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Brachiopod information


Brachiopod
Temporal range: Lower Cambrian–Recent
PreꞒ
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Lingula anatina, an inarticulate linguliform brachiopod
Terebratalia transversa, an articulate (rhynchonelliform) brachiopod
Scientific classification Edit this classification
Domain: Eukaryota
Kingdom: Animalia
Superphylum: Lophotrochozoa
Clade: Lophophorata
Clade: Brachiozoa
Phylum: Brachiopoda
Duméril, 1806[1]
Subphyla and classes

See taxonomy

Diversity[2]
About 100 living genera
About 5,000 fossil genera

Brachiopods (/ˈbrækiˌpɒd/), phylum Brachiopoda, are a phylum of trochozoan animals that have hard "valves" (shells) on the upper and lower surfaces, unlike the left and right arrangement in bivalve molluscs. Brachiopod valves are hinged at the rear end, while the front can be opened for feeding or closed for protection. Two major categories are traditionally recognized, articulate and inarticulate brachiopods. The word "articulate" is used to describe the tooth-and-groove structures of the valve-hinge which is present in the articulate group, and absent from the inarticulate group. This is the leading diagnostic skeletal feature, by which the two main groups can be readily distinguished as fossils. Articulate brachiopods have toothed hinges and simple, vertically oriented opening and closing muscles. Conversely, inarticulate brachiopods have weak, untoothed hinges and a more complex system of vertical and oblique (diagonal) muscles used to keep the two valves aligned. In many brachiopods, a stalk-like pedicle projects from an opening near the hinge of one of the valves, known as the pedicle or ventral valve. The pedicle, when present, keeps the animal anchored to the seabed but clear of sediment which would obstruct the opening.

Brachiopod lifespans range from three to over thirty years. Ripe gametes (ova or sperm) float from the gonads into the main coelom and then exit into the mantle cavity. The larvae of inarticulate brachiopods are miniature adults, with lophophores that enable the larvae to feed and swim for months until the animals become heavy enough to settle to the seabed. The planktonic larvae of articulate species do not resemble the adults, but rather look like blobs with yolk sacs, and remain among the plankton for only a few days before leaving the water column upon metamorphosing.

While traditional classification of brachiopods separate them into distinct inarticulate and articulate groups, two approaches appeared in the 1990s. One approach groups the inarticulate Craniida with articulate brachiopods, since both use layers of calcareous minerals their shell; the other approach considers the Craniida to be a separate third group, as their outer organic layer is distinct from that of both the linguliforms ("typical" inarticulates) and rhynchonelliforms (articulates). However, some taxonomists believe it is premature to suggest higher levels of classification such as order and recommend a bottom-up approach that identifies genera and then groups these into intermediate groups. Traditionally, brachiopods have been regarded as members of, or as a sister group to, the deuterostomes, a superphylum that includes chordates and echinoderms. One type of analysis of the evolutionary relationships of brachiopods has always placed brachiopods as protostomes while another type has split between placing brachiopods among the protostomes or the deuterostomes.

It was suggested in 2003 that brachiopods had evolved from an ancestor similar to Halkieria, a slug-like Cambrian animal with "chain mail" on its back and a shell at the front and rear end; it was thought that the ancestral brachiopod converted its shells into a pair of valves by folding the rear part of its body under its front. However, new fossils found in 2007 and 2008 showed that the "chain mail" of tommotiids formed the tube of a sessile animal; one tommotiid resembled phoronids, which are close relatives or a subgroup of brachiopods, while the other tommotiid bore two symmetrical plates that might be an early form of brachiopod valves. Lineages of brachiopods that have both fossil and extant taxa appeared in the early Cambrian, Ordovician, and Carboniferous periods, respectively.[3] Other lineages have arisen and then become extinct, sometimes during severe mass extinctions. At their peak in the Paleozoic era, the brachiopods were among the most abundant filter-feeders and reef-builders, and occupied other ecological niches, including swimming in the jet-propulsion style of scallops. Brachiopod fossils have been useful indicators of climate changes during the Paleozoic. However, after the Permian–Triassic extinction event, brachiopods recovered only a third of their former diversity. A study in 2007 concluded the brachiopods were especially vulnerable to the Permian–Triassic extinction, as they built calcareous hard parts (made of calcium carbonate) and had low metabolic rates and weak respiratory systems. It was often thought that brachiopods went into decline after the Permian–Triassic extinction, and were out-competed by bivalves, but a study in 1980 found both brachiopod and bivalve species increased from the Paleozoic to modern times, with bivalves increasing faster; after the Permian–Triassic extinction, brachiopods became for the first time less diverse than bivalves.

