211
Views
19
CrossRef citations to date
0
Altmetric
COMMUNICATION

Effects of Family, Feeding Frequency, and Alternate Food Type on Body Size and Survival of Hatchery-Produced and Wild-Caught Lake Sturgeon Larvae

, , , &
Pages 136-144 | Received 25 Sep 2015, Accepted 23 Nov 2015, Published online: 16 Mar 2016

REFERENCES

  • Agh, N., F. Noori, A. Irani, and N.M. Makhdom. 2012. First feeding strategy for hatchery produced Beluga Sturgeon, Huso huso larvae. Iranian Journal of Fisheries Sciences 11:713–723.
  • Alves, D., J.L. Specker, and D.A. Bengston. 1999. Investigations into the causes of early larval mortality in cultured Summer Flounder (Paralichthys dentatus L.). Aquaculture 176:155–172.
  • Anderson, E.R. 1984. Formulated propagation of Lake Sturgeon Acipenser fulvescens (Rafinesque), under hatchery conditions in Michigan. Michigan Department of Natural Resources, Fisheries Division, Fisheries Report 1898, Ann Arbor.
  • Auer, N.A. 1996. Importance of habitat and migration to sturgeons with emphasis on Lake Sturgeon. Canadian Journal of Fisheries and Aquatic Sciences 53(Supplement 1):152–160.
  • Auer, N.A., and E.A. Baker. 2002. Duration and drift of larval Lake Sturgeon in the Sturgeon River, Michigan. Journal of Applied Ichthyology 18:557–564.
  • Bauman, J.M., E.A. Baker, T.L. Marsh, and K.T. Scribner. 2015. Effects of rearing density on total length and survival of Lake Sturgeon free embryos. North American Journal of Aquaculture 77:444–448.
  • Blaxter, J.H. S., and G. Hempel. 1963. The influence of egg size on herring larvae (Clupea harengus L.). Journal du Conseil Permanent International pour l’Exploration de la Mer 28:211–240.
  • Buddington, R.K., and J.P. Christofferson. 1985. Digestive and feeding characteristics of the chondrosteans. Environmental Biology of Fishes 14:31–41.
  • Ceskleba, D.G., S. AveLallemant, and T.F. Thuemler. 1985. Artificial spawning and rearing of Lake Sturgeon, Acipenser fulvescens, in Wild Rose State Fish Hatchery, Wisconsin, 1982–1983. Environmental Biology of Fishes 14:79–85.
  • Cho, S.H., Y.S. Lim, J.H. Lee, J.K. Lee, S. Park, and S.M. Lee. 2003. Effects of feeding rate and feeding frequency on survival, growth, and body composition of Ayu post‐larvae Plecoglossus altivelis. Journal of the World Aquaculture Society 34:85–91.
  • Conte, F.S., editor. 1988. Hatchery manual for the White Sturgeon (Acipenser transmontanus Richardson) with application to other North American Acipenseridae, volume 78. University of California, Division of Agriculture and Natural Resources Publications, Berkeley.
  • Crossman, J.A., K.T. Scribner, C.A. Davis, P.S. Forsythe, and E.A. Baker. 2014. Survival and growth of Lake Sturgeon during early life stages as a function of rearing environment. Transaction of the American Fisheries Society 143:104–116.
  • Crossman, J.A., K.T. Scribner, Y.T. Duong, C.A. Davis, P.S. Forsythe, and E.A. Baker. 2011. Gamete and larval collection methods and hatchery rearing environment affect levels of genetic diversity in early life stages of Lake Sturgeon (Acipenser fulvescens). Aquaculture 310:312–324.
  • Dammerman, K.J., J.P. Steibel, and K.T. Scribner. 2015. Genetic and environmental components of phenotypic and behavioral trait variation during Lake Sturgeon (Acipenser fulvescens) early ontogeny. Environmental Biology of Fishes 98:1659–1670.
