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Digenean parasites of deep-sea teleosts: a review and case studies of intrageneric phylogenies

Published online by Cambridge University Press:  16 October 2009

R. A. Bray*
Affiliation:
Department of Zoology, The Natural History Museum, Cromwell Road, London SW7 5BD, UK
D. T. J. Littlewood
Affiliation:
Department of Zoology, The Natural History Museum, Cromwell Road, London SW7 5BD, UK Division of Life Sciences, Franklin Wilkins Building, King's College London, 150 Stamford Street, London SEI 8WA, UK
E. A. Herniou
Affiliation:
Department of Zoology, The Natural History Museum, Cromwell Road, London SW7 5BD, UK
B. Williams
Affiliation:
Department of Zoology, The Natural History Museum, Cromwell Road, London SW7 5BD, UK
R. E. Henderson
Affiliation:
Department of Zoology, University of Aberdeen, Tillydrone Avenue, Aberdeen AB9 2TN, UK(Current address: International Centre for Island Technology (ICIT), Stromness, Orkney, UK)
*
* Dr R. A. Bray, The Department of Zoology, The Natural History Museum, Cromwell Road, London SW7 5BD, UK. Tel: 020 7942 5752; fax: 020 7942 5151; e-mail: [email protected]

Summary

Studies on the digenean parasites of deep-sea (> 200 m depth) teleosts are reviewed and two case study generic phylogenies are presented based on LSU rDNA and ND1 mtDNA sequences. The phylogeny of the lepocreadiid genus Lepidapedon, the most common deep-sea digenean genus, is not clearly resolved as the two gene trees are not compatible. It can be inferred, however, that the genus has radiated in the deeper waters off the continental shelf, mainly in fishes of the gadiform family Macrouridae. Steringophorus, a fellodistomid genus, is better resolved. In this case a deep-sea radiation is also indicated, but the pattern of host-specificity is not clear, with evidence of much host-switching. Results of studies of the parasites of the macrourid fish Coryphaenoides (Nematomirus) armatus from various depths have reinforced recent views on the lack of zoned depth-related communities in the deep-sea. The diversity of deep-sea digeneans is relatively low with only 18 families (of about 60) reported. Little, or nothing, is known from most deep-sea areas and nothing from trenches and mid-ocean ridge systems.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1999

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References

REFERENCES

Amosova, I. S. (1955). [On the occurrence of metacercariae of digenetic trematodes in certain polychactes in the Barents Sea.] Zoologicheskii Zhurnal 34, 286 290 (In Russian).Google Scholar
Angel, M. V. (1997). What is the deep sea? In Deep-sea Fishes (ed. Randall, D. J. & Farrell, A. P.), pp. 141. San Diego, Academic Press.Google Scholar
Bell, E. J. (1887). Description of new species of Distomum. Annals and Magazine of Natural History (5th series) 19, 116117.CrossRefGoogle Scholar
Blend, C. K., Dronen, N. O. & Armstrong, H. W. (2000). Six new species of Lepidapedon Stafford, 1904 (Digenea: Lepocreadiidae) from deep-sea macrourid fishes from the Gulf of Mexico and Caribbean Sea, with revised keys to the species of the genus. Systematic Parasitology 45, 2951.CrossRefGoogle Scholar
Bray, R. A. (1985). Some helminth parasites of marine fishes of South Africa: Families Gorgoderidae, Zoogonidae, Cephaloporidae, Acanthocolpidae and Lepocreadiidae (Digenea). Journal of Natural History 19, 377405.CrossRefGoogle Scholar
BRAY, R. A. (1991). The helminth parasites of the deep-sea macrourid Coryphaenoides (Nematonurus) armatus. In Abstracts of reports. IIIrd International Symposium “Problems of Fish Parasitology” (Petrozavodsk). Petrozavodsk and Leningrad, Biological Institute KSC and Zoological Institute Academy of Sciences USSR, 1112.Google Scholar