Brachiopods live only in the sea, and most species avoid locations with strong currents or waves. The larvae of articulate species settle in quickly and form dense populations in well-defined areas while the larvae of inarticulate species swim for up to a month and have wide ranges. Brachiopods now live mainly in cold water and low light. Fish and crustaceans seem to find brachiopod flesh distasteful and seldom attack them. Among brachiopods, only the lingulids (Lingula sp.[4]) have been fished commercially, on a very small scale. One brachiopod species (Coptothyrus adamsi) may be a measure of environmental conditions around an oil terminal being built in Russia on the shore of the Sea of Japan. The word "brachiopod" is formed from the Ancient Greek words brachion ("arm") and podos ("foot").[5] They are often known as "lamp shells", since the curved shells of the class Terebratulida resemble pottery oil-lamps.[2]

  1. ^ Zvyagintsev etc: Brachio fouling & (2007).
  2. ^ a b Cohen: Brachiopoda ELS & (2002).
  3. ^ Torres-Martínez, M.A., Sour-Tovar, F. (2016). "Braquiópodos discínidos (Lingulida, Discinoidea) de la Formación Ixtaltepec, Carbonífero del área de Santiago Ixtaltepec, Oaxaca". Boletín de la Sociedad Geológica Mexicana. 68 (2): 313–321. doi:10.18268/BSGM2016v68n2a9.{{cite journal}}: CS1 maint: multiple names: authors list (link)
  4. ^ Printrakoon, Cheewarat; Kamlung-Ek, Apiwan (2013). "Socioeconomic study and economic value of living fossil, Lingula sp. in mangrove ecosystem in Trat Province, Thailand". Chinese Journal of Population Resources and Environment. 11 (3): 187–199. Bibcode:2013CJPRE..11..187P. doi:10.1080/10042857.2013.800376. S2CID 129829675.
  5. ^ Shorter Oxford English Dictionary & (2002), entry "Brachiopod".

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Silurian

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Silurian Period. Brachiopods were abundant and diverse, with the taxonomic composition, ecology, and biodiversity of Silurian brachiopods mirroring Ordovician...

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Fosteria spinosa

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Fosteria is a monotypic genus of brachiopods belonging to the family Terebratellidae. The only species is Fosteria spinosa. The species is found in Antarctica...

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Ordovician

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the rest of the Paleozoic, such as articulate brachiopods, cephalopods, and crinoids. Articulate brachiopods, in particular, largely replaced trilobites...

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Pumilus antiquatus

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Pumilus is a monotypic genus of brachiopods belonging to the family Kraussinidae. The only species is Pumilus antiquatus. The species is found in New...

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Permian

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predominant group of Permian brachiopods, accounting for up to about half of all Permian brachiopod genera. Brachiopods also served as important ecosystem...

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Late Ordovician mass extinction

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major taxonomic groups and caused the disappearance of one third of all brachiopod and bryozoan families, as well as numerous groups of conodonts, trilobites...

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Jurassic

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epiplanktonic mode of life. Brachiopod diversity declined during the Triassic–Jurassic extinction. Spire-bearing brachiopods (Spiriferinida and Athyridida)...

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Devonian

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ammonites, a subclass of cephalopod molluscs, appeared. Trilobites, brachiopods and the great coral reefs were still common during the Devonian. The...

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Weiningia

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Weiningia is the name of an extinct genus of brachiopods. Paleontology portal List of brachiopod genera Nomenclator Zoologicus accessed August 2010 The...

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Westonia

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as Westonia Westonia, Western Australia, a town Westonia (brachiopod); see List of brachiopod genera This disambiguation page lists articles associated...

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Diatomaceous earth

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Biointerface Biofilm Exoskeletons (shells) Arthropod exoskeleton cuticle Brachiopod shell Cephalopod shell cirrate shell cuttlebone gladius Lorica Choanoflagellate...

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List of brachiopod genera

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This is a list of brachiopod genera which includes both extinct (fossil) forms and extant (living) genera (bolded). Names are according to the conventions...

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Rhynchonelliformea

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subphylum and clade of brachiopods. It is roughly equivalent to the former class Articulata, which was used previously in brachiopod taxonomy up until the...

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