  • DiLauro, M.N., W.F. Krise, and K. Fynn-Aikins. 1998. Growth and survival of Lake Sturgeon larvae fed formulated diets. Progressive Fish-Culturist 60:293–296.
  • Deng, D., S. Koshio, S. Yokoyama, S.C. Bai, Q. Shao, Y. Cui, and S.S. O. Hung. 2003. Effects of feeding rate on growth performance of White Sturgeon (Acipenser transmontanus) larvae. Aquaculture 217:589–598.
  • Deng, D., C. Wang, S. Lee, S. Bai, and S. Hung. 2009. Feeding rates affect heat shock protein levels in liver of larval White Sturgeon (Acipenser transmontanus). Aquaculture 287:223–226.
  • Giberson, A.V., and M.K. Litvak. 2003. Effect of feeding on growth, food conversion efficiency, and meal size of juvenile Atlantic Sturgeon and Shortnose Sturgeon. North American Journal of Aquaculture 65:99–105.
  • Gisbert, E., P. Williot, and F. Castello-Orvay. 2000. Influence of egg size on growth and survival of early stages of Siberian Sturgeon (Acipenser baeri) under small scale hatchery conditions. Aquaculture 183:83–94.
  • Hamre, K., M. Yúfera, I. Rønnestad, C. Boglione, L. Conceição, and M. Izquierdo. 2013. Fish larval nutrition and feed formulation: knowledge gaps and bottlenecks for advances in larval rearing. Reviews in Aquaculture 5:S26–S58.
  • Harkness, W.J. K., and J.R. Dymond. 1961. The Lake Sturgeon: the history of its fishery and problems of conservation. Ontario Department of Lands and Forests, Fish and Wildlife Branch, Toronto.
  • Hastings, R.P., J.M. Bauman, E.A. Baker, and K.T. Scribner. 2013. Post‐hatch dispersal of Lake Sturgeon (Acipenser fulvescens, Rafinesque, 1817) yolk‐sac larvae in relation to substrate in an artificial stream. Journal of Applied Ichthyology 29:1208–1213.
  • Heath, D.D., C.W. Fox, and J.W. Heath. 1999. Maternal effects on offspring size: variation through early development of Chinook Salmon. Evolution 53:1605–1611.
  • Heming, T.A., J.E. McInerney, and D.F. Alderice. 1982. Effect of temperature on initial feeding in alevins of Chinook Salmon (Oncorhynchus tshawytscha). Canadian Journal of Fisheries and Aquatic Sciences 39:1554–1562.
  • Holtgren, J.M., S.A. Ogren, A.J. Paquet, and S. Fajfer. 2007. Design of a portable streamside rearing facility for Lake Sturgeon. North American Journal of Aquaculture 69:317–323.
  • IUCN (International Union for Conservation of Nature). 2010. The IUCN red list of threatened species. Available: www.iucnredlist.org/details/223/0. (November 2014).
  • Kamali, A., Z. Kordjazi, and R. Nazary. 2006. The effect of the timing of initial feeding on growth and survival of Ship Sturgeon (Acipenser nudiventris) larvae: a small-scale hatchery study. Journal of Applied Ichthyology 22(Supplement 1):294–297.
  • Kamler, E. 1992. Early life history of fish: an energetics approach. Chapman and Hall, London.
  • Kappenman, K.M., M. Toner, J. Illgen, and F.T. Barrows. 2011. The effect of diet on growth and survival of first-feeding Pallid Sturgeon Scaphirhynchus albus. Journal of Applied Ichthyology 27:755–760.
  • Leach, G.C. 1920. Artificial propagation of sturgeon part I: review of sturgeon culture in the United States. U.S. Fish Commission Report 1919:3–5.
  • Leger, P., D.A. Bengtson, P. Sorgeloos, K.L. Simpson, and A.D. Beck. 1987. The nutritional value of Artemia: a review. Pages 357–372 in P. Sorgeloos, D.A. Bengtson, W. Decleir, and E. Jaspers, editors. Artemia research and its applications: ecology, culturing, use in aquaculture, volume 78. University Press, Wetteren, Belgium.