Bray, R. A. (1995 a). Annotated checklist of digenean parasites of Macrouridae (Teleostei, Gadiformes). Ada Parasitologica 40, 169192.Google Scholar
Bray, R. A. (1995 b). Observations on the genus Steringophorus Odhner, 1905 (Digenea: Fellodistomidae) in deep-sea fishes from the northeastern Atlantic, with the description of Steringophorus margolisi n. sp. In Parasites of Aquatic Organisms: a Festschrift dedicated to Dr. Leo Margolis, O.C., Ph.D., F.R.S.C. (ed. Arthur, J. R.). Canadian Journal of Fisheries and Aquatic Sciences 52 (Suppl. 1), 7177.Google Scholar
Bray, R. A. & Campbell, R. A. (1995). Fellodistomidae and Zoogonidae (Digenea) from deep-sea fishes of the NW Atlantic Ocean. Systematic Parasitology 31, 201213.CrossRefGoogle Scholar
Bray, R. A. & Gaevskaya, A. V. (1993). Balhymonorchis polyipni (Reimer, 1985) n. g., n. comb. (Digenea: Monorchiidae) from bathypelagic fishes of the eastern mid-Atlantic Ocean. Systematic Parasitology 26, 9195.CrossRefGoogle Scholar
Bray, R. A. & Gibson, D. I. (1980). The Fellodistomidae (Digenea) of fishes from the north-east Atlantic. Bulletin of the British Museum (Natural History) (Zoology Series) 37, 199293.Google Scholar
Bray, R. A. & Gibson, D. I. (1991). The Lepocreadiidac (Digenea) of fishes from the north-cast Atlantic: Profundivcrmis intercalarius n. gen., n.sp. from the marine fish Coryphaenoides (Nematonurus) armatus (Hector) (Macrouridae) from the Porcupine Abyssal Plane. Systematic Parasitology 18, 121 125.CrossRefGoogle Scholar
Bray, R. A. & Gibson, D. I. (1995). The Lepocreadiidac (Digenea) of fishes of the north-cast Atlantic: a review of the genus Lepidapedon Stafford, 1904. Systematic Parasitology 31, 81132.CrossRefGoogle Scholar
Bray, R. A. & Gibson, D. I. (1997). The Lepocrcadiidae Odhner, 1905 (Digenea) of fishes from the north-east Atlantic: summary paper, with keys and checklists. Systematic Parasitology 36, 223228.CrossRefGoogle Scholar
Bray, R. A. & Merrett, N. R. (1998). Prodistomum priedei n. sp. (Digenea: Lepocreadiidae) from the deepwater cardinalfish Epigonus telescopus (Perciformes: Fpigonidae) in the northern Atlantic Ocean. Systematic Parasitology 41, 7177.CrossRefGoogle Scholar
Broad, W. J. (1997). The Universe Below. Discovering the Secrets of the Deep-sea. New York, TouchstoneGoogle Scholar
Campbell, R. A. (1977). Degeneria haiosauri (Bell, 1887) gen. ct comb, nov. (Digenea: Gorgodcridae) from the deep-sea teleost IIalosauropsis macrochir. Journal of Parasitology 63, 7679.CrossRefGoogle Scholar
Campbell, R. A. (1983). Parasitism in the deep sea. In The Sea. Volume 8 (ed. Rowe, G. T.), pp. 473 552. New York, John Wiley & Sons, Inc.Google Scholar
Campbell, R. A. (1990). Deep water parasites. Annales de Parasitologie Humaine et Comparée 65 (suppl. I), 65 68.CrossRefGoogle ScholarPubMed
Campbell, R. A., Haedrich, R. L. & Mcnroe, T. A. (1980). Parasitism and ecological relationships among deep-sea benthic fishes. Marine Biology 57, 301313.CrossRefGoogle Scholar
Chlbrik, G. K. (1966). [Fauna and ecology of trematode larvae from molluscs in the Barents and White Seas.] Trudy Murmanskii Morskoi Biologicheskii Institute 10(14), 78166 (In Russian).Google Scholar
Collarid, S. B. (1970). Some aspects of host-parasite relationships in mesopelagic fishes. In A Symposium on Diseases of Fishes and Shellfishes (ed. Snieszko, S. F.), pp. 41 56. Washington, D.C., American Fisheries Society, Special publication 5.Google Scholar
Cribb, T. H., Bray, R. A., Littlewood, D. T. J., Pichelin, S. P. & Hermou, E. A. (In press). The Digenea. In Interrelationships of the Platyhelminthes (ed. Littlewood, D. T. J & Bray, R. A.). London, Taylor and Francis.Google Scholar
