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Ascidian (Chordata, Ascidiacea) diversity in the Red Sea

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Abstract

Although the Red Sea is considered as a center of endemism and a ‘hotspot’ of biodiversity, the ascidian fauna (Chordata, Ascidiacea) of the region has been poorly studied. The current study provides a review of the literature concerning the ascidian fauna of the Red Sea, including the Gulf of Aqaba and the Gulf of Suez, an updated species list based on extensive field sampling and museum data, and an analysis of the diversity and rates of endemism of the Ascidiacea of the Red Sea. The inventory lists 73 ascidian species, belonging to 13 families. The majority of species records are of colonial species, as typical of tropical regions. Representatives of 30 species are available at the National Collections of Natural History at Tel Aviv University. Only 12 species (17 %) of the Red Sea ascidians were found to be endemic to the region, whereas the majority have an extra Indo-Pacific distribution. Eight species have been recorded for the first time from this region. The Gulf of Aqaba and the Gulf of Suez represent the northern boundary of the natural distribution for the majority of tropical species recorded in this study. However, several species have successfully entered the Mediterranean Sea through the Suez Canal. This list is certainly incomplete and emphasizes the need to increase the sampling effort for this group, and for additional taxonomic studies of the ascidian fauna of this highly diverse and rich region.

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References

  • Ayre DJ, Davis AR, Billingham M, Llorens T, Styan C (1997) Genetic evidence for contrasting patterns of dispersal in solitary and colonial ascidians. Mar Biol 130:51–62

    Article  Google Scholar 

  • Bak RPM, Lambrechts DYM, Joenje M, Nieuwland G, Van Veghel MLJ (1996) Long-term changes on coral reefs in booming populations of a competitive colonial ascidian. Mar Ecol Prog Ser 133:303–306

    Article  Google Scholar 

  • Bak RPM, Joenje M, de Jong I, Lambrechts DYM, Nieuwland G (1998) Bacterial suspension feeding by coral reef benthic organisms. Mar Ecol Prog Ser 175:285–288

    Article  Google Scholar 

  • Bone Q, Carre C, Chang P (2003) Tunicate feeding filters. J Mar Biol Assoc UK 83:907–919

    Article  Google Scholar 

  • Fishelson L (1971) Ecology and distribution of benthic fauna in shallow waters of Red Sea. Mar Biol 10(2):113–133

    Article  Google Scholar 

  • Fishelson L (2011) Red Sea explorations by Israeli Zoologists – 1951–2010. Museum of natural history, Tel-Aviv University. Available on line http://www.mnh.tau.ac.il/upload/Red%20Sea%20Explorations%2026.2.pdf

  • Fujita H, Nanba H (1971) Fine structure and its functional properties of the endostyle of ascidians, Ciona intestinalis: a part of phylogenetic studies of the thyroid gland. Z Zellforsch Mikrosk Anat 121:455–469

    Article  PubMed  CAS  Google Scholar 

  • Gab-Alla AAFA (2008) Distribution of the sea squirt Ecteinascidia thurstoni Herdman, 1890 (Ascidiacea: Perophoridae) along Suez Canal and Egyptian Red Sea coasts. Oceanologia 50(2):239–253

    Google Scholar 

  • Hartmeyer R (1903) Die Ascidien der arktis. In: Romer F, Schaudin F (eds). Fauna Arctica, 3(2):93–412

  • Hartmeyer R (1915) Über einige Ascidien aus dem Golf von Suez. Sitzber Ges Natturforsch Freunde Berlin 9:397–430

    Google Scholar 

  • Kiflawi M, Belmaker J, Brokovich E, Einbinder S, Holzman R (2006) The determinants of species-richness of a relatively young coral-reef ichthyofauna. J Biogeogr 33:1289–1294

    Article  Google Scholar 

  • Kott P (1981) The ascidians of the reef flats of Fiji. Proc Linn Soc NSW 105:147–212

    Google Scholar 

  • Kott P (1985) The Australian ascidiacea. Part 1: phlebobranchiata and stolidobranchiata. Mem Queensland Mus 23:1–440

    Google Scholar 

  • Kott P (1990) The Australian ascidiacea. Part 2: aplousobranchia (1). Mem Queensland Mus 29(1):1–226

    Google Scholar 

  • Kott P (1992) The Australian ascidiacea. Part 3: aplousobranchia (2). Mem Queensland Mus 32(2):375–620

