Fucus vesiculosus explained

Fucus vesiculosus, known by the common names bladderwrack, black tang, rockweed, sea grapes, bladder fucus, sea oak, cut weed, dyers fucus, red fucus and rock wrack, is a seaweed found on the coasts of the North Sea, the western Baltic Sea and the Atlantic and Pacific Oceans. It was the original source of iodine, discovered in 1811, and was used extensively to treat goitre, a swelling of the thyroid gland related to iodine deficiency.[1]

Description

The fronds of F. vesiculosus grow to 150cm (60inches) long and 2.5cm (01inches) wide and have a prominent midrib throughout. It is attached by a basal disc-shaped holdfast. It has almost spherical air bladders, which are usually paired one on either side of the mid-rib but may be absent in young plants. The margin is smooth and the frond is dichotomously branched. It is sometimes confused with Fucus spiralis with which it hybridises and is similar to Fucus serratus.[2] [3]

Distribution

Fucus vesiculosus is a common large alga on the shores of the British Isles.[4] It has been recorded from the Atlantic shores of Europe, Northern Russia, the Baltic Sea, Greenland, Azores, Canary Islands, Morocco and Madeira.[5] [6] It is also found on the Atlantic coast of North America from Ellesmere Island, Hudson Bay to North Carolina.

Ecology

The species is especially common on sheltered shores from the middle littoral to lower intertidal levels.[7] It is rare on exposed shores, where any specimens may be short, stunted and without the air vesicles.[8] F. vesiculosus supports few colonial organisms but provides a canopy and shelter for the tube worm Spirorbis spirorbis, herbivorous isopods such as Idotea and surface-grazing snails such as Littorina obtusata.[2] Phlorotannins in Fucus vesiculosus act as chemical defenses against the marine herbivorous snail Littorina littorea,[9] while galactolipids act as herbivore deterrents against the sea urchin Arbacia punctulata.[10] Methyl jasmonate may induce the phlorotannins production.[11] Fucophlorethol A is a type of phlorotannin found in F. vesiculosus.[12]

Biology

Plants of F. vesiculosus are dioecious. Gametes are generally released into the seawater under calm conditions, and the eggs are fertilized externally to produce a zygote.[2] Eggs are fertilized shortly after being released from the receptacle. A study on the coast of Maine showed that there was 100% fertilization at both exposed and sheltered sites.[2] Continuously submerged populations in the Baltic Sea are very responsive to turbulent conditions. High fertilization success is achieved because the gametes are released only when water velocities are low.[13]

Individuals of F. vesiculosus from the North Sea colonized the Baltic Sea less than 8,000 years ago. The event is paralleled by a switch from what seems to be obligate sexual recruitment to facultative asexual recruitment.[14] Asexual reproduction in Baltic Sea populations is accomplished by the production of adventitious branches that come loose and reattach to the bottom by the formation of rhizoids. Adventitious branches are present in thalli of F. vesiculosus in other areas too but asexual formation of new thalli has never been reported outside the Baltic Sea.[15]

Consumption

Fucus vesiculosus is sold as a nutritional supplement. Primary chemical constituents include mucilage, algin, mannitol, fucitol, beta-carotene, zeaxanthin, volatile oils, iodine, bromine, potassium and other minerals.

Adverse effects

Consumption of F. vesiculosus can cause platelet inhibition, which may potentiate the anticoagulant activity of warfarin (Coumadin).[16] It should be avoided before surgery.

Some people may suffer an allergic reaction to the iodine in F. vesiculosus.[17]

