Amphiuridae
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Amphiuridae
Amphiuridae (commonly called long-armed burrowing brittle stars or burrowing brittle stars) are a large family of brittle stars of the suborder Gnathophiurina. Some species are used to study echinoderm development (e.g. '' Amphipholis kochii'' and '' Amphioplus abditus'') and bioluminescence (the dwarf brittle star, ''Amphipholis squamata''). Characteristics Amphiuridae are generally small brittlestars. Their jaws are always with two apical papillae at the tip, and one or more papillae on each side. Systematics and phylogeny Amphiuridae are the most diverse family of Ophiurida with over 200 species. The family contains the following genera: In addition, two extinct genera are known: * † '' Deckersamphiura'' Jagt, 2000 * † '' Xanthamphiura'' Hess 1970 Image:Amphiodia pulchella.jpg, '' Amphiodia pulchella'' Image:Amphioplus thrombodes.jpg, '' Amphioplus thrombodes'' Image:Ophiocentrus aspera.jpg, '' Ophiocentrus aspera'' Image:Amphipholis squamata Réunion.jpg, '' Amphipho ...
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Acrocnida
''Acrocnida'' is a genus of brittle stars in the family Amphiuridae. The genus contains three members: '' Acrocnida brachiata, Acrocnida semisquamata,'' and ''Acrocnida spatulispina.'' There has also been observed hybridization between both '' Acrocnida brachiata'' and ''Acrocnida spatulispina'.'' It is a fairly common genus, usually found along the coasts of Northwestern Europe, but with some species like semisquamata appearing around West Africa. Members of this genus primarily prefer intertidal and sub-tidal habitats, and they are they are less likely to be found in intertidal areas by comparison. This genus was not officially classified until 1926, by T. Gislén. One study found that due to the increased calcification that '' Acrocnida brachiata'' causes could be a potential source of Carbon Dioxide for not only the warm, shallow environments they live in, but also for the atmosphere. Species The World Register of Marine Species lists the following species. * '' Acrocnida br ...
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Ophiuroidea
Brittle stars, serpent stars, or ophiuroids (; ; referring to the serpent-like arms of the brittle star) are echinoderms in the class Ophiuroidea, closely related to starfish. They crawl across the sea floor using their flexible arms for locomotion. The ophiuroids generally have five long, slender, whip-like arms which may reach up to in length on the largest specimens. The Ophiuroidea contain two large clades, Ophiurida (brittle stars) and Euryalida (basket stars). Over 2,000 species of brittle stars live today. More than 1,200 of these species are found in deep waters, greater than 200 m deep. Range The ophiuroids diverged in the Early Ordovician, about 500 million years ago. Ophiuroids can be found today in all of the major marine provinces, from the poles to the tropics. Basket stars are usually confined to the deeper parts of this range; Ophiuroids are known even from abyssal (>6,000 m) depths. However, brittle stars are also common members of reef communities, where the ...
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Brittle Star
Brittle stars, serpent stars, or ophiuroids (; ; referring to the serpent-like arms of the brittle star) are echinoderms in the class Ophiuroidea, closely related to starfish. They crawl across the sea floor using their flexible arms for locomotion. The ophiuroids generally have five long, slender, whip-like arms which may reach up to in length on the largest specimens. The Ophiuroidea contain two large clades, Ophiurida (brittle stars) and Euryalida (basket stars). Over 2,000 species of brittle stars live today. More than 1,200 of these species are found in deep waters, greater than 200 m deep. Range The ophiuroids diverged in the Early Ordovician, about 500 million years ago. Ophiuroids can be found today in all of the major marine provinces, from the poles to the tropics. Basket stars are usually confined to the deeper parts of this range; Ophiuroids are known even from abyssal (>6,000 m) depths. However, brittle stars are also common members of reef communities, where t ...
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Amphipholis Squamata
''Amphipholis squamata'', common names brooding snake star and dwarf brittle star, is a species complexLe Gac, M., Féral, J.P., Poulin, E., Veyret, M. & Chenuil, A. (2004) ''Identification of allopatric clades in the cosmopolitan ophiuroid species complex ''Amphipholis squamata'' (Echinodermata). The end of a paradox?'' Marine Ecology Progress Series, 278: 171–178. of brittle stars in the family Amphiuridae. Description This species is small, grey to bluish-white, and phosphorescent. It has thin, short arms around 20 mm long. The round disc is 3 to 5mm, and has a scale covering with D-shaped radial plates. It has rhombic-shaped mouth shields and extremely wide mouth papillae. Distribution ''Amphipholis Squamata'' is found in all parts of the British Isles and also in Ireland. It has been recorded in many other parts of the world and molecular studies have shown that there are multiple species in this complex. Habitat This brittle star lives in the intertidal zone in sh ...