    Google Scholar 

  • Kott P (2001) The Australian ascidiacea. Part 4: aplousobranchia (3), didemnidae. Mem Queensland Mus 47(1):1–407

    Google Scholar 

  • Koukouras A, Voultsiadou-Koukoura E, Kevrekidis T, Vafidis D (1995) Ascidian fauna of the Aegean sea with a check list of the Eastern Mediterranean and Black sea species. Ann Inst Oceanogr 71:19–34

    Google Scholar 

  • Kühl M, Larkum AWD (2002) The microenvironment and photosynthetic performance of Prochloron sp. in symbiosis with didemnid ascidians. In: Seckbach J (ed) Cellular origin and life in extreme habitats vol 3: symbiosis, mechanisms and model systems. Kluwer, Dordrecht, pp 273–290

    Google Scholar 

  • Lambert G (2001) A global overview of ascidian introductions and their possible impact on the endemic fauna. In: Sawada H, Yokosawa H, Lambert CC (eds) The biology of ascidians. Springer, Tokyo, pp 249–257

    Google Scholar 

  • Lambert G (2005) Ecology and natural history of the protochordates. Can J Zool 83:34–50

    Article  Google Scholar 

  • Michaelsen W (1918) Ascidia ptychobranchia und dictyobranchia des roten meeres. Expedition Schiff Pola in das Rote Meer, nördliche und südliche Hälfte 1895/1896–1897/1898. Zool Ergebn 32:1–120, 3 pls

    Google Scholar 

  • Millar RH (1971) The biology of ascidians. Adv Mar Biol 9:1–100

    Article  Google Scholar 

  • Monniot C (1973) Redescription de six ascidies du golfe d’Elat recoltées par H. Schuhmacher. Isr J Zool 22:51–62

    Google Scholar 

  • Monniot C, Monniot F (1985) Ascidies littorales de Guadeloupe. IX: caractéristiques des populations, écologie, rapports avec la faune mondiale. Tethys 11:203–213

    Google Scholar 

  • Monniot F, Monniot C (2001) Ascidians from the tropical western Pacific. Zoosystema 23:201–383

    Google Scholar 

  • Monniot C, Monniot F, Laboute P (1991) Coral reef ascidians of New Caledonia. Orstom, Paris

    Google Scholar 

  • Newlon AWI, Yund PO, Stewart-Savage J (2003) Phenotypic plasticity of reproductive effort in a colonial ascidian, Botryllus schlosseri. J Exp Zool A 297:180–188

    Google Scholar 

  • Oren U, Benayahu Y (1998) Didemnid ascidians: rapid colonizers of artificial reefs in Eilat (Red Sea). Bull Mar Sci 63:199–206

    Google Scholar 

  • Paulay G, Kirkendale L, Lambert G, Starmer J (2001) The marine invertebrate biodiversity of Apra Harbor: significant areas and introduced species, with focus on sponges echinoderms and ascidians. Prepared for Naval Activities Guam, under Cooperative Agreement N68711-97-LT-70001

  • Pérès JM (1960) Sur une collection d’ascidies de la côte israelienne de la Mer Rouge et de la péninsule du Sinai. Bull Sea Fish Res Haifa 30:39–47

    Google Scholar 

  • Primo C, Vazquez E (2004) Zoogeography of the southern African ascidian fauna. J Biogeogr 31:1987–2009

    Article  Google Scholar 

  • Primo C, Vazquez E (2007) Zoogeography of the Antarctic ascidian fauna in relation to the sub-Antarctic and South America. Antarct Sci 19:321–336

    Article  Google Scholar 

  • Primo C, Vazquez E (2009) Antartic ascidians: an isolated and homogeneous fauna. Polar Res 28:403–414

    Article  Google Scholar 

  • Rahmstorf S, Ganopolski A (1999) Long-term global warming scenarios computed with an efficient coupled climate model. Clim Change 43:353–367

    Article  CAS  Google Scholar 

  • Roberts CM, McClean CJ, Veron JEN, Hawkins JP, Allen GR, McAllister DE, Mittermeier CG, Schueler FW, Spalding M, Wells F, Vynne C, Werner TB (2002) Marine biodiversity hotspots and conservation priorities for tropical reefs. Science 295:1280–1284

    Article  PubMed  CAS  Google Scholar 

  • Savigny JC (1816) Memoires sur les animaux sans vertebres. Paris 2:1–239

    Google Scholar 

  • Shenkar N, Monniot F (2006) A new species of the genus Botryllus (Ascidiacea) from the Red Sea. Zootaxa 1256:11–19

