Hostname: page-component-cd9895bd7-gvvz8 Total loading time: 0 Render date: 2024-12-26T12:20:03.607Z Has data issue: false hasContentIssue false

In vivo storage of oocytes leads to lower survival, increased abnormalities and may affect the ploidy status in the yellowtail tetra Astyanax altiparanae

Published online by Cambridge University Press:  13 November 2018

Nivaldo Ferreira do Nascimento*
Affiliation:
Aquaculture Center, São Paulo State University, Via de Acesso Prof. Paulo Donato Castellane s/n, Jaboticabal, SP 14884–900, Brazil Laboratory of Fish Biotechnology, National Center for Research and Conservation of Continental Fish, Chico Mendes Institute of Biodiversity Conservation, Rodovia Pref. Euberto Nemésio Pereira de Godoy, Pirassununga, SP 13630-970, Brazil
Talita Maria Lázaro
Affiliation:
Aquaculture Center, São Paulo State University, Via de Acesso Prof. Paulo Donato Castellane s/n, Jaboticabal, SP 14884–900, Brazil
Nathalia Raissa de Alcântara
Affiliation:
Aquaculture Center, São Paulo State University, Via de Acesso Prof. Paulo Donato Castellane s/n, Jaboticabal, SP 14884–900, Brazil
Rocha
Affiliation:
Laboratory of Fish Biotechnology, National Center for Research and Conservation of Continental Fish, Chico Mendes Institute of Biodiversity Conservation, Rodovia Pref. Euberto Nemésio Pereira de Godoy, Pirassununga, SP 13630-970, Brazil
José Augusto Senhorini
Affiliation:
Laboratory of Fish Biotechnology, National Center for Research and Conservation of Continental Fish, Chico Mendes Institute of Biodiversity Conservation, Rodovia Pref. Euberto Nemésio Pereira de Godoy, Pirassununga, SP 13630-970, Brazil
Silvio Carlos Alves dos Santos
Affiliation:
AES Tietê, Br-153, Rod, 0 Km 139 Centro, Promissão, SP 16370-000, Brazil
Laura Satiko Okada Nakaghi
Affiliation:
Aquaculture Center, São Paulo State University, Via de Acesso Prof. Paulo Donato Castellane s/n, Jaboticabal, SP 14884–900, Brazil
George Shigueki Yasui
Affiliation:
Laboratory of Fish Biotechnology, National Center for Research and Conservation of Continental Fish, Chico Mendes Institute of Biodiversity Conservation, Rodovia Pref. Euberto Nemésio Pereira de Godoy, Pirassununga, SP 13630-970, Brazil
*
Address for correspondence: Nivaldo Ferreira do Nascimento. Aquaculture Center, São Paulo State University, Via de Acesso Prof. Paulo Donato Castellane s/n, Jaboticabal, SP 14884-900, Brazil. E-mail: [email protected]

Summary

In this study we analyzed whether the in vivo storage of oocytes (time after ovulation until fertilization) affects the survival and the ploidy status of the yellowtail tetra Astyanax altiparanae. Fish were induced to spawn and, after ovulation, a small aliquot was stripped and immediately fertilized (positive control group). Subsequently, aliquots (~150 oocytes) were stripped and fertilized at various time points of 60, 120, 180 or 240 min. Developmental stages, abnormalities, survival and the ploidy status of the hatched larvae were examined. As expected, in the control group, 100% of the larvae were diploid. Conversely, triploid individuals were observed just at the 60 min treatment time point (0.6%). In vivo storage of oocytes also influenced the survival rates (P < 0.05); the 180 and 240 min samples, respectively, presented lower survival rates at gastrula (50.10±6.26% and 40.92±5.32%), and somite (17.80±5.14% and 4.41±2.76%) stages and lower hatching rates (12.01±4.04% and 4.41±2.76%). A higher percentage (99.27±0.40%) of normal larvae and only a few abnormal larvae (0.73±0.40%) were observed in the control group (P = 0.0000). This observation did not differ from that observed at the 60 min treatment point (P = 0.9976). A significant increase in the percentage of abnormalities was observed in the other treatments, and, after 240 min, the highest percentage of abnormal larvae was seen (P=0.0024; 83.33±16.67%). In conclusion, we showed that oocyte ageing had a significant effect on survival and may affect the ploidy status in A. atiparanae.

