First Report of the Occurrence of Oithona Davisae Ferrari F.D.&Orsi, 1984 (Copepoda: Oithonidae) in the Southern Black Sea, Turkey

Mevcut çalışmada, Oithona davisae Ferrari F.D.&Orsi, 1984 türünün Sinop, Türkiye kıyısındaki ilk bulunurluğu kaydedilmiştir. Türün bolluk ve biyokütle verisi ve toplam kopepod içerisindeki ergin birey ve kopepodit evrelerinin oranı incelenmiştir. Zooplankton örnekleri Ocak-Aralık 2009'da vertikal çekim yöntemiyle aylık olarak 112 ?m ağ göz açıklığındaki plankton kepçesi ile toplanmıştır. Bu tür örnekleme periyodu boyunca ilk kez Eylül ayında belirlenmiş ve takip eden diğer aylarda da varlığı tespit edilmiştir. En yüksek bolluk ve biyokütle değeri Kasım 2009'da (1485,35 birey.m-3, 2,9 mg.m-3) kaydedilmiştir. Kasım ayında toplam kopepod bolluğuna katkısı %39,89 ve biyokütleye katkısı ise %14,35 idi. Sonuç olarak, elde edilen veriler yerli olmayan kopepod O. davisae Sinop kıyısının ekolojik koşullarına adapte olduğunu göstermektedir.

Türkiye'nin Güney Karadeniz'inde Oithona davisae Ferrari F.D.&Orsi, 1984 (Copepoda: Oithonidae) Bulunuşunun İlk Kaydı

We report the first occurrence of Oithona davisae Ferrari F.D.&Orsi, 1984 in the Sinop coast, Turkey. Data on the abundance and biomass of this species, and the proportion of adult and copepodite stages in the total copepods were investigated. The zooplankton samples were collected monthly by vertical hauls with plankton net of 112 ?m mesh size from January to December 2009. However, O. davisae was observed for the first time in September, and continued to be observed for the remainder of the sampling period. The highest abundance and biomass of this species were recorded in November 2009 (1485.35 ind.m-3 and 2.9 mg.m-3, respectively), which was 39.89% in the abundance and 14.35% of the biomass of the total copepods in November. In conclusion, the non-indigenous copepod species, O. davisae, has adapted to the ecological conditions of the Sinop coast.

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  • Altukhov, D.A. and Gubanova, A.D. 2006. Oithona brevicornis Giesbrecht in the Sevastopol Bay in October, 2005-March, 2006. Marine Ecology Journal (Morskyj Ecologichny Journal), 5(2): 32. (in Russian).
  • Altukhov, D.A. 2010. Distribution of Oithona brevicornis (Copepoda: Cyclopoida) population along the Crimean Coast. Marine Ecology Journal (Morskyj Ecologichny Journal), 9: 71. (in Russian with an English abstract).
  • Altukhov, D.A., Gubanova, A.D. and Mukhanov, V.S. 2014. New invasive copepod Oithona davisae Ferrari and Orsi, 1984: seasonal dynamics in Sevastopol Bay and expansion along the Black Sea coasts. Marine Ecology an Evolutionary Perspective, 35 (Supplement s1): 28-34. doi: 10.1111/maec.12168
  • Anonymous 2011. Sinop ili çevre durum raporu, 2011. Sinop Valiliği Çevre ve Şehircilik İl Müdürlüğü, Sinop. (in Turkish)
  • Aysel, V., Erduğan, H., Dural, B., Okudan, E.Ş., Şenkardeşler, A. and Aysel, F. 2004. Marine flora of Sinop (Black Sea, Turkey). Ege Journal of Fisheries and Aquatic Sciences, 21(1-2): 59-68.
  • Bat, L., Şahin, F., Satılmış, H.H., Üstün, F., ÖzdemirBirinci, Z., Kıdeyş, A.E. and Shulman, G.E. 2007a. The changed ecosystem of the Black Sea and its impact on anchovy fisheries. Journal of FisheriesSciences, 1(4): 191-227. doi: 10.3153/jfscom.2007024 (in Turkish).
  • Bat, L., Sahin, F., Ustun, F., Kideys, A.E. and Satilmis, H.H. 2007b. The qualitative and quantitative distribution in phytoplankton and zooplankton of southern Black Sea of cape Sinop, Turkey in 1999- 2000. Proceedings of the Oceans 2007-Europe Conference; 18-21 June 2007, pp.1-6. doi.10.1109/OCEANSE.2007.4302224/.