    Google Scholar 

  • Shenkar N, Zeldman Y, Loya Y (2008a) Ascidian recruitment patterns on an artificial reef in Eilat (Red Sea). Biofouling 24:119–128

    Article  PubMed  Google Scholar 

  • Shenkar N, Bronstein O, Loya Y (2008b) Population dynamics of a coral reef ascidian in a deteriorating environment. Mar Ecol Prog Ser 367:163–171

    Article  Google Scholar 

  • Shenkar N, Loya Y (2008) Ecology and systematics of the ascidian fauna in the Gulf of Eilat (Aqaba). In: Por FD (ed) Aqaba-eilat, the improbable gulf. Environment, biodiversity and preservation. Magnes, Jerusalem, pp 197–208

    Google Scholar 

  • Shenkar N, Loya Y (2009) Non-indigenous ascidians along the Mediterranean coast of Israel. Mar Biodiver Rec 2. doi:10.1017/S1755267209990753

  • Shenkar N, Lambert G (2010) A new species of the genus Boltenia (Ascidiacea) from the Red Sea. Zootaxa 2391:61–68

    Google Scholar 

  • Shenkar N, Swalla BJS (2011) Global diversity of ascidiacea. PLoS One 6(6):e20657

    Article  PubMed  CAS  Google Scholar 

  • Shenkar N, Gittenberger A, Lambert G, Rius, Rocha RM, Swalla BJ, Turon X (2012) World ascidiacea database. Available online at http://www.marinespecies.org/ascidiacea. Consulted on 2012-02-08

  • Sheppard C, Price A, Roberts C (1992) Marine ecology of the Arabian region. Patterns and processes in extreme tropical environments. Academic, London

    Google Scholar 

  • Siddall M, Rohling EJ, Almogi-Labin A, Hemleben C, Meischner D, Schmelzer I, Smeed DA (2003) Sea-level fluctuations during the last glacial cycle. Nature 423:853–858

    Article  PubMed  CAS  Google Scholar 

  • Sommer B, Harrison PL, Scheffers SR (2009) Aggressive colonial ascidian impacting deep coral reefs at Bonaire, Netherlands Antilles. Coral Reefs 29:245

    Article  Google Scholar 

  • Tokioka T (1962) Contribution to Japanese ascidian fauna. 19. Addition to Japanese ascidian fauna, with notes on two already known species. Publ Seto Mar Biol Lab 10:259–282

    Google Scholar 

  • Van Name WG (1921) Ascidians of the West Indian region and south eastern United States. Bull Am Mus Nat Hist 44:283–494

    Google Scholar 

  • Van Name WG (1931) New North and South American ascidians. Bull Am Mus Nat Hist 61:207–227

    Google Scholar 

  • Van Name WG (1945) The North and South American ascidians. Bull Am Mus Nat Hist 84:1–476

    Google Scholar 

  • Van Name WG (1952) The ‘Manihine’ expedition to the Gulf of Aqaba 1948–1949 station list and collectors’ notes. Preliminary hydrological report. Tunicata. Bull Brit Mus Nat Hist (zool) 1(8):215–220

    Google Scholar 

  • Vargas-Ángel B, Godwin LS, Asher J, Brainard R (2009) Invasive didemnid tunicate spreading across coral reefs at remote Swains Island, American Sāmoa. Coral Reefs 28:53

    Article  Google Scholar 

  • Wilkinson CR (2004) Status of coral reefs of the world (Global coral reef monitoring network and Australian institute of marine science, Townsville, Australia). Available online http://www.gcrmn.org/status2004.aspx

Download references

Acknowledgments

The author would like to thank Dr. M. Goren and Prof. Emeritus L. Fishelson for their advice and helpful suggestions, and A. Shlagman and R. Ben-David Zaslow from the National Collections of Natural History at Tel Aviv University for their technical assistance. The author is grateful to G. Lambert for her assistance with the taxonomic identification. This research was supported by the Steinhardt National Collections of Natural History (Zoological Museum, Tel Aviv University) and by a fellowship of the Israel Taxonomy Initiative.

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Correspondence to Noa Shenkar.

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Shenkar, N. Ascidian (Chordata, Ascidiacea) diversity in the Red Sea. Mar Biodiv 42, 459–469 (2012). https://doi.org/10.1007/s12526-012-0124-5

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