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Observations on the reproductive cycle of cultures white sturgeon, Acipenser transmontanus

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Abstract

Males and females of cultured white sturgeon, Acipenser transmontanus, mature at an average age of 4 and 8 years, respectively. However, the onset of ovarian vitellogenesis and puberty are highly asynchronous in the female stock. Gonadal cycles are annual in males and biennial in females, and gametogenesis is influenced by season. Neuroendocrine regulation of reproduction appears to involve a dual gonadotropin system controlling gonadal development and spawning. Labile puberty and sex-specific duration of the gonadal cycle are distinct characteristics of cultured and wild sturgeon. Photoperiod and temperature play a significant role in environmental regulation of the reproductive cycle, but further studies are necessary to elucidate the roles of endogenous and environmental factors in sturgeon reproduction which is critically important for both aquaculture and conservation of endangered wild stocks.

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References cited

  • Akimova, N.V., V.S. Malyutin, I.I. Smolyanov & L.I. Sokolov. 1979. Growth and gametogenesis of the Siberian sturgeon (Acipenser baeri Brandt) under experimental and natural conditions. pp. 179–183. In: Proceedings 7th Japan-Soviet Joint Symposium on Aquaculture, Sept. 1978, Tokyo.

  • Barannikova, I.A. 1991. Peculiarities of intrapopulation differentiation of sturgeon (Acipenser gueldenstaedti Brandt) under present day conditions. pp. 137–142. In: P. Williot (ed.) Acipenser, CEMAGREF Publ., Bordeaux.

    Google Scholar 

  • Barannikova, I.A. & O.S. Bukovskaya. 1990. Influence of luliberin on pituitary gonadotropocytes state and dynamics of serum gonadotropin concentrations in stellate sturgeon (Acipenser stellatus Pallas). Vopr. Ikhtiol. 30: 126–136 (in Russian).

    Google Scholar 

  • Bemis, W.E. & L. Grande. 1992. Early development of the actinopterygian head. I. External development and staging of the paddlefish Polyodon spathula. J. Morphol. 213: 47–83.

    Google Scholar 

  • Bidwell, C.A. & D.M. Carlson. 1995. Characterization of vitellogenin from white sturgeon, Acipenser transmontanus. J. Mol. Evol. 41: 104–112.

    Google Scholar 

  • Bidwell, C.A., K.J. Kroll, E.I. Severud, S.I. Doroshov & D.M. Carlson. 1991. Identification and preliminary characterization of white sturgeon vitellogenin mRNA. Gen. Comp. Endocrinol. 83: 415–424.

    Google Scholar 

  • Bolker, J.A. 1993. The mechanisms of gastrulation in the white sturgeon. J. Exp. Zool. 266: 132–145.

    Google Scholar 

  • Bromage, N., C. Randall, D. Davies, M. Thrush, J. Duston, M. Carillo & S. Zanuy. 1993. Photoperiodism and the control of reproduction and development in farmed fish. pp. 81–102. In: B. Lallou & P. Vitello (ed.) Coastal and Estuarine Studies, Vol. 43, American Geophysical Union, Washington D.C.

    Google Scholar 

  • Burtsev, I.A. 1983. Hybridization and selection of sturgeon during full cycle breeding and domestication. pp. 102–113. In: V.S. Kirpichnikov (ed.) Biological Foundations of Fish Culture: Problems of Genetics and Selection, Nauka Press, Leningrad (in Russian).

    Google Scholar 

  • Burzawa-Gerard, E., B.F. Goncharov & Y.A. Fontaine. 1975a. L'hormone gonadotrope hypophysaire d'un poisson chondrosteen, l'esturgeon (Acipenser stellatus Pall.). 1. Purification. Gen. Comp. Endocrinol. 27: 289–295.

    Google Scholar 

  • Burzawa-Gerard, E., B.F. Goncharov & Y.A. Fontainb. L'hormone gonadotrope hypophysaire d'un poisson chondrosteen, l'esturgeon (Acipenser stellatus Pall.). 2. Proprietes biochimiques. Gen. Comp. Endocrinol. 27: 296–304.

  • Cherr, G.N. & W.H. Clark Jr. 1985. Gamete interaction in the white sturgeon Acipenser transmontanus: a morphological and physiological review. Env. Biol. Fish. 14: 11–22.

    Google Scholar 

  • Ciereszko, A., K. Dabrowski, F. Lin & S. Doroshov. 1994. Identification of trypsin-like activity in sturgeon spermatozoa. J. Exp. Zool. 268: 486–491.

    Google Scholar 

  • Conte, F.S., S.I. Doroshov, P.B. Lutes & E.M. Strange. 1988. Hatchery manual for the white sturgeon. Publication #3322, University of California Press, Oakland. 104 pp.

