794
Views
0
CrossRef citations to date
0
Altmetric
Paper

Induced Artificial Androgenesis in Common Tench, Tinca Tinca (L.), Using Common Carp and Common Bream Eggs

, , , , , , & show all
Article: 2890 | Received 23 Mar 2013, Accepted 30 Jan 2014, Published online: 18 Feb 2016

References

  • AraiK. IkenoM. SuzukiR. 1995. Production of androgenetic diploid loach Misgurnus anguillicaudatus using spermatozoa of natural tetraploids. Aquaculture 137:131-138.
  • AraiK. MasaokaT. SuzukiR. 1992. Optimum conditions of UV irradiation for genetic inactivation of loach eggs. Nippon Suisan Gakk. 58:1197-1201.
  • BabiakI. DoboszS. GoryczkoK. KuzminskiH. BrzuzanP. CiesielskiS. 2002a. Androgenesis in rainbow trout using cryopreserved spermatozoa: the effect of processing and biological factors. Theriogenology 57:1229-1249.
  • BabiakI. DoboszS. KuzminskiH. GoryczkoK. CiesielskiS. BrzuzanP. UrbanyiB. HorvathA. LahnsteinerF. PiironenJ. 2002b. Failure of interspecies androgenesis in salmonids. J. Fish Biol. 61:432-447.
  • BercsenyiM. MagyaryI. UrbanyiB. OrbanL. HorvathL. 1998. Hatching out goldfish from common carp eggs: interspecific androgenesis between two cyprinid fishes. Genome 41:573-579.
  • BongersA.B.J. AbarciaJ.B. Zandieh-DoulabiB. EdingE.H. KomenJ. RichterC.J.J. 1995. Maternal influence on development of androgenetic clones of common carp, Cyprinus carpio L. Aquaculture 137:139-147.
  • BongersA.B.J. VeldE.P.C. Abo-HasemaK. BremmerI.M. EdingE.H. KomenJ. RichterC.J.J. 1994. Androgenesis in common carp (Cyprinus carpio L.) using UV irradiation in a synthetic ovarian fluid and heat shock. Aquaculture 122:119-132.
  • CeladaJ.D. AguileraA. GarciaV. CarralJ.M. Saez-RoyuelaM. GonzalesR. GonzalesA. 2009. Rearing juvenile tench (Tinca tinca L.) under controlled conditions using Artemia nauplii as a supplement to a dry diet. Aquacult. Int. 17:565-570.
  • FlajshansM. 1998. Genome manipulation in fish. Czech J. Anim. Sci. 43:387.
  • GoryczkoK. DoboszS. MäkinenT. TomasikL. 1991. UV irradiation of rainbow trout sperm as a practical method for induced gynogenesis. J. Appl. Ichthyol. 7:136-146.
  • GruninaA.S RecubratskyA.V. EmelyanovaO.V. NeyfakhA.A. 1995. Induced androgenesis in fish: production of viable androgenetic diploid hybrids. Aquaculture 137:149-160.
  • KaastrupP. HorlyckV. 1987. Development of single method to optimize the conditions for producing gynogenetic offspring, using albino rainbow trout, Salmo gairdneri Richardson, females as an indicator for gynogenesis J. Fish Biol. 31:29-33.
  • KrasznaiZ. MarianT. 1986. Shock induced triploidy and its effect on growth and gonad development of the European catfish, Silurus glanis L. J. Fish Biol. 30:519-527.
  • KucharczykD. 2001. Genetic inactivation of Leuciscus idus L. (ide) oocytes using UV irradiation. Cytobios 104:189-195.
  • KucharczykD. 2002. Rozród kontrolowany i androgeneza wybranych gatunków ryb karpiowatych. Uniwersytet Warmińsko-Mazurski, Olsztyn, Poland.
  • KucharczykD. KujawaR. LuczynskiM. GlogowskiJ. BabiakI. WyszomirskaE. 1997a. Induced spawning in bream, Abramis brama (L.), using carp and bream pituitary extract and hCG. Aquac. Res. 28:139-144.
  • KucharczykD. KujawaR. MamcarzA. Targońska-DietrichK. WyszomirskaE. GlogowskiJ. BabiakI. SzaboT. 2005. Induced spawning in bream (Abramis brama L.) using pellets containing GnRH. Czech J. Anim. Sci. 50:89-95.
  • KucharczykD. ŁuczyńskiM. KujawaR. CzerkiesP. 1997b. Effect of temperature on embryonic and larval development of bream (Abramis brama L.). Aquat. Sci. 59:214-224.
  • KucharczykD. ŁuczyńskiM. KujawaR. KamińskiR. UlikowskiD. BrzuzanP. 1998. Influences of temperature and food on early development of bream (Abramis brama L.). Arch. Hydrobiol. 141:243-256.
