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A brief look at the free-living Nematoda of the oxic/anoxic interface with a new genus record (Trefusia) for the Black Sea Cover

A brief look at the free-living Nematoda of the oxic/anoxic interface with a new genus record (Trefusia) for the Black Sea

Open Access
|Dec 2015

References

  1. Balsamo M., Albertelli G., Ceccherelli V.U., Coccioni R., Colangelo M.A., Curini-Galletti M., Danovaro R., D’Addabbo R., Leonardis C., Fabiano M., Frontalini F., Gallo M., Gambi C., Guidi L., Moreno M., Pusceddu A., Sandulli R., Semprucci F., Todaro M.A., Tongiorgi P. (2010). Meiofauna of the Adriatic Sea: current state of knowledge and future perspectives. Chemistry and Ecology, 26: 1, 45-63.10.1080/02757541003705492
  2. Bouwman, L.A., Romeyn K., Kremer D.R. & Es F.B. (1984). Occurrence and feeding biology of some nematode species in aufwuchs communities. Cahiers de Biologie Marine 25: 287-303.
  3. Braeckman, U., Vanaverbeke J., Vincx M., van Oevelen D. & Soetaert K. (2013). Meiofauna metabolism in suboxic sediments: currently overestimated. PLOS One 8(3): e59289. DOI: 10.1371/journal.pone.0059289.10.1371/journal.pone.0059289
  4. Brennan, M.L., Davis D., Roman C., Buynevich I., Catsambis A. et al. (2013). Ocean dynamics and anthropogenic impacts along the southern Black Sea shelf examined through the preservation of pre-modern shipwrecks. Continental Shelf Research 53: 89-101. DOI: 10.1016/j.csr.2012.12.010.10.1016/j.csr.2012.12.010
  5. Cook, A.A., Lambshead P.J., Hawkins L.E., Mitchell N., Levin L.A. (2000). Nematode abundance at the Oxygen Minimum Zone in the Arabian Sea. Deep-Sea Research II 47:75-85. DOI: 10.1016/s0967-0645(99)00097-1.10.1016/S0967-0645(99)00097-1
  6. Çınar, M.E. (2014). Checklist of the phyla Platyhelminthes, Xenacoelomorpha, Nematoda, Acanthocephala, Myxozoa, Tardigrada, Cephalorhyncha, Nemertea, Echiura, Brachiopoda, Phoronida, Chaetognatha, and Chordata (Tunicata, Cephalochordata, and Hemichordata) from the coasts of Turkey. Turkish Journal of Zoology 38: 698-722. DOI: 10.3906/zoo-1405-70.10.3906/zoo-1405-70
  7. Duman, M., Duman S., Lyons T.W., Avci M., Izdar E., Demirkurt E. (2006). Geochemistry and sedimentology of shelf and upper slope sediments of the south-central Black Sea. Marine Geology 227:51-65. DOI: 10.1016/j. margeo.2005.11.009.
  8. Frontalini F., Semprucci F., Coccioni R., Balsamo M., Bittoni P., Covazzi-Harriague A. (2011). On the quantitative distribution and community structure of the meio and macrofaunal communities in the coastal area of the Central Adriatic Sea (Italy). Environmental Monitoring and Assessment, 180:325-344. DOI: 10.1007/s10661-010-1791-y.10.1007/s10661-010-1791-y
  9. Gooday, A.J., Bernhard J.M., Levin L.A. & Suhr S. (2000). Foraminifera in the Arabian Sea oxygen minimum zone and other oxygen deficient settings: taxonomic composition, diversity and relation to metazoan faunas. Deep-Sea Research II 47:25-54. DOI: 10.1016/s0967-0645(99)00099-5.10.1016/S0967-0645(99)00099-5
  10. Gooday, A.J., Bett B.J., Ecobar E., Ingole B. & Levin L.A. (2010). Habitat heterogeneity and its influence on benthic biodiversity in oxygen minimum zones. Marine Ecology An Evolutionary Perspective, Blackwell Verlag GmbH, 31:125-147. DOI: 10.1111/j.1439-0485.2009.00348.x.10.1111/j.1439-0485.2009.00348.x
  11. Giere, O. (2009). Meiobenthology. The Microscopic Motile Fauna of Aquatic Sediments.2nd ed. Berlin, Heidelberg, Springer- Verlag. DOI: 10.1007/b106489.