Type
Research Article
Copyright
© Cambridge University Press 2018 

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Adamov, NSDM, Nascimento, NFd, Maciel, ECS, Pereira-Santos, M, Senhorini, JA, Calado, LL, Evangelista, MM, Nakaghi, LSO, Guerrero, AHM, Fujimoto, T and Yasui, GS (2017) Triploid induction in the yellowtail tetra, Astyanax altiparanae, using temperature shock: tools for conservation and aquaculture. J World Aquacult Soc 48, 741750.Google Scholar
Aegerter, S and Jalabert, B (2004) Effects of post-ovulatory oocyte ageing and temperature on egg quality and on the occurrence of triploid fry in rainbow trout, Oncorhynchus mykiss . Aquaculture 231, 5971.Google Scholar
Alves, M, Coelho, M and Collares-Pereira, M (2001) Evolution in action through hybridisation and polyploidy in an Iberian freshwater fish: a genetic review. Genetica 111, 375385.Google Scholar
Arias-Rodriguez, L, Yasui, GS and Arai, K (2009) Disruption of normal meiosis in artificial inter-populational hybrid females of Misgurnus loach . Genetica 136, 4956.Google Scholar
Barlaup, BT, Lura, H, Sægrov, H and Sundt, RC (1994) Inter-and intra-specific variability in female salmonid spawning behaviour. Can J Zool 72, 636642.Google Scholar
Centofante, L, Bertollo, LAC and Moreira-Filho, O (2001) Comparative cytogenetics among sympatric species of Characidium (Pisces, Characiformes). Diversity analysis with the description of a ZW sex chromosome system and natural triploidy. Caryologia 54, 253260.Google Scholar
Da Silva, M, Matoso, DA, Ludwig, LAM, Gomes, E, Almeida, MC, Vicari, MR and Artoni, RF (2011) Natural triploidy in Rhamdia quelen identified by cytogenetic monitoring in Iguaçu basin, southern Brazil. Environ Biol Fish 91, 361.Google Scholar
De Carvalho, P, Paschoalini, A, Santos, G, Rizzo, E and Bazzoli, N (2009) Reproductive biology of Astyanax fasciatus (Pisces: Characiformes) in a reservoir in southeastern Brazil. J Appl Ichthyol 25, 306313.Google Scholar
Fauaz, G, Vicente, V and Moreira-Filho, O (1994) Natural triploidy and B chromosomes in the neotropical fish genus Astyanax (Characidae). Revista Brasileira de Genética 17, 157163.Google Scholar
Flajšhans, M, Kohlmann, K and Rab, P (2007) Autotriploid tench Tinca tinca (L.) larvae obtained by fertilization of eggs previously subjected to postovulatory ageing in vitro and in vivo . J Fish Biol 71, 868876.Google Scholar
Fujimoto, T, Yasui, GS, Yoshikawa, H, Yamaha, E and Arai, K (2008) Genetic and reproductive potential of spermatozoa of diploid and triploid males obtained from interspecific hybridization of Misgurnus anguillicaudatus female with M. mizolepis male. J Appl Ichthyol 24, 430437.Google Scholar
Garutti, V (2003) Piscicultura Ecológica, UNESP.Google Scholar
Kantek, DLZ, Noleto, RB, Fenocchio, AS and Cestari, MM (2007) Cytotaxonomy, heterochromatic polymorphism and natural triploidy of a species of Astyanax (Pisces, Characidae) endemic to the Iguaçu river basin. Brazilian Arch Biol Technol 50, 6774.Google Scholar
Lahnsteiner, F, Soares, F, Ribeiro, L and Dinis, M (2008) Egg quality determination in teleost fish. In Methods in Reproductive Aquaculture (Cabrita ERV and Herráez P eds) CRC Press, Florida, USA, pp. 149182.Google Scholar
Legendre, M, Slembrouck, J, Subagja, J and Kristanto, AH (2000) Ovulation rate, latency period and ova viability after GnRH-or hCG-induced breeding in the Asian catfish Pangasius hypophthalmus (Siluriformes, Pangasiidae). Aquat Living Resour, 13, 145151.Google Scholar
Linhart, O, Flajshans, M and Kvasnicka, P (1995) Gynogenesis of tench (Tinca tinca L.) after short-term storage of eggs. Aquaculture 129, 134135.Google Scholar
Machado, NS, Ferreira-Neto, M, Bakkali, M, Vicari, M, Artoni, RF, Oliveira, C and Foresti, F (2012) Natural triploidy and B chromosomes in Astyanax scabripinnis (Characiformes, Characidae): a new occurrence. Caryologia 65, 4046.Google Scholar
