134
Views
2
CrossRef citations to date
0
Altmetric
Research Articles

Spermatologic characteristics and sperm motility alterations caused by short-term copper exposure in Brook Trout Salvelinus fontinalis

, &
Pages 355-360 | Received 20 May 2018, Accepted 21 Sep 2018, Published online: 26 Dec 2018

References

  • Aas, G.H., Refstie, T., and Gjerde, B., 1991. Evaluation of milt quality of Atlantic salmon. Aquaculture, 95 (1–2), 125–132.
  • Anderson, B.S., et al., 1991. Copper toxicity to sperm, embryos and larvae of topsmelt Atherinops affinis, with notes on induced spawning. Marine environmental research, 31 (1), 17–35.
  • Bilandzic, N., et al., 2012. Determination of copper in food of animal origin and fish in Croatia. Food control, 27 (2), 284–288.
  • Blewett, T.A., et al., 2017. Copper alters hypoxia sensitivity and the behavioural emersion response in the amphibious fish Kryptolebias marmoratus. Aquatic toxicology, 189, 25–30.
  • Bozkurt, Y., et al., 2011. Relationships between seminal plasma composition and sperm quality parameters of the Salmo trutta macrostigma (Dumeril, 1858) semen: with emphasis on sperm motility. Czech Journal of animal science, 56 (No. 8), 355–364.
  • Butts, I.A.E., et al., 2010. Cryopreservation of Atlantic cod Gadus morhua L. spermatozoa: effects of extender composition and freezing rate on sperm motility, velocity and morphology. Cryobiology, 61 (2), 174–181.
  • Ciereszko, A. and Dabrowski, K., 1993. Estimation of sperm concentration of rainbow trout, white fish and yellow perch using a spectrophotometric technique. Aquaculture, 109 (3–4), 367–373.
  • De Oliveira-Filho, E.C., Matos Lopes, R., and Roma Paumgartten, F.J., 2004. Comparative study on the susceptibility of freshwater species to copper-based pesticides. Chemosphere, 56 (4), 369–374.
  • Dreanno, C., et al., 1999. Nucleotides content, oxidative phosphorylation, morphology and fertilizing capacity of turbot (Psetta maxima) spermatozoa during the motility period. Molecular reproduction and development, 53 (2), 230–243.
  • Ebrahimi, M., 2004. Morphological changes of fish sperm affected by copper using (SEM). Iranian journal of fisheries sciences, 13 (2), 1–10.
  • Gharaei, A. and Ghaffai, M., 2013. Effect of copper and lead on sperm motility parameters of Schizothorax zarudnyi. Journal of applied ichthyology, 1, 42–53.
  • Hajirezaee, S., et al., 2010. Evaluation of semen quality of endangered Caspian brown trout (Salmo trutta caspius) in different times of spermiation during the spawning season. Czech journal of animal science, 55 (No. 10), 445–455.
  • Iaffaldano, N., D., et al., 2016. Semen quality of threatened native population of Mediterranean brown trout (Salmo cettii, Rafinesque 1810) in the Biferno River (Molise Region - South Italy). Turkish journal of fisheries and aquatic sciences, 16, 259–266.,
  • Kalantzi, I., et al., 2016. Assessment of the use of copper alloy aquaculture nets: potential impacts on the marine environment and on the farmed fish. Aquaculture, 465, 209–222.
  • Kocabaş, M., et al., 2013. HEPP and fish. Turkish journal of scientific reviews, 6 (1), 128–131.
  • Kocabas, M. and Kutluyer, F., 2017a. In vitro effect of zinc: evaluation of the sperm quality of endangered trout Salmo coruhensis and rainbow trout Oncorhynchus mykiss and fertilizing capacity. International journal of aquaculture and fishery sciences, 3 (2), 46–50.
  • Kocabaş, M., and Kutluyer, F., 2017b. Effect of Cobalt on sperm motility in an endangered trout species, Salmo coruhensis. Bulletin of environmental contamination and toxicology, 99 (6), 690–694.
  • Köse, Ö. and Şahin, T., 2015. Spermatologic characteristics and short-term storage of brook trout, Salvelinus fontinalis, sperm. Erzincan üniversitesi fen bilimleri enstitüsü dergisi, 8 (1), 88–99.
  • Kutluyer, F., et al., 2014. Cryopreservation of rainbow trout Oncorhynchus mykiss spermatozoa: effects of extender supplemented with different antioxidants on sperm motility, velocity and fertility. Cryobiology, 69 (3), 462–466.