  • Boxshall, G. 2007. Alien species in European coastal waters. Aquatic Invasions, 2(4): 279-280. doi: 10.3391/ai.2007.2.4.1
  • Dural, B., Aysel, V., Demir, N., Yazıcı, I., Karaçuha, A., Okudan, E.Ş., Atalay, G. and Keleş, H. 2006. The distribution, fenology and algal flora of seagrasses along western Black Sea coast (Turkey) and the flowering and mapping of Zosteraceae. TUBITAKProcet no: TBAG-2332 (103T140), 156pp. (in Turkish).
  • Ferrari, F.D. and Orsi, J. 1984. Oithona davisae, new species, and Limnoithona sinensis (Burckhardt, 1912) (Copepoda, Oithonidae) from the Sacramento SanJoaquin Estuary, California. Journal of Crustacean Biology, 4: 106-126. doi: 10.1163/1937240X84X00110
  • Gubanova A, Polikarpov I, Saburova M, Prusova I. 2002. Long-term dynamics of mesozooplankton by the example of the Copepoda community in Sevastopol Bay (1976-1996). Oceanology 42:512-520.
  • Gubanova, A. and Altukhov, D. 2007. Establishment of Oithona brevicornis Giesbrecht, 1892 (Copepoda: Cyclopoida) in the Black Sea. Aquatic Invasions, 2: 407-410. doi: 10.3391/ai.2007.2.4.10.
  • Gubanova, A., Altukhov, D., Stefanova, K., Arashkevich, E., Kamburska, L., Prusova, I., Svetlichny, L., Timofte, F. and Uysal, Z. 2014. Species composition of Black Sea marine planktonic copepods. Journal of Marine Systems, 135: 44-52. http://dx.doi.org/10.1016/j.jmarsys.2013.12.004
  • Hirakawa, K. 1988. New records of the North Pacific coastal planktonic copepods, Acartia omorii (Acartiidae) and Oithona davisae (Oithonidae) from southern Chile. Bulletin of Marine Science, 42: 337- 339.
  • Hirota, R. 1990. Microdistribution of the marine copepod Oithona davisae in the shallow waters of Ariake-kai mudflats. Japan Marine Biology, 105: 307-312. doi: 10.1007/BF01344300
  • Itoh, H., Tachibana, A., Nomura, H., Tanaka, Y., Futota, T. and Ishimaru, T. 2011. Vertical distribution of planktonic copepods in Tokyo Bay in summer. Plankton Benthos Research, 6(2): 129-134. doi: 10.3800/pbr.6.129
  • Kideys, A.E. 2002. Fall and rise of the Black Sea ecosystem. Science, 297: 1482-1484. doi: 10.1126/science.1073002
  • Kovalev, A.V., Georgieva, L.V. and Baldina, E.P. 1976. Influence of water mass exchange from Bosphorus on the content and distribution of the plankton in the nearest seas. In V.I. Belyaev (Ed.), Investigation of water mass exchange from Tunis Channel and Bosphorus. Naukova Dumka: Kiev: 68-73.
  • Lee, C.E., Remfert, J.L. and Gelembiuk, G.W. 2003. Evolution of physiological tolerance and performance during freshwater invasions. Integrative and Comparative Biology, 43(3): 439-449. doi:10.1093/icb/43.3.439.
  • Mauchline, J. 1998. The biology of calanoid copepods. In: J.H.S. Blaxter, A.J. Southward, P.A. Tyler (Ed.), Advances in Marine Biology. vol. 33. Academic Press, San Diego, 710 pp. doi:10.1016/S0065- 2881(08)60234-5
  • Mihneva, V. and Stefanova, K. 2013. The non-native copepod Oithona davisae (Ferrari FD and Orsi, 1984) in the Western Black Sea: seasonal and annual abundance variability. Bioinvasions Records, 2(2): 119-124. doi:http://dx.doi.org/10.3391/bir.2013.2.2.04.
  • Nakane, T., Nakaka, K., Bouman, H. and Platt, T. 2008. Environmental control of short-term variation in the plankton community of inner Tokyo Bay, Japan. Estuarine, Coastal and Shelf Science, 78(4): 796-810. doi:10.1016/j.ecss.2008.02.023
  • Nesterova, D., Moncheva, S, Mikaelyan, A., Vershinin, A., Atakov, V., Boicenco, L., Yaktan, F., Sahin, F. and Gvarishvili, T. 2008. State of Phytoplankton. In: T. Oguz (Ed.), State of the Environment of the Black Sea (2001-2006/7). Black Sea Commission Publications: Istanbul, Turkey: 173-191.
  • Oğuz, T., Latun, V.S., Latif, M.A., Vladimirov, V.V., Sur, H.İ., Markov, A.A., Özsoy, E., Kotovshcikov, B.B., Eremeev, V.V. and Ünlüata, Ü. 1993. Circulation in the surface and inter mediate layers of the Black Sea. Deep-Sea Research I., 40(8): 1597-1612.