Maistro, EL, Lúcia Dias, A, Foresti, F, Oliveira, C and Filho, OM (1994) Natural triploidy in Astyanax scabripinnis (Pisces, Characidae) and simultaneous occurrence of macro B-chromosomes. Caryologia 47, 233239.Google Scholar
Mazzoni, R, Mendonça, R and Caramaschi, E (2005) Reproductive biology of Astyanax janeiroensis (Osteichthyes, Characidae) from the Ubatiba River, Maricá, RJ, Brazil. Brazilian J Biol 65, 643649.Google Scholar
Mohagheghi Samarin, A, Policar, T and Lahnsteiner, F (2015) Fish oocyte ageing and its effect on egg quality. Rev Fish Sci Aquacult 23, 302314.Google Scholar
Morelli, S, Bertollo, LAC and Moreira, O (1983) Cytogenetic Considerations on the Genus Astyanax (Pisces, Characidae). II. Occurrence of Natural Triploidy. Caryologia 36, 245250.Google Scholar
Nascimento, NF, de Siqueira-Silva, DH, Pereira-Santos, M, Fujimoto, T, Senhorini, JA, Nakaghi, LSO and Yasui, GS (2017a) Stereological analysis of gonads from diploid and triploid fish yellowtail tetra Astyanax altiparanae (Garutti & Britski) in laboratory conditions. Zygote 25, 537544.Google Scholar
Nascimento, NFD, Pereira-Santos, M, Piva, LH, Manzini, B, Fujimoto, T, Senhorini, JA, Yasui, GS and Nakaghi, LSO (2017b) Growth, fatty acid composition, and reproductive parameters of diploid and triploid yellowtail tetra Astyanax altiparanae . Aquaculture 471, 163171.Google Scholar
Pereira-Santos, M, Yasui, GS, Xavier, PLP, de Macedo Adamov, NS, do Nascimento, NF, Fujimoto, T, Senhorini, JA and Nakaghi, LSO (2016) Morphology of gametes, post-fertilization events and the effect of temperature on the embryonic development of Astyanax altiparanae (Teleostei, Characidae). Zygote 24, 795807.Google Scholar
Pereira-Santos, MP, Nascimento, NFD, Yasui, GS, Pereira, NL, Fujimoto, T, Senhorini, JA and Nakaghi, LSO (2018) Short-term storage of the oocytes affects the ploidy status in the yellowtail tetra Astyanax altiparanae . Zygote 26, 8998.Google Scholar
Piva, LH, de Siqueira-Silva, DH, Goes, CAG, Fujimoto, T, Saito, T, Dragone, LV, Senhorini, JA, Porto-Foresti, F, Ferraz, JBS and Yasui, GS (2018) Triploid or hybrid tetra: Which is the ideal sterile host for surrogate technology? Theriogenology 108, 239244.Google Scholar
Porto-Foresti, F, Castilho-Almeida, RB, Senhorini, JA and Foresti, F (2010) Biologia e criação do lambari do rabo amarelo (Astyanax altiparanae). In Espécies nativas para piscicultura no Brasil vol. 1 (Baldisserotto B and Gomes LC eds) Editora UFSM, Santa Maria, Brazil, pp. 101115.Google Scholar
Rizzo, E, Godinho, HP and Sato, Y (2003) Short-term storage of oocytes from the neotropical teleost fish Prochilodus marggravii . Theriogenology 60, 10591070.Google Scholar
Ros, AE, Amutio, V, Arceredillo, JM, Orti, G and Nani, A (1984) Induced breeding of the South American catfish, Rhamdia sapo (C & V). Aquaculture 37, 141146.Google Scholar
Sohrabnezhad, M, Kalbassi, M, Nazari, R and Bahmani, M (2006) Short-term storage of Persian sturgeon (Acipenser persicus) ova in artificial media and coelomic fluid. J Appl Ichthyol 22, 395399.Google Scholar
Tsuda, JR, Moraes, VP, Giuliano-Caetano, L and Dias, AL (2010) Occurrence of natural triploidy in Rhamdia quelen (Siluriformes, Heptapteridae). Genet Mol Res 9, 19291935.Google Scholar
Vazzoler, A (1996) Biologia e reprodução de peixes teleósteos: teroria e prática, CNPq – Nupléia, Maringá.Google Scholar
Xavier, PL, Senhorini, JA, Pereira-Santos, M, Fujimoto, T, Shimoda, E, Silva, LA, dos Santos, SA and Yasui, GS (2017) A flow cytometry protocol to estimate DNA content in the yellowtail tetra Astyanax altiparanae. Frontiers in Genetics, 8, 131.Google Scholar
Yasui, GS, Senhorini, JA, Shimoda, E, Pereira-Santos, M, Nakaghi, LSO, Fujimoto, T, Arias-Rodriguez, L and Silva, LA (2015) Improvement of gamete quality and its short-term storage: an approach for biotechnology in laboratory fish. Animal 9, 464470.Google Scholar