moss animal - définition. Qu'est-ce que moss animal
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Qu'est-ce (qui) est moss animal - définition

PHYLUM OF MARINE INVERTEBRATES
Ectoprocta; Moss animal; Bryozoan; Bryzoa; Bryozoans; Polyzoa; Sea mat; Sea mats; Moss animals; Ectoproct; Polyzoon; Phylum polyzoa; Ancestrular; Ancestrula; Sea-mat; Polycoa; Bryozon; Polyzoan; Vibracula; Vibraculum; Ecotproct; Zoecium; Bryolith; Bryozoon
  • 1851 watercolor of ''Alcyonidium'' by Jacques Burkhardt.
  • Mauritanian bryolith formed by circumrotatory growth of the bryozoan species ''[[Acanthodesia commensale]]''
  • Cheilostome bryozoan with serpulid tubes
  • A colony of the modern marine bryozoan ''Flustra foliacea''.
  • lacelike ''[[Membranipora membranacea]]''
  • ''Peronopora'', a trepostome bryozoan from the Whitewater Formation (Upper [[Ordovician]]) of eastern [[Indiana]], United States
  • ''Phaenopora superba'', a ptilodictyine bryozoan from the Silurian of [[Ohio]], United States
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  • The flat, branching bryozoan ''Sulcoretepora'', from the Middle Devonian of [[Wisconsin]], United States
  • ''Evactinopora bryozoan'' found in Jefferson County, [[Missouri]], United States
  • sabellid]] worm tube; [[Jurassic]] of [[Poland]].

moss animal         
¦ noun a minute sedentary colonial aquatic animal found encrusting rocks or seaweed or forming stalked fronds. [Phylum Bryozoa.]
Moss Verft         
  • Moss Verft in 1902.
SHIPYARD
Moss Værft & Dokk; Moss Værft; Moss Værft og Dokk
Moss Verft was a shipyard in Jeløya, Moss, Norway. For most of its existence, it was owned by a company of the same name (with spelling variations over time in the company).
Moss Sweedler         
AMERICAN MATHEMATICIAN
Moss E. Sweedler; Moss Eisenberg Sweedler
Moss Eisenberg Sweedler (born 29 April 1942, in Brooklyn)Dates of birth, report from Guggenheim Foundation 1980 is an American mathematician, known for Sweedler's Hopf algebra, Sweedler's notation, measuring coalgebras, and his proof, with Harry Prince Allen, of a conjecture of Nathan Jacobson.

Wikipédia

Bryozoa

Bryozoa (also known as the Polyzoa, Ectoprocta or commonly as moss animals) are a phylum of simple, aquatic invertebrate animals, nearly all living in sedentary colonies. Typically about 0.5 millimetres (164 in) long, they have a special feeding structure called a lophophore, a "crown" of tentacles used for filter feeding. Most marine bryozoans live in tropical waters, but a few are found in oceanic trenches and polar waters. The bryozoans are classified as the marine bryozoans (Stenolaemata), freshwater bryozoans (Phylactolaemata), and mostly-marine bryozoans (Gymnolaemata), a few members of which prefer brackish water. 5,869 living species are known. At least two genera are solitary (Aethozooides and Monobryozoon); the rest are colonial.

The terms Polyzoa and Bryozoa were introduced in 1830 and 1831, respectively. Soon after it was named, another group of animals was discovered whose filtering mechanism looked similar, so it was included in Bryozoa until 1869, when the two groups were noted to be very different internally. The new group was given the name "Entoprocta", while the original Bryozoa were called "Ectoprocta". Disagreements about terminology persisted well into the 20th century, but "Bryozoa" is now the generally accepted term.

Colonies take a variety of forms, including fans, bushes and sheets. Single animals, called zooids, live throughout the colony and are not fully independent. These individuals can have unique and diverse functions. All colonies have "autozooids", which are responsible for feeding, excretion, and supplying nutrients to the colony through diverse channels. Some classes have specialist zooids like hatcheries for fertilized eggs, colonial defence structures, and root-like attachment structures. Cheilostomata is the most diverse order of bryozoan, possibly because its members have the widest range of specialist zooids. They have mineralized exoskeletons and form single-layered sheets which encrust over surfaces, and some colonies can creep very slowly by using spiny defensive zooids as legs.

Each zooid consists of a "cystid", which provides the body wall and produces the exoskeleton, and a "polypide", which holds the organs. Zooids have no special excretory organs, and autozooids' polypides are scrapped when they become overloaded with waste products; usually the body wall then grows a replacement polypide. Their gut is U-shaped, with the mouth inside the crown of tentacles and the anus outside it. Zooids of all the freshwater species are simultaneous hermaphrodites. Although those of many marine species function first as males and then as females, their colonies always contain a combination of zooids that are in their male and female stages. All species emit sperm into the water. Some also release ova into the water, while others capture sperm via their tentacles to fertilize their ova internally. In some species the larvae have large yolks, go to feed, and quickly settle on a surface. Others produce larvae that have little yolk but swim and feed for a few days before settling. After settling, all larvae undergo a radical metamorphosis that destroys and rebuilds almost all the internal tissues. Freshwater species also produce statoblasts that lie dormant until conditions are favorable, which enables a colony's lineage to survive even if severe conditions kill the mother colony.

Predators of marine bryozoans include sea slugs (nudibranchs), fish, sea urchins, pycnogonids, crustaceans, mites and starfish. Freshwater bryozoans are preyed on by snails, insects, and fish. In Thailand, many populations of one freshwater species have been wiped out by an introduced species of snail. A fast-growing invasive bryozoan off the northeast and northwest coasts of the US has reduced kelp forests so much that it has affected local fish and invertebrate populations. Bryozoans have spread diseases to fish farms and fishermen. Chemicals extracted from a marine bryozoan species have been investigated for treatment of cancer and Alzheimer's disease, but analyses have not been encouraging.

Mineralized skeletons of bryozoans first appear in rocks from the Early Ordovician period, making it the last major phylum to appear in the fossil record. This has led researchers to suspect that bryozoans arose earlier but were initially unmineralized, and may have differed significantly from fossilized and modern forms. In 2021, some research suggested Protomelission, a genus known from the Cambrian period, could be an example of an early bryozoan, but later research suggested that this taxon may instead represent a dasyclad alga. Early fossils are mainly of erect forms, but encrusting forms gradually became dominant. It is uncertain whether the phylum is monophyletic. Bryozoans' evolutionary relationships to other phyla are also unclear, partly because scientists' view of the family tree of animals is mainly influenced by better-known phyla. Both morphological and molecular phylogeny analyses disagree over bryozoans' relationships with entoprocts, about whether bryozoans should be grouped with brachiopods and phoronids in Lophophorata, and whether bryozoans should be considered protostomes or deuterostomes.