  • Li, S., and J.A. Mathias. 1982. Causes of high mortality among cultured larval Walleye. Transaction of the American Fisheries Society 111:710–721.
  • Li, X.F., H.Y. Tian, D.D. Zhang, G.Z. Jiang, and W.B. Liu. 2014. Feeding frequency affects stress, innate immunity and disease resistance of juvenile Blunt Snout Bream Megalobrama amblycephala. Fish and Shellfish Immunology 38:80–87.
  • Memiş, D., E. Ercan, M.S. Çelikkale, M. Timur, and Z. Zarkua. 2009. Growth and survival rate of Russian Sturgeon (Acipenser gueldenstaedtii) larvae from fertilized eggs to artificial feeding. Turkish Journal of Fisheries and Aquatic Sciences 9:47–52.
  • Mollah, M.F. A., and E.S. P. Tan. 1982. Effects of feeding frequency on the growth and survival of catfish (Clarias macrocephalus Gunther) larvae. Indian Journal of Fisheries 29:1–7.
  • Moreau, R., and K. Dabrowski. 1996. Feeding stimulants in semipurified diets for juvenile Lake Sturgeon, Acipenser fulvescens Rafinesque. Aquaculture Research 27:953–957.
  • Naess, T., M. Germain-Henry, and K. E. 1995. First feeding of Atlantic Halibut (Hippoglossus hippoglossus) using different combinations of Artemia and wild zooplankton. Aquaculture 130:235–250.
  • Nunez, J., D. Castro, C. Fernandez, R. Dugue, F. Chu-Koo, F. Duponchelle, C. Garcia, and J. Renno. 2011. Hatching rate and larval growth variation in Pseudoplatystoma punctifer: maternal and paternal effects. Aquaculture Research 42:764–775.
  • Petkam, R., and G.E. Moodie. 2001. Food particle size, feeding frequency, and the use of prepared food to culture larval Walking Catfish (Clarias microcephalus). Aquaculture 194:349–362.
  • Piotrowska, I., B. Szczepkowska, M. Kozlowski, K. Wunderlich, and M. Szczepkowski. 2013. Results of the larviculture of Atlantic Sturgeon (Acipenser oxyrinchus) fed different types of diets. Archives of Polish Fisheries 21:53–61.
  • Post, H. 1890. Sturgeon: experiments in hatching. Transactions of the American Fisheries Society 19:36–40.
  • Rosenthal, H., P. Bronzi, J. Gessner, D. Moreau, and E. Rochard. 2010. Action plan for the conservation and restoration of the European Sturgeon. Convention on the conservation of European wildlife and natural nabitats (Bern Convention). Council of Europe Publishing, Strasbourg, France.
  • Smith, K.M., and D.K. King. 2005. Dynamics and extent of larval Lake Sturgeon Acipenser fulvescens drift in the upper Black River, Michigan. Journal of Applied Ichthyology 21:161–168.
  • Sorgeloos, P., P. Dhert, and P. Candreva. 2001. Use of the brine shrimp, Artemia spp., in marine fish larviculture. Aquaculture 200:147–159.
  • Theilacker, G.H. 1986. Starvation-induced mortality of young sea-caught Jack Mackerel, Trachurus symmetricus, determined with histological and morphological methods. U.S. National Marine Fisheries Service Fishery Bulletin 84:1–17.
  • Tung, P.H., and S.Y. Shiau. 1991. Effects of meal frequency on growth performance of hybrid tilapia, Oreochromis niloticus × O. aureus, fed different carbohydrate diets. Aquaculture 92:343–350.
  • Wang, N., R.S. Hayward, and D.B. Noltie. 1998. Effect of feeding frequency on food consumption, growth, size variation, and feeding pattern of age-0 hybrid sunfish. Aquaculture 165:261–267.

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.