Biology:Udotea flabellum

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Short description: Species of alga

Udotea flabellum
Udotea flabellum (mermaid's fan algae) (San Salvador Island, Bahamas) 3 (15861991769).jpg
A group of Udotea flabellum off the coast of the Bahamas
Scientific classification edit
(unranked): Viridiplantae
Division: Chlorophyta
Class: Ulvophyceae
Order: Bryopsidales
Family: Udoteaceae
Genus: Udotea
Species:
U. flabellum
Binomial name
Udotea flabellum
(J.Ellis & Solander) M.Howe

Udotea flabellum is a species of photosynthetic macroalgae. It is commonly found in shallow waters around Florida and Belize in sandy areas, sea grass beds, and coral reefs. It is known for its antimicrobial properties[1][2] and is also being used in cancer treatment studies.[1]

Description

Udotea flabellum off the coast of the Bahamas.

Udotea flabellum is a green macroalgae. It attaches to the ground and has a thallus which grows in a fan shape, hence its nickname—mermaid's fan algae. The algae attaches to sand or mud with a system of rhizoids, root-like structures that form a hold fast.[3] It lacks a stem, leaves, roots and a vascular system, but does have a stem-like feature called a stipe. The thallus is often lobed, and the lobes are thick, leathery, and moderately calcified. The stipe is also often calcified.[citation needed]

Distribution and ecology

Species of the Udotea genus are found in tropical to subtropical locations. U. flabellum is found in waters of North America, the Atlantic islands, Mexico, the Caribbean, South America, the Indian Ocean, Africa, Australia, New Zealand and Asia. These algae are often found in coral reefs.[4] They also grow on sandy coastlines and in sea grass beds. They can be found in depths of up to 23 meters.[5] Since their thallus and stipe are calcified, when U. flabellum dies, it improves sediment nutrients and contributes to sediment production, which can help the reefs in the area to continue growing.[3] Algae such as U. flabellum are also the base of reef food webs. The photosynthetic plants contribute to primary production, which is the synthesis of organic compounds, mainly carbohydrates in algae, from carbon dioxide. U. flabellum provides a food source for marine herbivores.[6]

Research

In one in vitro study, an extract of Udotea flabellum was found to be most effective out of a number of tropical green seaweeds tested, in increasing plasma coagulation time.[1]

An extract of U. flabellum in ethanol has shown modest antimicrobial activity against Staphylococcus aureus and Candida albicans in one in vitro experiment. The researchers isolated the hydrates of a novel compound, which they named udoteatrial, from the algae extract, which they believed to be responsible the antimicrobial activity.[2]

References

  1. 1.0 1.1 1.2 Mendes Marques, Maxsuell; Presa, Fernando; Viana, Rony; Costa, Mariana; Amorim, Monica; Bellan, Daniel; Alves, Monique; Costa, Leandro et al. (2018). "Anti-Thrombin, Anti-Adhesive, Anti-Migratory, and Anti-Proliferative Activities of Sulfated Galactans from the Tropical Green Seaweed, Udotea flabellum". Marine Drugs 17 (1): 5. doi:10.3390/md17010005. PMID 30577590. 
  2. 2.0 2.1 Nakatsu, Tetsuo; Ravi, B. N.; Faulkner, D. John (June 1981). "Antimicrobial constituents of Udotea flabellum" (in en). The Journal of Organic Chemistry 46 (12): 2435–2438. doi:10.1021/jo00325a001. ISSN 0022-3263. 
  3. 3.0 3.1 Acosta-Calderon, Julio Adulfo; Hernández-Rodríguez, César; Mendoza-González, Ángela Catalina; Mateo-Cid, Luz Elena (2018-03-27). "Diversity and distribution of Udotea genus J.V. Lamouroux (Chlorophyta, Udoteaceae) in the Yucatan peninsula littoral, Mexico". Phytotaxa 345 (3): 179. doi:10.11646/phytotaxa.345.3.1. ISSN 1179-3163. https://biotaxa.org/Phytotaxa/article/view/phytotaxa.345.3.1. 
  4. Cummings, Joel (April 2003). "Algaebase2003195Edited by M.D. Guiry and Nic Dhonncha. Algaebase. Algaebase, 2002. Gratis URL: www.algaebase.org Last visited January 2003". Reference Reviews 17 (4): 37–38. doi:10.1108/09504120310474857. ISSN 0950-4125. 
  5. "Smithsonian Tropical Research Institute-Udotea flabellum". https://biogeodb.stri.si.edu/biodiversity/species/16496/. 
  6. Lønborg, Christian; Calleja, Maria L.; Fabricius, Katharina E.; Smith, Joy N.; Achterberg, Eric P. (March 2019). "The Great Barrier Reef: A source of CO2 to the atmosphere". Marine Chemistry 210: 24–33. doi:10.1016/j.marchem.2019.02.003. ISSN 0304-4203. Bibcode2019MarCh.210...24L. http://oceanrep.geomar.de/45847/1/Loenborg%20et.al.pdf. 

Wikidata ☰ Q3547741 entry