    Google Scholar 

  • Crim, L.W. & D.M. Evans. 1983. Influence of testosterone and/or luteinizing hormone releasing hormone analogue on precocious sexual development in the juvenile rainbow trout. Biol. Reprod. 29: 137–142.

    Google Scholar 

  • Cuisset, B., A. Fostier, P. Williot, C. Bennetau-Pelissero & F. Le Menn. 1995. Occurrence and in vitro biosynthesis of 11-ketotestosterone in Siberian sturgeon, Acipenser baeri Brandt, maturing females. Fish Physiol. Biochem. 14: 313–332.

    Google Scholar 

  • Dettlaff, T.A., A.S. Ginsburg & O.I. Schmalhausen. 1993. Sturgeon fishes: developmental biology and aquaculture. Springer-Verlag, New York, 300 pp.

    Google Scholar 

  • de Vlaming, V.L. 1972. Environmental control of teleost reproductive cycles: a brief review. J. Fish Biol. 4: 131–140.

    Google Scholar 

  • Doroshov, S.I. & P.B. Lutes. 1984. Preliminary data on the induction of ovulation in white sturgeon (Acipenser transmontanus Richardson). Aquaculture 38: 221–227.

    Google Scholar 

  • Doroshov, J.N., J.P. Van Eenennaam, F.A. Chapman & S.I. Doroshov. 1991. Histological study of the ovarian development in wild white sturgeon, Acipenser transmontanus. pp. 129–135. In: P. Williot (ed.) Acipenser, CEMAGREF Publ., Bordeaux.

    Google Scholar 

  • Doroshov, S.I., J.P. Van Eenennaam & G.P. Moberg. 1994. Reproductive management of cultured white sturgeon (Acipenser transmontanus). pp. 156–161. In: D.D. Mackinlay (ed.) High Performance Fish, Proceedings of an International Fish Physiology Symposium, July 1994, Fish Physiology Association, Vancouver.

    Google Scholar 

  • Dumont, J.N. 1972. Oogenesis in Xenopus laevis (Daudin). 1. Stages of oocyte development in laboratory maintained animals. J. Morphol. 136: 153–180.

    Google Scholar 

  • England, B.G., G.D. Niswender & A.R. Midgley Jr. 1974. Radioimmunoassay of estradiol-17β without chromatography. J. Clinical Endocrinol. Metab. 38: 42–50.

    Google Scholar 

  • Fujii, K., K. Hirose, A. Hara, M. Shiraishi & T. Maruyama. 1991. Use of vitellogenin level as a maturational indicator for artificial spawning of cultured hybrid sturgeon Huso huso × Acipenser ruthenus. pp. 381–388. In: P. Williot (ed.) Acipenser, CEMAGREF Publ., Bordeaux.

    Google Scholar 

  • Galbreath, J.L. 1985. Status, life history, and management of Columbia river white sturgeon, Acipenser transmontanus. pp. 119–126. In: F.P. Binkowski & S.I. Doroshov (ed.) North American Sturgeons: Biology and Aquaculture Potential, Dr. W. Junk Publishers, Dordrecht.

    Google Scholar 

  • Gay, V.L. & J.T. Kerlan. 1978. Serum LH and FSH following passive immunization against circulating testosterone in the intact male rat and in orchidectomized rat bearing subcutaneous silastic implants of testosterone. Arch. Androl. 1: 257–266.

    Google Scholar 

  • Goncharov, B.F., L.V. Igumnova, I.S. Polupan & E.A. Savelieva. 1991. Induced oocyte maturation, ovulation and spermiation in sturgeons (Acipenseridae) using synthetic analogue of gonadotropin-releasing hormone. pp. 351–364. In: P. Williot (ed.) Acipenser, CEMAGREF Publ., Bordeaux.

    Google Scholar 

  • Holčík, J. 1989. The freshwater fishes of Europe, Vol. 1, Part II. Acipenseriformes. AULA-Verlag, Wiesbaden.

    Google Scholar 

  • Kawauchi, H., K. Suzuki, H. Itoh, P. Swanson, N. Naito, Y. Nagahama & S. Itoh. 1989. The duality of teleost gonadotropins. Fish Physiol. Biochem. 7: 29–38.

    Google Scholar 

  • Kohlhorst, D.W. 1976. Sturgeon spawning in the Sacramento River in 1973, as determined by the distribution of larvae. California Fish and Game 62: 32–40.

    Google Scholar 

  • Kroll, K.J. 1990. Preliminary characterization of vitellogenin and yolk proteins of white sturgeon (Acipenser transmontanus). M.S. Thesis. University of California, Davis. 84 pp.