  • Kutluyer, F. and Kocabaş, M., 2016. Use of amino acids in fish sperm cryopreservation: a review. Austin Biology, 1 (3), 1014.
  • Kutluyer, F. and Kocabas, M., 2017. Dose dependent treatment with boric acid induces more changes in the sperm cells of endangered Anatolian trout Salmo rizeensis. International journal of aquaculture and fishery sciences, 3 (2), 042–045.
  • Lahnsteiner, F., 2000. Semen cryopreservation in the Salmonidae and in the Northern pike. Aquaculture research, 31 (3), 245–258.
  • Lahnsteiner, F., Mansour, N., and Kunz, F.A., 2011. The effect of antioxidants on the quality of cryopreserved semen in two salmonid fish, the brook trout (Salvelinus fontinalis) and the rainbow trout (Oncorhynchus mykiss). Theriogenology, 76 (5), 882–890.
  • Martínez-Páramo, S., et al., 2013. Effect of two sulfur-containing amino acids, taurine and hypotaurine in European sea bass (Dicentrarchus labrax) sperm cryopreservation. Cryobiology, 66 (3), 333–338.
  • Nynca, J., et al., 2015. Effect of postthaw storage time and sperm-to-egg ratio on fertility of cryopreserved brook trout sperm. Theriogenology, 83 (2), 253–256.
  • Piironen, J. and Hyvarinen, H., 1983. Composition of the milt of some teleost fishes. Journal of fish biology, 22 (3), 351–361.
  • Rudolfsen, G., et al., 2008. Sperm velocity influences paternity in the Atlantic cod (Gadus morhua L.). Aquaculture research, 39 (2), 212–216.
  • Rurangwa, E., et al., 2001. Quality control of refrigerated and cryopreserved semen using computer-assisted sperm analysis (CASA), viable staining and standardized fertilization in African catfish (Clarias gariepinus). Theriogenology, 55 (3), 751–769.
  • Rurangwa, E., et al., 2004. The measurement of sperm motility and factors affecting sperm quality in cultured fish. Aquaculture, 234 (1–4), 1–28.
  • Sarosiek, B., et al., 2009. The effect of copper, zinc, mercury and cadmium on some sperm enzyme activities in the common carp (Cyprinus carpio L.). Reproductie toxicology, 9 (3), 295–301.
  • Shikh Maidin, M., et al., 2014. In vitro supplements improves motility and progressive score of spermatozoa in Jermasia goats. APCBEE procedia, 8, 329–333.
  • Simonato, J.D., et al., 2016. Biomarkers of waterborne copper exposure in the Neotropical fish Prochilodus lineatus. Aquatic toxicology, 170, 31–41.
  • Skjaeraasen, J.A., et al., 2009. Sperm characteristics and competitive ability in farmed and wild cod. Marine ecology progress series, 375, 219–228.
  • Suquet, M., et al., 1994. Sperm features in turbot (Scophthalmus maximus): a comparison with other freshwater and marine fish species. Aquatic living resources, 7 (4), 283–294.
  • Suquet, M., et al., 1998. The ageing phenomenon of turbot, Scophthalmus maximus, spermatozoa: effects on morphology, motility and concentration, intracellular ATP content, fertilization and storage capacities. Journal fish biology, 52 (1), 31–41.
  • Şahin, T., 2015. Changes in brook trout (Salvelinus fontinalis Mitchill, 1814) sperm quality throughout the reproductive season. El-Cezeri journal of science and engineering, 2 (3), 14–22.
  • Tagliaferro, M., et al., 2017. Assessment of metal exposure (uranium and copper) by the response of a set of integrated biomarkers in a stream shredder. Ecological Indicators. doi:10.1016/j.ecolind.2017.10.065
  • Tekin, N., et al., 2003. The effect of age on spermatological properties in rainbow trout (Oncorhynchus mykiss W. 1792). Turkish journal of veterinary and animal sciences, 27, 37–44.
  • Viveiros, A.T.M., et al., 2010. Motility and fertility of the subtropical freshwater fish streaked prochilod (Prochilodus lineatus) sperm cryopreserved in powdered coconut water. Theriogenology, 74 (4), 551–556.
  • Wang, H., et al., 2018. Comparison of copper bioavailability in copper-methionine, nano-copper oxide and copper sulfate additives in the diet of Russian sturgeon Acipenser gueldenstaedtii. Aquaculture, 482, 46–154.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.