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Amphiodia
''Amphiodia'' is a genus of brittle stars belonging to the family Amphiuridae Amphiuridae (commonly called long-armed burrowing brittle stars or burrowing brittle stars) are a large family of brittle stars of the suborder Gnathophiurina. Some species are used to study echinoderm development (e.g. '' Amphipholis kochii'' an .... Species References''Amphiodia at the World Ophiuroidea Database'' Amphiuridae Ophiuroidea genera Taxa named by Addison Emery Verrill {{ophiuroidea-stub ...
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Dwarf Brittle Star
''Amphipholis squamata'', common names brooding snake star and dwarf brittle star, is a species complexLe Gac, M., Féral, J.P., Poulin, E., Veyret, M. & Chenuil, A. (2004) ''Identification of allopatric clades in the cosmopolitan ophiuroid species complex ''Amphipholis squamata'' (Echinodermata). The end of a paradox?'' Marine Ecology Progress Series, 278: 171–178. of brittle stars in the family Amphiuridae. Description This species is small, grey to bluish-white, and phosphorescent. It has thin, short arms around 20 mm long. The round disc is 3 to 5mm, and has a scale covering with D-shaped radial plates. It has rhombic-shaped mouth shields and extremely wide mouth papillae. Distribution ''Amphipholis Squamata'' is found in all parts of the British Isles and also in Ireland. It has been recorded in many other parts of the world and molecular studies have shown that there are multiple species in this complex. Habitat This brittle star lives in the intertidal zone in sh ...
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Amphipholis Kochii
''Amphipholis'' is a large genus of brittle stars (Ophiuroidea) found in oceans worldwide from tropics to Arctic and Antarctic regions. Some species have been used to study echinoderm development ('' Amphipholis kochii'') and bioluminescence (the Dwarf brittle star, ''Amphipholis squamata''). Systematics ''Amphipholis'' is a large genus with potentially many cryptic species. The high variability may be due to common parthenogenetic reproduction. The type species In zoological nomenclature, a type species (''species typica'') is the species name with which the name of a genus or subgenus is considered to be permanently taxonomically associated, i.e., the species that contains the biological type specimen ... of the genus is ''Amphipholis januarii '' Ljungman, 1866(=''Amphipholis gracillima'' (Stimpson, 1852)). Species include: References Amphiuridae {{ophiuroidea-stub ...
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Gnathophiurina
The Gnathophiurina are a group of Ophiuroidea mostly treated as suborder (but at first as an order Gnathophiurida, and sometimes as infraorder of OphiurinaSmith, A.B.; Paterson, G.L.J. . Ophiuroid phylogeny and higher taxonomy: morphological, molecular and palaeontological perspectives. Zool. J. Linn. Soc. 114 (1995) or not used at all). Families * Amphilepididae Matsumoto, 1915 * Amphiuridae Ljungman, 1867 * Ophiactidae Matsumoto, 1915 * Ophiocomidae Ljungman, 1867 * Ophionereididae Ljungman, 1867 * Ophiothricidae Ljungman, 1867 References

Gnathophiurina, Ophiurida {{ophiuroidea-stub ...
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Jurassic
The Jurassic ( ) is a Geological period, geologic period and System (stratigraphy), stratigraphic system that spanned from the end of the Triassic Period million years ago (Mya) to the beginning of the Cretaceous Period, approximately Mya. The Jurassic constitutes the middle period of the Mesozoic, Mesozoic Era and is named after the Jura Mountains, where limestone strata from the period were first identified. The start of the Jurassic was marked by the major Triassic–Jurassic extinction event, associated with the eruption of the Central Atlantic magmatic province, Central Atlantic Magmatic Province. The beginning of the Toarcian Stage started around 183 million years ago and is marked by an extinction event associated with widespread Anoxic event, oceanic anoxia, ocean acidification, and elevated temperatures likely caused by the eruption of the Karoo-Ferrar, Karoo-Ferrar large igneous provinces. The end of the Jurassic, however, has no clear boundary with the Cretaceous and i ...
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