Cunningham, C. W. (1997). Can three incongruence tests predict when data should be combined? Molecular Biology and Evolution 14, 733740.CrossRefGoogle ScholarPubMed
Dronen, N. O., Blend, C. K. & Mceachran, J. D. (1994). Echinobreviceca coelorhynchae n. gen., n. sp. (Echinobrevicecinae n. subf.), fellodistomid from Coelorhynchus coelorhynchus (Macrouridae) from the Gulf of Mexico. Journal of Parasitology 80, 309311.CrossRefGoogle Scholar
Ekman, S. (1953). Zoogeography of the Sea. London, Sidgwick & Jackson.Google Scholar
Eriksson, T. (1998). Autodecay version 4.0 (program distributed by the author). Department of Botany, Stockholm University, Stockholm.Google Scholar
Farris, J. S., Källersjö, M., Khuge, A. G. & Bult, C. (1994). Testing significance of incongruence. Cladistics 10, 315319.CrossRefGoogle Scholar
Gage, J. D. & Tyler, P. A. (1991). Deep-sea Biology: A Natural History of Organisms at the Deep-sea Floor. Cambridge, Cambridge University Press.CrossRefGoogle Scholar
Gartner, J. V. Jr & Zwerner, D. E. (1989). The parasite faunas of meso- and bathypelagic fishes of Norfolk Submarine Canyon, western North America. Journal of Fish Biology 34, 79 95.CrossRefGoogle Scholar
Gibson, D. I. & Bray, R. A. (1994). The evolutionary expansion and host-parasite relationships of the Digenea. International Journal for Parasitology 24, 1213 1226.CrossRefGoogle ScholarPubMed
Girola, C. V., Martorelli, S. R. & Sardella, N. H. (1992). Presencia de metacercarias de Monascns filiformis (Digenea, Fellodistomidae) en hidromedusas del Océano Atlántico Sur. Revista Chilena de Historia Natural 65, 409415.Google Scholar
Grassle, J. F. & Maciolek, N. J. (1992). Deep-sea species richness: regional and local diversity estimates from quantitative bottom samples. American Naturalist 139, 313341.CrossRefGoogle Scholar
Gusev, A. V. (1957). [Parasitological investigations on some deepwater fishes of the Pacific Ocean.] Trudy Instituta Okeanologii 27, 362366 (In Russian).Google Scholar
Haedrich, R. L. (1997). Distribution and population ecology. In Deep-sea Fishes (ed. Randall, D. J. & Farrell, A. P.), pp. 79114. San Diego, Academic Press.CrossRefGoogle Scholar
Hall, K. A., Cribb, T. H. & Barker, S. C. (1999). V4 region of small subunit rDNA indicates polyphyly of the Fellodistomidae (Digenea) which is supported by morphology and life-cycle data. Systematic Parasitology 43, 8192.CrossRefGoogle ScholarPubMed
Harrison, C. M. H (1996). On the first halosaur leptocephalus: from Madeira. Bulletin of the British Museum (Natural History) (Zoology) 14, 441 486.Google Scholar
Hessler, R. R., Wilson, G. D. & Thistle, D. (1979). The deep-sea isopods: a biogeographic and phylogenetic overview. Sarsia 64, 6776.CrossRefGoogle Scholar
Howes, G. J. (1991). Biogeography of gadoid fishes. Journal of Biogeography 18, 595 622.CrossRefGoogle Scholar
Huelsenbeck, J. P., Bull, J. P. & Cunningham, C. W. (1996). Combining data in phylogenetic analysis. Trends in Ecology and Evolution 11, 152158.CrossRefGoogle ScholarPubMed
Køie, M. (1979). On the morphology and life-history of Monascns [ = Haploeladus] filiformis (Rudolphi, 1819) Looss, 1907 and Steringophorus furciger (Olsson, 1868) Odhner, 1905 (Trematoda, Fellodistomidae). Ophelia 18, 113132.CrossRefGoogle Scholar
Køie, M. (1982). The redia, ccrcaria and early stages of Aporocotyle simplex Odhner, 1900 (Sanguinicolidae) -a digenetic trematode which has a polychaete annelid as the only intermediate host. Ophelia 21, 115 145.CrossRefGoogle Scholar
Køie, M. (1985). On the morphology and life-history of Lepidapedon elongatum (Lebour, 1908) Nicoll, 1910 (Trematoda: Lepocreadiidae). Ophelia 24, 135 153.CrossRefGoogle Scholar