  12. Hulings, N. & Gray J.A. (1971). Manual for the study of meiofauna. Smithsonian Contributions to Zoology.10.5479/si.00810282.78
  13. Leduc, D. (2013). Two new free-living nematode species (Trefusiina: Trefusiidae) from the Chatham Rise crest, Southwest Pacific Ocean. European Journal of Taxonomy 55:1-13. DOI: 10.5852/ejt.2013.55.10.5852/ejt.2013.55
  14. Levin, L.A., Huggett C.L. & Wishner K.F. (1991). Control of deep-sea benthic community structure by oxygen and organic-matter gradients in the eastern Pacific Ocean. Journal of Marine Research 49:763-800. DOI: 10.1357/002224091784995756.10.1357/002224091784995756
  15. Levin, L.A., Gage J.D., Martin C. & Lamont P.A. (2000). Macrobenthic community structure within and beneath the oxygen minimum zone, NW Arabian Sea. Deep-Sea Research II 47: 189-226. DOI: 10.1016/S0967-0645(99)00103-4.10.1016/S0967-0645(99)00103-4
  16. Levin, L.A., James D.W., Martin C.M., Rathburn A., Harris L., Michener R. (2001). Do methane seeps support distinct infaunal assemblages? Observations on community structure and nutrition from the northern California slope and shelf. Marine Ecology Progress Series. 208: 21-39.
  17. Levin, L.A. (2003). Oxygen minimum zone benthos: adaptation and community response to hypoxia. Oceanography and Marine Biology 41:1-45.
  18. Kiseleva, M.I. (1963). On the fauna of Polychaeta in the Black Sea. Trudy Sevastopolskoy Biologicheskoy Stanstsii 15:75-89 (In Russian).
  19. Luth, U. & Luth C. (1998). Benthic meiofauna and macrofauna of a methane seep area South-west of the Crimean Peninsula, Black Sea. In Luth U., Luth C. & Thiel H. (Eds.), MEGA-SEEPS- Methane Gas Seeps Exploration in the Black Sea (pp. 59-77). Berichte aus dem Zentrum fuer Meeres und Klimatoforsch, Hamburg.
  20. Mare, M.F. (1942). A study of a marine benthic community with special reference to the microorganisms. Journal of Marine Biology Association of the United Kingdom 25:517-554.
  21. Middleburg, J.J. & Levin L.A. (2009). Coastal hypoxia and sediment biogeochemistry. Biogeosciences 6: 1273-1293.
  22. Miljutin, D.M., Gad G., Miljutina M.M., Mokievsky V.O, Fonseca-Genevois V. et al. (2010). The state of knowledge on deep-sea nematode taxonomy: how many valid species are known down there? Marine Biodiversity 40:143-159. DOI: 10.1007/s12526-010-0041-4.10.1007/s12526-010-0041-4
  23. Murray, J.W., Jannasch H.W., Honjo S., Anderson R.F., Reeburgh W.S. et al. (1989). Unexpected changes in the oxic/anoxic interface in the Black Sea. Nature 338: 411-413. DOI:10.1038/338411a0.10.1038/338411a0
  24. Neira, C., Sellanes J., Levin L.A. & Arntz W.E. (2001). Meiofaunal distributions on the Peru margin: relationship to oxygen and organic matter availability. Deep Sea Research I 48:2453-2472. DOI: 10.1016/s0967-0637(01)00018-8.10.1016/S0967-0637(01)00018-8
  25. Neira, C., King I., Mendoza G., Sellanes J., De Ley P. et al. (2013). Nematode Community Structure along a central Chile margin transect influenced by the oxygen minimum zone. Deep Sea Research I 78:1-15. DOI:10.1016/j.dsr.2013.04.002.10.1016/j.dsr.2013.04.002
  26. Nicholas, W.L. & Hodda M. (1999). The free-living nematodes of a temperate, high energy, sandy beach: faunal composition and variation over space and time. Hydrobiologia 394:113-127. DOI: 10.1023/A:1003544115600.10.1023/A:1003544115600
  27. Oguz, T., Murray J.W. & Callahan A.E. (2001). Modeling redox cycling across the suboxic-anoxic interface zone in the Black Sea. Deep Sea Research I 48:761-787.