  • KucharczykD. TargońskaK. HliwaP. GomułkaP. KwiatkowskiM. KrejszeffS. PerkowskiJ. 2008a. Reproductive parameters of common carp (Cyprinus carpio L) spawners during natural season and out-of-season spawning. Reprod. Biol. 8:285-289.
  • KucharczykD. TargońskaK. ŁuczyńskiM.J. SzczerbowskiA. KwiatkowskiM. KujawaR. 2008b. Androgenesis of ide, Leuciscus idus (L.), using chub, Leuciscus cephalus (L.), eggs. Arch. Pol. Fish. 16:453-457.
  • KucharczykD. TargońskaK. SzczerbowskiA. ŁuczyńskiM.J. RożekW. KujawaR. MamcarzA. 2008c. Genetic inactivation of dace, Leuciscus leuciscus (L), gametes using UV irradiation. Arch. Pol. Fish. 16:437-446.
  • KujawaR. KucharczykD. MamcarzA. 1999. A model system for keeping spawners of wild and domestic fish before artificial spawning. Aquacult. Eng. 20:85-89.
  • KujawaR. KucharczykD. MamcarzA. 2010. The effect of tannin concentration and egg unsticking time on the hatching success of tench Tinca tinca (L.) larvae. Rev. Fish Biol. Fisher. 20:339-343.
  • KujawaR. KucharczykD. MamcarzA. ŻarskiD. TargońskaK. 2011. Artificial spawning of common tench Tinca tinca (Linnaeus, 1758), obtained from wild and domestic stocks. Aquacult. Int. 19:513-521.
  • LinF. DabrowskiK. 1998. Androgenesis and homozygous gynogenesis in muskellunge (Esox masquinongy): evaluation using flow cytometry. Mol. Reprod. Dev. 49:10-18.
  • LuczynskiM.J. GlogowskiJ. KucharczykD. LuczynskiM. Demska-ZakesK. 1997. Gynogenesis in northern pike (Esox lucius L.) induced by heat shock - preliminary data. Pol. Arch. Hydrobiol. 44:28-32.
  • MamcarzA. KucharczykD. KujawaR. 2006. Reciprocal hybrids of tench Tinca tinca (L.) × bream Abramis brama (L.), and tench × carp Cyprinus carpio L., and some characteristics of their early development. Aquacult. Int. 14:27-33.
  • MamcarzA. TargońskaK. KucharczykD. KujawaR. ŻarskiD. 2011. Effect of live and dry food on rearing of tench (Tinca tinca L.) larvae under controlled conditions. Ital. J. Anim. Sci. 10:e9.
  • MayB. HenleyK.J. KruegerC.C. GlossS.P. 1988. Androgenesis as a mechanism for chromosome set manipulation in brook trout (Salvelinus fontinalis). Aquaculture 75:57-70.
  • NowosadJ. ŻarskiD. BiłasM. DrylK. KrejszeffS. KucharczykD. 2013. Dynamics of ammonia excretion in juvenile common tench, Tinca tinca (L.), during intensive rearing under controlled conditions. Aquacult. Int. 21:629-637.
  • OcalewiczK. DoboszS. KuzminskiH. NowosadJ. GoryczkoK. 2010. Chromosome rearrangements and survival of androgenetic rainbow trout (Oncorhynchus mykiss). J. Appl. Genet. 51:309-317.
  • PandianT.J. KoteeswaranR. 1998. Ploidy level and sex control in fish. Hydrobiologia 384:167-243.
  • RodinaM. GelaD. KocourM. Hadi AlaviS.M. HulakM. LinhartO. 2007. Cryopreservation of tench, Tinca tinca, sperm: Sperm motility and hatching success of embryos. Theriogenology 67:931-940.
  • RothbardS. RubinshteinI. DavidL. 1999. Ploidy manipulations aimed to produce androgenetic Japanese ornamental (koi) carp, Cyprinus carpio L. Isr. J. Aquacult.-Bamid. 51:26-39.
  • RubinshteinI. RothbardS. SheltonW.L. 1997. Relationships between embryological age, cytokinesis-1 and the timing of ploidy manipulations in fish. Isr. J. Aquacult.-Bamid. 49:99-110.
  • ScheererP.D. ThorgardG.H. AllendorfF.W. KnudsenK.L. 1986. Androgenetic rainbow trout produced from inbred and outbred sperm sources show similar survival. Aquaculture 57:289-298.
  • TargońskaK. PerkowskiT. ŻarskiD. KrejszeffS. MamcarzA. KujawaR. KucharczykD. 2012. Method of evaluation of wild common tench, Tinca tinca (L.), female suitability for artificial reproduction during the spawning season. Ital. J. Anim. Sci. 11:e30.
  • WangJ. MinW. GuanM. GongL. RenJ. HuangZ. ZhengH. ZhangJ. LiuH. HanY. 2006. Tench farming in China: present status and future prospects. Aquacult. Int. 14:205-208.