Kinzig, R. (1999). The Restless Sea. New York: W. W. Norton.Google Scholar
Linklater, E. (1972). The Voyage of the Challenger. London, John Murray.Google Scholar
Linton, E. (1898). Notes on trematocie parasites of fishes. Proceedings of the United States National Museum 20, 507548.CrossRefGoogle Scholar
Littlewood, D. T. J, Rohde, K. & Clough, K. A. (1997). Parasite speeiation within and between host species ? phylogenetic evidence from site-specific polystome monogeneans. International Journal for Parasitology 27, 12891297.CrossRefGoogle ScholarPubMed
Lumb, S. M., Bray, R. A. & Rollinson, D. (1993). Partial small subunit (18S) rRNA gene sequences from fish parasites of the families Lepocreadiidae and Fellodistomidae (Digenea) and their use in phylogenetic analyses. Systematic Parasitology 26, 141149.CrossRefGoogle Scholar
Manter, H. W. (1934). Some digenetic trematodes from deep-water fish of Tortugas, Florida. Papers from Tortttgas Laboratory 28, 257346.Google Scholar
Manter, H. W. (1954). Some digenetic trematodes from fishes of New Zealand. Transactions of the Royal Society of New Zealand 82, 475568.Google Scholar
Markle, D. F. (1989). Aspects of character homology and phylogeny of the Gadiformes. In Papers on the Systematic of Gadiform Fishes (ed. Cohen, D. M.), pp. 5988. Los Angeles: Natural History Museum of Los Angeles County, Science series, 32.Google Scholar
Martorelli, S. R. & Cremonte, F. (1998). A proposed three-host life history of Monascus filiformis (Rudolphi, 1819) (Digenea: Fellodistomidae) in the southwest Atlantic Ocean. Canadian Journal of Zoology 76, 11981203.CrossRefGoogle Scholar
May, R. M. (1992). Bottoms up for the oceans. Nature 357, 278279.CrossRefGoogle Scholar
Mccauley, J. E. (1968). Six species of Lepidapedon Stafford, 1904 (Trematoda: Lepocreadiidae) from deep-sea fishes. Journal of Parasitology 54, 496505.CrossRefGoogle Scholar
Merrett, N. R. & Haedrich, R. L. (1997). Deep-sea Demersal Fish and Fisheries. London, Chapman & Hall.Google Scholar
Morgan, J. A. T & Blair, D. (1998). Mitochondrial ND1 gene sequences used to identify echinostome isolates from Australia and New Zealand. International Journal for Parasitology 28, 493 502.CrossRefGoogle ScholarPubMed
Moseley, H. N. (1880). Deep-sea dredging and life in the deep-sea. III. Nature 21, 591593.Google Scholar
Nelson, J. S. (1994). Fishes of the World (Third Edition). New York, John Wiley & Sons, Inc.Google Scholar
Noble, E. R. (1973). Parasites and fishes in a deep-sea environment. Advances in Marine Biology 11, 121195.CrossRefGoogle Scholar
Odhner, T. (1911). Zum natürlichen System der digenen Trematoden. H. Zoologischen Anzeiger 37, 237253.Google Scholar
Page, R. D. M & Charleston, M. A. (1997). From gene to organismal phylogeny: reconciled trees and the gene tree/species tree problem. Molecular Phylogenetics and Evolution 7, 231240.CrossRefGoogle ScholarPubMed
Poore, G. C. B & Wilson, G. D. F (1993). Marine species richness. Nature 361, 597598.CrossRefGoogle Scholar
Rex, M. A. (1973). Deep-sea species diversity: decreased gastropod diversity at abyssal depths. Science 181, 10511053.CrossRefGoogle ScholarPubMed
Rowe, G. T. (1983). Biomass and production of the deep-sea macrobenthos. In The Sea. Volume 8 (ed. Rowe, G. T.), pp. 97121. New York, John Wiley & Sons, Inc.Google Scholar
Saiki, R. F., Gelfand, D. H., Stofeel, S., Scharf, S. J., Higuchi, R., Horn, G. T., Miullis, K. B. & Erlich, A. H. (1988). Primer-directed enzymatic amplification of DNA with a thermostable DNA polymerase. Science 239, 489491.CrossRefGoogle ScholarPubMed
Silzveriserg, R. (1991). The Face of the Waters. London: GraftonBooks.Google Scholar
