Acceso abierto

Application of The UV-Irradiated Homologous and Heterologous Sperm for Activa Tion of the Rainbow Trout (Oncorhynchus Mykiss) Eggs and Production of the Gynogenetic Stocks


Cite

Arai K. (2001). Genetic improvement of aquaculture finfish species by chromosome manipulation techniques in Japan. Aquaculture, 197: 205-228.Search in Google Scholar

Billard R. (1992). Reproduction in rainbow trout: sex differentiation, dynamics of gametogenesis, biology and preservation of gametes. Aquaculture, 100: 263-298.Search in Google Scholar

Chourrout D. (1984). Pressure-induced retention of second polar and suppression of first cleavage in rainbow trout. Production of all triploids, all tetraploids, and heterozygous and homozygous diploid gynogenesis. Aquaculture, 36: 111-126.Search in Google Scholar

Chourrout D. (1986). Use of grayling sperm (Thymallus thymallus) asamarker for the production of gynogenetic rainbow trout (Salmo gairdneri). Theor. Appl. Genet., 72: 633-636.Search in Google Scholar

Chourrout D., Quillet E. (1982). Induced gynogenesis in rainbow trout: Sex and survival of progenies. Production of all triploid populations. Theor. Appl. Genet., 63: 201-205.Search in Google Scholar

Dabrowski K., Rinchard J., Lin F., Garcia-Abiado M.A., Schmidt D. (2000). Induction of gynogenesis in muskellunge with irradiated sperm of yellow perch proves diploid muskellunge male homogamety. J. Exp. Zool., 287: 96-105.Search in Google Scholar

Donaldson E.M. (1996). Manipulation of reproduction in farmed fish. Anim. Reprod. Sci., 42: 381-392.Search in Google Scholar

Feist G., Yeoh C.G., Fitzpatrick M.S., Schreck C.B. (1995). The production of functional sex-reversed male rainbow trout with 17a-methyltestosterone and 11b-hydroxyandrostenedione. Aquaculture, 131: 145-152.Search in Google Scholar

Fujiwara A., Abe S., Yamaha E., Yamazaki F., Yoshida M.C. (1997). Uniparental chromosome elimination in the early embryogenesis of the inviable salmonid hybrids between masu salmon female and rainbow trout male. Chromosoma, 106: 44-52.Search in Google Scholar

Goryczko K., Dobosz S., Mäkinen T., Tomasik L. (1991). UV-irradiation of rainbow trout sperm asapractical method for induced gynogenesis. J. Appl. Ichthyol., 7: 136-146.Search in Google Scholar

Jankun M., Ocalewicz K., Pardo B.G., Martinez P., Woźnicki P., Sanchez L. (2003). Chromosomal characteristics of r DNAin European grayling Thymallus thymallus (Salmonidae). Genetica, 119: 219-224.Search in Google Scholar

Komen H., Thorgaard G.H. (2007). Androgenesis, gynogenesis and the production of clones in fishes:areview. Aquaculture, 269: 150-173.Search in Google Scholar

Krisfalusi M., Wheeler P.A., Thorgaard G.H., Cloud J.G. (2000). Gonadal morphology of female diploid gynogenetic and triploid rainbow trout. J. Exp. Zool., 286: 505-512.Search in Google Scholar

Ocalewicz K. (2002). Cytogenetic markers for Xchromosome in karyotype of rainbow trout from Rutki strain. Folia Biol. (Krakow), 50: 10-14.Search in Google Scholar

Ocalewicz K., Babiak I., Dobosz S., Nowaczyk J., Goryczko K. (2004). The stability of telomereless chromosome fragments in adult androgenetic rainbow trout. J. Exp. Biol., 207: 2229-2236.Search in Google Scholar

Ocalewicz K., Dobosz S., Kuzminski H., Goryczko K. (2009). Formation of chromosome aberrations in androgenetic rainbow trout (Oncorhynchus mykiss, Walbaum). J. Fish Biol., 75: 2373-2379.Search in Google Scholar

Ocalewicz K., Dobosz S., Kuzminski H., Nowosad J., Goryczko K. (2010). Chromosome rearrangements and survival of androgenetic rainbow trout (Oncorhynchus mykiss). J. Appl. Genet., 51: 309-317.Search in Google Scholar

Ocalewicz K., Dobosz S., Kuzminski H. (2012). Distribution of telomeric DNAsequences on the X-radiation-induced chromosome fragments in the genome of androgenetic brook trout (Salvelinus fontinalis, Mitchill 1814). Cytogenet. Genome Res., 137: 1-6.Search in Google Scholar

Pandian T.J., Koteeswaran R. (1998). Ploidy induction and sex control in fish. Hydrobiologia, 384: 167-243.Search in Google Scholar

Paschos I., Natsis L., Nathanailides C., Kagalou I., Kolettas E. (2001). Induction of gynogenesis and androgenesis in goldfish Carassius auratus (var. oranda). Reprod. Domest. Anim., 36: 195-198.Search in Google Scholar

Pelegri F. (2003). Maternal factors in zebrafish development. Dev. Dynam., 228: 535-554.Search in Google Scholar

Reading B.J., Wills P.S., Heidinger R.C., Heist E.J. (2015). Genetic variability in meioticgynogenetic muskellunge, Esox masquinongy (Mitchell), estimated from segregation of microsatellite alleles. Aquaculture Res. (in press), doi:10.1111/are.12718.10.1111/are.12718Search in Google Scholar

Thorgaard G.H. (1986). Ploidy manipulation and performance. Aquaculture, 57: 57-64.Search in Google Scholar

Thorgaard G.H. (1992). Application of genetic technologies to rainbow trout. Aquaculture, 100: 85-97.Search in Google Scholar

Webb T.A., Kowalski W.J., Fluck R.A. (1995). Microtubule-based movements during ooplasmic segregation in the medaka fish egg (Oryzias latipes). Biol. Bull., 188: 146-156.Search in Google Scholar

Yamaha E., Otani S., Minami A., Arai K. (2002). Dorso-ventral axis perturbation in goldfish embryos caused by heat- and pressure-shock treatments for chromosomes set manipulation. Fish Sci., 68: 313-319. Search in Google Scholar

eISSN:
2300-8733
Idioma:
Inglés
Calendario de la edición:
4 veces al año
Temas de la revista:
Life Sciences, Biotechnology, Zoology, Medicine, Veterinary Medicine