  • Petipa, T.S. 1957. On averageweightofthemain zooplankton forms in the Black Sea. Proceedings of Sevastopol Biological Station, 9: 39-57. (in Russian).
  • Razouls, C., de Bovée, F., Kouwenberg, J. and Desreumaux, N. 2005-2015. Diversity and Geographic Distribution of Marine Planktonic Copepods. Available at http://copepodes.obs-banyuls.fr/en [Accessed October 12, 2015]
  • Saiz, E., Calbet, A., Broglio, E. and Marı, P. 2003. Effects of small-scale turbulence on copepods: The case of Oithona davisae. Limnology and Oceanography, 48(3): 1304-1311. doi: 10.4319/lo.2003.48.3.1304.
  • Selifonova, J.P., Shmeleva, A.A. and Kideys, A.E. 2008. Study of Copepod Species from the Western Black Sea in the Cruise r/v 'Knorr' during May-June 2001. Acta Zoologica Bulgarica, 60(3): 305-309.
  • Selifonova, Z.P. 2009. Oithona brevicornis Giesbrecht (Copepoda, Cyclopoida) in harborages of the northeastern part of the Black Sea shelf. Inland Water Biology, 2: 30-32. doi:10.1134/S1995082909010052.
  • Selifonova, Z.P. 2011. Oithona brevicornis Giesbrecht (Copepoda: Cyclopoida), invader into the Black Sea and in the Sea of Azov. Russian Journal of Biological Invasions, 2(2-3): 227-232. doi:10.1134/S2075111711030131
  • Shiganova, T., Stupnikova, A. and Stefanova, K. 2015. Genetic analyses of non-native species Oithona davisae Ferrari F.D. & Orsi, 1984 in the Black Sea. BioInvasions Records, 4(2): 91-95. doi: http://dx.doi.org/10.3391/bir.2015.4.2.04
  • Svetlichny, L. and Hubareva, E. 2014. Salinity tolerance of alien copepods Acartia tonsa and Oithona davisae in the Black Sea. Journal of Experimental Marine Biology and Ecology, 461: 201-208. http://dx.doi.org/10.1016/j.jembe.2014.08.012.
  • Temnykh, A. and Nishida, S. 2012. New record of the planktonic copepod Oithona davisae Ferrari and Orsi in the Black Sea with notes on the identity of "Oithona brevicornis". Aquatic Invasions, 7(3): 425-431. doi: http://dx.doi.org/10.3391/ai.2012.7.3.013.
  • Timofte, F. and Tabarcea, C. 2012. Oithona brevicornis Giesbrecht, 1892 (Copepoda: Cyclopoida)-First record in the Romanian Black Sea waters. Journal of Environmental Protection and Ecology, 13: 1683-1687.
  • Uchima, M. 1988. Gut content analysis of neritic copepods Acartia omorii and Oithona davisae by a new method. Marine Ecological Progress Series, 48: 93-97.
  • Uchima, M. and Hirano, R. 1988. Swimming behavior of the marine copepod Oithona davisae: internal control and search for environment. Marine Biology, 99(1): 47-56. doi: 10.1007/BF00644976
  • Uchima, M. and Murano, M. 1988. Mating behavior of the marine copepod Oithona davisae. Marine Biology, 99(1): 39-45. doi:10.1007/BF00644975
  • Uye, S. 1994. Replacement of large copepods by small ones with eutrophication of embayments: cause and consequence. Hydrobiologia, 292/293: 513-519. doi:10.1007/BF00229979
  • Uye, S. and Sano, K. 1995. Seasonal reproductive biology of the small cyclopoid copepod Oithona davisae in a temperate eutrophic inlet. Marine Ecology Progress Series, 118: 121-128. doi:10.3354/meps118121
  • Uye, S. and Sano, K. 1998. Seasonal variations in biomass, growth rate and production rate of the small cyclopoid copepod Oithona davisae in a temperate eutrophic inlet. Marine Ecology Progress Series, 163: 37-44. doi: 10.3354/meps163037
  • Zagorodnyaya, Y.A. 2002. Oithona brevicornis in the Sevastopol Bay: is it a single event or a new invader in the Black Sea Fauna? Marine Ecology Journal (Morskyj Ecologichny Journal), 61: 43.
Turkish Journal of Fisheries and Aquatic Sciences-Cover
  • ISSN: 1303-2712
  • Başlangıç: 2015
  • Yayıncı: Su Ürünleri Merkez Araştırma Enstitüsü - Trabzon
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