    Google Scholar 

  • Kuznetsov, A. A., B.F. Goncharov & E. Burzawa-Gerard. 1983. Pituitary gonadotropic hormone from a chondrostean fish, starred sturgeon (Acipenser stellatus Pall.). 3. Polymorphism. Gen. Comp. Endocrinol. 49: 364–374.

    Google Scholar 

  • Le Menn, F. & C. Pelissero. 1991. Histological and ultrastructural studies of oogenesis of siberian sturgeon. pp. 113–128. In: P. Williot (ed.) Acipenser, CEMAGREF Publ., Bordeaux.

    Google Scholar 

  • Lepretre, E., I. Anglade, P. Williot, F. Vandesande, G. Tramu & O. Kah. 1993. Comparative distribution of mammalian GnRH (gonadotropin-releasing hormone) and chicken GnRH-II in the brain of the immature Siberian sturgeon (Acipenser baeri). J. Comp. Neurol. 337: 568–583.

    Google Scholar 

  • Lescheid, D.W., J.F.F. Powell, W.H. Fischer, M. Park, A. Craig, O. Bukovskaya, I.A. Barannikova & N.M. Sherwood. 1995. Mammalian gonadotropin-releasing hormone (GnRH) identified by primary structure in Russian sturgeon, Acipenser gueldenstaedti. Regulatory Peptides 55: 299–309.

    Google Scholar 

  • Licht, P., H.E. Hoyer & P.G.W.J. Van Oordt. 1969. Influence of photoperiod and temperature on testicular recrudescence and body growth in the lizards, Lacerta sicula and Lacerta muralis. J. Zool. 157: 469–501.

    Google Scholar 

  • Linares-Casenave, J., K.J. Kroll, J.P. Van Eenennaam & S.I. Doroshov. 1994. Development and application of an enzymelinked immunosorbent assay (ELISA) for the detection of plasma vitellogenin in white sturgeon (Acipenser transmontanus). pp. 165–169. In: D.D. Mackinlay (ed.) High Performance Fish, Proceedings of an International Fish Physiology Symposium, July 1994, Fish Physiology Association, Vancouver.

    Google Scholar 

  • Logan, S.H., W.E. Johnston & S.I. Doroshov. 1995. Economics of joint production of sturgeon (Acipenser transmontanus Richardson) and roe for caviar. Aquaculture 130: 299–316.

    Google Scholar 

  • Lutes, P.B. 1985. Oocyte maturation in white sturgeon, Acipenser transmontanus: some mechanisms and applications. Env. Biol. Fish. 14: 87–92.

    Google Scholar 

  • Lutes, P.B., S.I. Doroshov, F. Chapman, J. Harrah, R. Fitzgerald & M. Fitzpatrick. 1987. Morpho-physiological predictors of ovulatory success in white sturgeon, Acipenser transmontanus Richardson. Aquaculture 66: 43–52.

    Google Scholar 

  • McCabe, G.T. Jr. & C.A. Tracy. 1994. Spawning and early life history of white sturgeon, Acipenser transmontanus, in the lower Columbia River. U.S. Fish. Bull. 92: 760–772.

    Google Scholar 

  • Moberg, G.P., J.G. Watson, S. Doroshov, H. Papkoff & R.J. Pavlick Jr. 1995. Physiological evidence for two sturgeon gonadotropins in Acipenser transmontanus. Aquaculture 135: 27–39.

    Google Scholar 

  • Moberg, G.P. & S.I. Doroshov. 1992. Reproduction in cultured white sturgeon, Acipenser transmontanus. NOAA Technical Report, NMFS 106: 99–104.

  • Moberg, G.P., S.I. Doroshov, J.P. Van Eenennaam & J.G. Watson. 1991a. Effects of various hormone implants on vitellogenin synthesis and ovarian development in cultured white sturgeon. pp. 389–399. In: P. Williot (ed.) Acipenser, CEMAGREF Publ., Bordeaux.

    Google Scholar 

  • Moberg, G.P., J.G. Watson, H. Papkoff, K.J. Kroll & S.I. Doroshov. 1991b. Development of radioimmunoassays for two sturgeon gonadotropins. pp. 11–12. In: A.P. Scott, J.P. Sumpter, D.E. Kinne & M.S. Rolfe (ed.) Proceedings of 4th International Symposium on the Reproductive Physiology of Fish, Fish Symposium 91, Sheffield.

  • Pavlick, R.J. Jr. 1995. Endocrine regulation of two sturgeon pituitary gonadotropins in Acipenser transmontanus. Ph.D. Dissertation, University of California, Davis. 146 pp.