  28. Platt, H.M. & Warwick R.M. (1983). Freeliving marine nematodes. Pt.1. British Enoplids. Pictorial key to world genera and notes for the identification of British species. Cambridge: Cambridge University Press.
  29. Platt, H.M. & Warwick, R.M. (1988). Freeliving marine nematodes. Pt.2. British Chromadorids. Pictorial key to world genera and notes for the identification of British species. Leiden: Brill/Backhuys.
  30. Revkov, N.K. & Sergeeva, N.G. (2004). Current state of zoobenthos at the Crimean shores of the Black Sea. In: Öztürk B., Mokievsky V.O., Topaloğlu B. (Eds) International Workshop of the Black Sea Benthos, 18-23 April, İstanbul, Turkey: 189-217.
  31. Sandulli R., Semprucci F., Balsamo M. (2014). Trends of taxonomic and functional biodiversity of freeliving nematodes from a Blue Hole (Maldives, Indian Ocean). Italian Journal of Zoology, 81: 508-516. DOI: 10.1080/11250003.2014.952356.10.1080/11250003.2014.952356
  32. Semprucci F., Frontalini F., Covazzi-Harriague A., Coccioni R., Balsamo M. (2013). Meio- and Macrofauna in the marine area of the Monte St. Bartolo Natural Park (Central Adriatic Sea, Italy). Scientia Marina, 77(1): 189-199.
  33. Semprucci F., Balsamo M., Frontalini F. (2014). The nematode assemblage of a coastal lagoon (Lake Varano, Southern Italy): ecology and biodiversity patterns. Scientia Marina, 78: 579-588. DOI: 10.1080/02757541003705492.10.1080/02757541003705492
  34. Sergeeva, N.G. (2003). Meiobenthos in the region with the methane gas seeps. In: Eremeev VN, Gaevskaya AV. (Eds.), Present Time Conditions of Biological Diversity in the Nearshore Zone of Crimea Peninsula (the Black Sea sector). Ecosi-Gidrophizika, Sevastopol: 258-267 (In Russian).
  35. Sergeeva, N.G. & Gulin, M.B. (2007). Meiobenthos from an active methane seepage area in the NW Black Sea. Marine Ecology Progress Series, 28:152-159. DOI: 10.1111/j.1439-0485.2006.00143.x.10.1111/j.1439-0485.2006.00143.x
  36. Sergeeva, N.G., Gooday, A.J. & Mazlumyan, S.A. (2012). Meiobenthos of oxic/anoxic interface in the south-western region of the Black Sea: abundance and taxonomic composition-In: A.V. Valtenbach et al. (Eds.): Anoxia: Evidence for eukaryote survival and paleontological strategies, cellular origin, life in extreme habitats and astrobiology, 21:369-402. DOI: 10.1007/978-94-007-1896-8_20.10.1007/978-94-007-1896-8_20
  37. Sergeeva, N.G., Mazlumyan, S.A., Çağatay. N. & Lichtschlag, A. (2013). Hypoxic Meiobenthic Communities of the Istanbul Straits’s (Bosporus) Outlet Area of the Black Sea. Turkish Journal of Fisheries and Aquatic Sciences 13:33-41. doi:10.4194/1303-2712-v13_1_05.10.4194/1303-2712-v13_1_05
  38. Sergeeva, N.G. & Zaika, V. (2013). The Black Sea Meiobenthos in Permanently Hypoxic Habitat. Acta Zoologica Bulgarica 65 (2):139-150.