See also

External links

Notes and References

  1. Web site: Bladderwrack . WebMD . 27 September 2018.
  2. Web site: Bladder wrack – Fucus vesiculosus . . December 13, 2013 . Nicola White . 2008 . https://web.archive.org/web/20120402225927/http://www.marlin.ac.uk/taxonomyidentification.php?speciesID=3348 . 2012-04-02 . dead .
  3. Newton, L. 1931. A Handbook of British Seaweeds. London. British Museum (Natural History)
  4. Book: F. G. Hardy . M. D. Guiry . Michael D. Guiry . 2003 . A Check-list and Atlas of the Seaweeds of Britain and Ireland . British Phycological Society . London . 978-0-9527115-1-3 . 2014-01-18 . 2014-02-01 . https://web.archive.org/web/20140201174146/http://www.seaweed.ie/check-list/check-list.pdf . dead .
  5. Web site: Fucus vesiculosus Linnaeus . . January 12, 2007 . . M. D. Guiry . Wendy Guiry . April 22, 2012.
  6. Charlotta A. Nygård . Matthew J. Dring . Influence of salinity, temperature, dissolved inorganic carbon and nutrient concentration on the photosynthesis and growth of Fucus vesiculosus from the Baltic an Irish Seas . European Journal of Phycology . 43 . 3 . 253–262 . 2008 . 10.1080/09670260802172627. free .
  7. Book: W. R. Taylor . 1957 . Marine Algae of the Northeastern Coast of North America . University of Michigan, Ann Arbor . 978-0-472-04904-2.
  8. Book: C. S. Lobban . P. J. Harrison . 1994 . Seaweed Ecology and Physiology . Cambridge University Press, Cambridge . 978-0-521-40897-4.
  9. J. A. Geiselman . O. J. McConnell . 1981 . Polyphenols in brown algae Fucus vesiculosus and Ascophyllum nodosum: chemical defenses against the marine herbivorous snail, Littorina littorea . . 7 . 6 . 1115–1133 . 10.1007/BF00987632. 24420835 . 21550668 .
  10. Michael S. Deal . Mark E. Hay . Dean Wilson . William Fenical . 2003 . Galactolipids rather than phlorotannins as herbivore deterrents in the brown seaweed Fucus vesiculosus . . 136 . 1 . 107–114 . 10.1007/s00442-003-1242-3. 12684854 . 2003Oecol.136..107D . 5821145 .
  11. Thomas M. Arnold . Nancy M. Targett . Christopher E. Tanner . Walter I. Hatch . Kirstin E. Ferrari . 2001 . Evidence for methyl jasmonate-induced phlorotannin production in Fucus vesiculosus (Phaeophyceae) . . 37 . 6 . 1026–1029 . 10.1046/j.1529-8817.2001.01130.x. 84362547 .
  12. Sabine Parys . Stefan Kehraus . Anja Krick . Karl-Werner Glombitza . Shmuel Carmeli . Karin Klimo . Clarissa Gerhäuser . Gabriele M. König . 2010 . In vitro chemopreventive potential of fucophlorethols from the brown alga Fucus vesiculosus L. by anti-oxidant activity and inhibition of selected cytochrome P450 enzymes . . 71 . 2–3 . 221–229 . 10.1016/j.phytochem.2009.10.020. 19954804 . 2010PChem..71..221P .
  13. E. A. Serrao . G. Pearson . L. Kautsky . S. H. Brawley . Susan Brawley. 1996 . Successful external fertilization in turbulent environments . . 93 . 11 . 5286–5290 . 1996PNAS...93.5286S . 11607682 . 39237 . 10.1073/pnas.93.11.5286. free .
  14. Tatarenkov . A. . Bergström . L. . Jönsson . R. B. . Serrão . E. A.. Kautsky. L. . Kerstin Johannesson. Johannesson . K. . February 2005. Intriguing asexual life in marginal populations of the brown seaweed Fucus vesiculosus . Molecular Ecology . 14 . 2 . 647–651 . 10.1111/j.1365-294X.2005.02425.x . 15660953. 16619196 .
  15. Ardehed . Angelica . Johansson . Daniel . Sundqvist . Lisa. Schagerström . Ellen . Zagrodzka . Zuzanna . Kovaltchouk . Nikolaj A.. Bergström . Lena . Kautsky . Lena . Rafajlovic . Marina . 2016-08-15 . Divergence within and among Seaweed Siblings (Fucus vesiculosus and F. radicans) in the Baltic Sea . PLOS ONE . 11 . 8. e0161266 . 10.1371/journal.pone.0161266 . 27525655 . 4985153 . 2016PLoSO..1161266A. free .
  16. Web site: Herbs to Avoid Before Surgery . University of Texas, El Paso . 2019-03-27 . 2019-03-27 . https://web.archive.org/web/20190327190056/http://www.herbalsafety.utep.edu/herbs-to-avoid-before-surgery/ . dead .
  17. Web site: Bladderwrack . December 13, 2013 . . National Institutes of Health.