    Google Scholar 

  • Pavlick, R.J. Jr., J.G. Watson & G.P. Moberg. 1995. Influence of exogenous testosterone treatment on two sturgeon gonadotropins in sexually undifferentiated Acipenser transmontanus. pp. 86–94. In: A.D. Gershanovich & T.I.J. Smith (ed.) Proceedings of the International Symposium on Sturgeons, 6–11 September 1993, VNIRO Publ., Moscow.

    Google Scholar 

  • Peter, R.E., B.D. Trudeaux & B.D. Stoley. 1991. Brain regulation of reproduction in teleosts. Bull. Instit. Zool. Acad. Sinica, Monograph 16: 89–118.

    Google Scholar 

  • Pickford, G.E. & J.W. Atz. 1957. The physiology of the pituitary gland of fishes. New York Zoological Society, New York, 613 pp.

    Google Scholar 

  • Roussow, G. 1957. Some considerations concerning sturgeon spawning periodicity. J. Can. Fish. Res. Board 14: 553–572.

    Google Scholar 

  • Scott, A.P., E.L. Sheldrick & A.P.F. Flint. 1982. Measurement of 17,20β-Dihydroxy-4pregnen-3-one in plasma of trout (Salmo gairdneri Richardson): seasonal changes and response to salmon pituitary extract. Gen. Comp. Endocrinol. 46: 444–451.

    Google Scholar 

  • Semakula, S.N. & P.A. Larkin. 1968. Age, growth, food, and yield of the white sturgeon (Acipenser transmontanus) of the Fraser River, British Columbia. J. Fish. Res. Board. Can. 25: 2589–2602.

    Google Scholar 

  • Sherwood, N.M., S.I. Doroshov & V. Lance. 1991. Gonadotropin-releasing hormone (GnRH) in bony fish that are phylogenetically ancient: reedfish (Calamoichthys calabaricus), sturgeon (Acipenser transmontanus), and alligator gar (Lepisosteus spatula). Gen. Comp. Endocrinol. 84: 44–57.

    Google Scholar 

  • Sundararaj, B. & S. Vasal. 1976. Photoperiod and temperature control in the regulation of reproduction in the female catfish. J. Fish. Res. Board. Can. 33: 959–973.

    Google Scholar 

  • Suzuki, K., A. Kanamori, Y. Nagahama & H. Kawauchi. 1988. Development of salmon GTH I and GTH II radioimmunoassays. Gen. Comp. Endocrinol. 71: 459–467.

    Google Scholar 

  • Swanson, P., M. Bernard, M. Nozki, K. Suzuki, H. Kawauchi & W.W. Dickhoff. 1989. Gonadotropins I and II in juvenile coho salmon. Fish Physiol. Biochem. 7: 169–176.

    Google Scholar 

  • Tyler, C.R., J.P. Sumpter, H. Kawuachi & P. Swanson. 1991. Involvement of gonadotropin in the uptake of vitellogenic oocytes of the rainbow trout, Oncorhynchus mykiss. Gen. Comp. Endocrinol. 84: 291–299.

    Google Scholar 

  • Van Eenennaam, J.P., S.I. Doroshov, G.P. Moberg, J.G. Watson, D.S. Moore & J. Linares. 1996. Reproductive conditions of the Atlantic sturgeon (Acipenser oxyrinchus) in the Hudson River. Estuaries (in press).

  • Webb, M.A., S.I. Doroshov & J.P. Van Eenennaam. 1994. The effects of temperature on final ovarian maturation of the white sturgeon. pp. 186–190. In: D.D. Mackinlay (ed.) High Performance Fish, Proceedings of an International Fish Physiology Symposium, July 1994, Fish Physiology Association, Vancouver.

    Google Scholar 

  • Williot, P., R. Brun, T. Rouault & O. Rooryck. 1991. Management of female spawners of the siberian sturgeon, Acipenser baeri Brandt: first results. pp. 365–380. In: P. Williot (ed.) Acipenser, CEMAGREF Publ., Bordeaux.

    Google Scholar 

  • Young, G., S. Adachi & Y. Nagahama. 1986. Role of ovarian thecal and granulosa layers in gonadotropin-induced synthesis of a salmonid maturation-inducing substance (17α,20β-dihydroxy-4-pregnen-3-one). Dev. Biol. 118: 1–8.

    Google Scholar 

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Doroshov, S.I., Moberg, G.P. & Van Eenennaam, J.P. Observations on the reproductive cycle of cultures white sturgeon, Acipenser transmontanus. Environmental Biology of Fishes 48, 265–278 (1997). https://doi.org/10.1023/A:1007336802423

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