Smith, J. W. (1997). The blood flukes (Digenea: Sanguinicolidae and Spirorchiidae) of cold-blood vertebrates: Part 1. A review of the literature published since 1971, and bibliography. Helminthological Abstracts 66, 255 294.Google Scholar
Smyth, J. D. & Halton, D. W. (1983). The Physiology of Trematodes. Second edition. Cambridge: Cambridge University Press.Google Scholar
Somero, G. N. (1992). Adaptation to high hydrostatic-pressure. Annual Review of Physiology 54, 557577.CrossRefGoogle ScholarPubMed
Somero, G. N. (1998). Adaptation to cold and depth: contrasts between polar and deep-sea animals. In Cold Ocean Physiology (ed. Pörtner, H. O. & Playle, R. C.), pp. 3357. Cambridge, Cambridge University Press.CrossRefGoogle Scholar
Swofford, D. L. (1998). PAUP*: Phylogenetic Analysis Using Parsimony (and other methods), version 4.0. Massachussetts: Sinauer Associates.Google Scholar
Thompson, J. D., Higgins, D. G. & Gibson, T. J. (1994). CLUSTAL-W improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice. Nucleic Acids Research 22, 46734680.CrossRefGoogle ScholarPubMed
Tyler, P. A. (1995). Conditions for the existence of life at the deep-sea floor: an update. Oceanography and Marine Biology 33, 221244.Google Scholar
Vincx, M., Bett, B. J., Dinet, A., Ferrero, T., Gooday, A. J., Lambshead, P. J. D., Pfannkuche, O., Soltwedel, T. & Vanreusel, A. (1994). Meiobenthos of the deep northeast Atlantic. Advances in Marine Biology 30, 188.CrossRefGoogle Scholar
von Linstow, O. (1888). Report on the Entozoa collected by H. M. S. Challenger during the years 1873–1876. Report of the Scientific Results of the Voyage of H. M. S. Challenger 1873 1876 23, 118.Google Scholar
Wagener, G. R. (1852). Enthelminthica No. III. Archiv für Anatomie, Physiologie und wissenschaftliche Medicin, 555569.Google Scholar
Weitzman, S. H. (1997). Systematics of deep-sea fishes. In Deep-sea Fishes (ed. Randall, D. J. & Farrell, A. P.), pp. 4377. San Diego, Academic Press.CrossRefGoogle Scholar
Williams, H. H. & Jones, A. (1994). Parasitic Worms of Fish. London, Taylor & Francis.CrossRefGoogle Scholar
Woodward, A. S. (1898). The antiquity of the deep-sea fish-fauna. Natural Science 12, 257260.Google Scholar
Yamaguttl, S. (1938). Studies on the Helminth Fauna of Japan. Part 21. Trematodes of Fishes, IV. Kyoto, Satyû Yamaguti.Google Scholar
Zdzitowikcki, K. (1997 a). Antarctic Digenea parasites of fishes. Synopses of the Antarctic Benthos 8, 1156.Google Scholar
Zozitowiecki, K. (1997 b). Digenea of fishes of the Weddell Sea. V. Two new species of the genus Steringophorus (Fellodistomidae). Acta Parasitologica 42, 144148.Google Scholar
Zdzitowiecki, K. & Cielecka, D. (1997). Digenea of fishes of the Weddell Sea. I. Parasites of Macrourus whitsoni (Gadiformes, Macrouridae). Ada Parasitologica 42, 2330.Google Scholar
Zubchenko, A. V. (1981 a). Use of parasitological data in studies of the local groupings of rock grenadier, Coryphaenoides rupestris Gunner. In Abstracts. Symposium on Parasitoiogy and Pathology of Marine Organisms (ed. Bauer, O. N.), pp. 2532. Leningrad: Nauka, Leningrad Branch (In Russian: English translation (1985) NOAA Technical Reports NMFS 25, 19–23).Google Scholar
Zubchknko, A. V. (1981 b). Parasitic fauna of some Macrouridae in the northwest Atlantic. Journal of Northwest Atlantic Fishery Science 2, 6772.CrossRefGoogle Scholar
Zubchenko, A. V. (1984). Ecological peculiarities of parasite fauna of some Alepocephalidae. In Ecological-parasitological Investigations of Northern Seas (ed. Polyansky, Y. I., Galaktionov, K. V. & Dobrovolsky, A. A.), pp. 7781. Apatity, Kola Branch of Academy of Sciences of the USSR, Murmansk Biological Institute (In Russian).Google Scholar