  39. Somerfield, P.J., Warwick, R.M. & Moens, T. (2005). Meiofauna techniques. In: Eleftheriou A., McIntyre A. (Eds). Methods for the study of marine benthos. Oxford: Blackwell.
  40. Ürkmez, D., Sergeeva N.G., Sezgin M. (2011). Seasonal changes of nematodes from Sinop coasts of the Black Sea. Sixth International Conference “Environmental Micropaleontology, Microbiology and Meiobenthology”, EMMM-2011, 279-282.
  41. Ürkmez, D. & Brennan M.L. (2013). A new species of Halaphanolaimus (Nematoda: Leptolaimidae) from the southern Black Sea (Turkey) with a modified key for species identification. Zootaxa 3691 (2): 220-228. http://dx.doi.org/10.11646/zootaxa.3691.2.2.0.
  42. Vanaverbeke, J., Bezerra T.N., Braeckman U., De Groote A., De Meester N. et al. (2015). NeMys: World Database of Free- Living Marine Nematodes. Accessed at http://nemys.ugent.beon2015-02-01.
  43. Van Gaever, S., Vanreusel A., Hughes J.A., Bett B. & Kirikoualis K. (2004). The macro- and micro-scale patchiness of meiobenthos associated with the Darwin Mounds (northeast Atlantic). Journal of the Marine Biological Association of the United Kingdom 84:547-556. http://dx.doi.org/10.1017/S0025315404009555h 10.1017/S0025315404009555h
  44. Vincx, M. (2015, March). Trefusia longicauda de Man, 1893. In: Vanaverbeke J, Bezerra TN, Braeckman U, De Groote A, De Meester N, Deprez T, Derycke S, Gilarte P, Guilini K, Hauquier F, Lins L, Maria T, Moens T, Pape E, Smol N, Taheri M, Van Campenhout J, Vanreusel A, Wu X, Vincx M (2015). NeMys: World Database of Free-Living Marine Nematodes. Accessed through: Vanaverbeke J, Bezerra TN, Braeckman U, De Groote A, De Meester N, Deprez T, Derycke S, Gilarte P, Guilini K, Hauquier F, Lins L, Maria T, Moens T, Pape E, Smol N, Taheri M, Van Campenhout J, Vanreusel A, Wu X, Vincx M (2015). NeMys: World Database of Free-Living Marine Nematodes. Retrieved 2015-03-31, from http://nemys.ugent.be/aphia.php?p=taxdetails&id=122268.
  45. Vorobyeva, L.V. (2003). Meiobenthos of the Black Sea (Essay of the History of Its Study). Hydrobiological Journal. Vol. 39, No. 2. DOI: 10.1615/HydrobJ.v39.i2.120.10.1615/HydrobJ.v39.i2.120
  46. Wells, J.B.J. (1988). Copepoda. In: Higgins, R. P. and H. Thiel. (Eds.). Introduction to the Study of Meiofauna. Washington, D.C.: Smithsonian Institution Press.
  47. Wetzel, M.A., Fleeger J.W. & Powers S.P. (2001). Effects of hypoxia and anoxia on meiofauna: A review with new data from the Gulf of New Mexico, Coastal and Estaurine Studies, Coastal Hypoxia: Consequences for living resources and ecosystems, edited by: Turner, N.N.R.A.R.E., AGU, Washington, DC.: American Geophysical Union. DOI: 10.1029/CE058p0165. 10.1029/CE058p0165
DOI: https://doi.org/10.1515/ohs-2015-0051 | Journal eISSN: 1897-3191 | Journal ISSN: 1730-413X
Language: English
Page range: 539 - 551
Submitted on: Apr 21, 2015
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Accepted on: Jun 8, 2015
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Published on: Dec 9, 2015
Published by: University of Gdańsk
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2015 Derya Ürkmez, Michael L. Brennan, Murat Sezgin, Levent Bat, published by University of Gdańsk
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.