study of Vertebrate Classification, UCLA
  • Zmierzch ery gadów morskich / Dr Daniel Tyborowski
  • Biodiversity Expeditions Past and Present

Transcription

Description

Many aulopiforms are deep-sea fishes, with some species recognized as being hermaphrodites, some with the ability to self-fertilise. Some are benthic, but most are pelagic nekton. In general, aulopiform fish have a mixture of advanced and primitive characteristics relative to other teleost fish.[5][9]

A shortnose greeneye, Chlorophthalmus agassizi
(Chlorophthalmoidei: Chlorophthalmidae)

Aulopiforms have either a vestigial gas bladder, or lack it entirely, a hypaxialis muscle that is unusually extended to forward at its upper end and attaches to the neurocranium below the spine (perhaps to snap the upper part of the skull down when catching prey) and the position of the maxillary bone. Their second pharyngobranchial is greatly elongated posterolaterally away from third pharyngobranchial, which lacks a cartilaginous condyle to articulate with the preceding, but is contacted by the elongated uncinate process of the second epibranchial. Other features include the position of the pelvic fins far back on the body, the fused medial processes of pelvic girdle, and the presence of an adipose fin (which is also typical for the Protacanthopterygii).[4][5][9]

The larvae of some Aulopiformes are extremely bizarre-looking, with elongated fins, and do not resemble the adult animals. They were not only described as distinct species, but also even separated as genera and finally in a family "Macristiidae" which was allied with various Protacanthopterygii (sensu lato), but the initial assessment – which found "Macristium" to resemble the deepwater lizardfishes (Bathysauridae) in some details – was not far off the mark: "Macristium" species are larvae of Bathysaurus, while the supposed other "macristiids", "Macristiella" species are larvae of the deepsea tripodfish Bathytyphlops.[10]

Classification

Lestrolepis japonica
(Alepisauroidei: Paralepididae)
Reconstruction of Enchodus petrosus from the Cretaceous of the Western Interior Seaway
(Enchodontoidei: Enchodontidae)
Highfin lizardfish, Bathysaurus mollis
(Giganturoidei: Bathysauridae)

Timeline of genera

QuaternaryNeogenePaleogeneCretaceousHolocenePleistocenePlioceneMioceneOligoceneEocenePaleoceneLate CretaceousEarly CretaceousNotolepisScopelarchusScopelosaurusChlorophthalmusAulopusLabrophagusAulopopsisAcrognathusNematonotusQuaternaryNeogenePaleogeneCretaceousHolocenePleistocenePlioceneMioceneOligoceneEocenePaleoceneLate CretaceousEarly Cretaceous

Footnotes

  1. ^ a b Davis, Matthew P.; Fielitz, Christopher (2010-12-01). "Estimating divergence times of lizardfishes and their allies (Euteleostei: Aulopiformes) and the timing of deep-sea adaptations". Molecular Phylogenetics and Evolution. 57 (3): 1194–1208. Bibcode:2010MolPE..57.1194D. doi:10.1016/j.ympev.2010.09.003. ISSN 1055-7903. PMID 20854916.
  2. ^ Woodhouse (1910)
  3. ^ Glare (1982)
  4. ^ a b FishBase (2000)
  5. ^ a b c Nelson (2006, p. 214)
  6. ^ Diogo (2008)
  7. ^ Chida, Mori (Fall 2022). "A new species of dercetid and the assessment of the phylogeny of the Enchodontoidei (Teleostei: Aulopiformes)". ERA. doi:10.7939/r3-nqmz-nf15. Retrieved 2023-12-28.
  8. ^ Davis, Matthew P.; Fielitz, Christopher (2010-12-01). "Estimating divergence times of lizardfishes and their allies (Euteleostei: Aulopiformes) and the timing of deep-sea adaptations". Molecular Phylogenetics and Evolution. 57 (3): 1194–1208. Bibcode:2010MolPE..57.1194D. doi:10.1016/j.ympev.2010.09.003. ISSN 1055-7903. PMID 20854916.
  9. ^ a b Johnson & Eschmeyer (1998)
  10. ^ Taylor (2009)
  11. ^ Uyeno, Teruya. "A Miocene alepisauroid fish of a new family, Polymerichthyidae, from Japan." Bull. Nat. Sci. Mus 10 (1967): 383-394.
  12. ^ Dietze, Kathrin (2009-06-01). "Morphology and phylogenetic relationships of certain neoteleostean fishes from the Upper Cretaceous of Sendenhorst, Germany". Cretaceous Research. 30 (3): 559–574. Bibcode:2009CrRes..30..559D. doi:10.1016/j.cretres.2008.11.001. ISSN 0195-6671.
  13. ^ Beckett, Hermione; Giles, Sam; Friedman, Matt (2018-11-14). "Comparative anatomy of the gill skeleton of fossil Aulopiformes (Teleostei: Eurypterygii)". Journal of Systematic Palaeontology. 16 (14): 1221–1245. Bibcode:2018JSPal..16.1221B. doi:10.1080/14772019.2017.1387184. ISSN 1477-2019.

References

This page was last edited on 25 May 2024, at 00:03
Basis of this page is in Wikipedia. Text is available under the CC BY-SA 3.0 Unported License. Non-text media are available under their specified licenses. Wikipedia® is a registered trademark of the Wikimedia Foundation, Inc. WIKI 2 is an independent company and has no affiliation with Wikimedia Foundation.