Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2018, Cilt: 1 Sayı: 1, 1 - 11, 16.01.2018
https://doi.org/10.3153/AR18001

Öz

Kaynakça

  • Angienda, P. O., Lee, H.J., Elmer, K.R., Abila, R., Waindi, E.N., Meyer, A. (2011). Genetic structure and gene flow in an endangered native tilapia fish (Oreochromis esculentus) compared to invasive Nile tilapia (Oreochromis niloticus) in Yala swamp, East Africa. Conservation Genetics, 12(1), 243-255.
  • Brander, K.M. (2007). Global fish production and climate change. International Council for the Exploration of the Sea, Copenhagen V, Denmark.
  • El-Sherif, M.S., El-Feky A.M.I. (2009). Performance of Nile tilapia (Oreochromis niloticus) fingerlings. II. Influence of different water temperatures. International Journal of Agriculture and Biology, 11(3), 297-300.
  • FAO (2011). Fisheries and Aquaculture Proceedings No. 20. Rome, FAO. pp. 85-112.
  • Food & Agriculture Organisation (FAO) (2010). The State of World Fisheries and Aquaculture. Rome.
  • Gardeur J.N., Mathis, N., Kobilinsky, A., Brun-Bellut, J. (2007). Simultaneous effects of nutritional and environmental factors on growth and flesh quality of Perca fluviatilis using a fractional factorial design study. Aquaculture, 273, 50-63.
  • Ghosal M.K., Tiwari G.N., Das D.K., Pandey K.P. (2005). Modelling and comparative thermal performance of greenhouse air collector and earth air heat exchanger for heating of greenhouse. Energy Build, 37, 613-621.
  • Hirpo, L.A. (2013). Reproductive biology of Oreochromis niloticus in Lake Beseka, Ethiopia. Journal of Animal Biology, 7(9), 116-120.
  • Hulata, G., Simon, Y. (2011). An overview on desert aquaculture in Israel. In V. Crespi & A. Lovatelli (Eds). Aquaculture in desert and arid lands: development constraints and opportunities. FAO Technical Workshop. 6–9 July 2010, Hermosillo, Mexico.
  • Josiah, A., Mwatete, M.C., Njiru, J. (2014). Effects of greenhouse and stocking density on growth and survival of African catfish (Clarias gariepinus Burchell 1822 ) fry reared in high altitude Kenya regions. Internationa Journal of Science and Research, 3(9), 1558-1563.
  • Karadede-Akin, H., Ünlü, E. (2007). Heavy metal concentrations in water, sediment, fish and some benthic organisms from Tigris River, Turkey. Environmental Monitoring and Assessment, 131(1), 323-337.
  • Kausar, R. & Salim, M. (2006). Effect of water temperature on the growth performance and feed conversion ratio of Labeo rohita. Pakistan Veterinary Journal, 26(3), 105-108.
  • Lucas, J.S., Southgate, P. (2003). Aquaculture. Blackwell Publishing Company, Oxford, United Kingdom. ISBN: 978-1-405-18858-6
  • Mirea, C., Cristea, V., Grecu, I. R., & Dediu, L. (2013). Influence of different water temperature on intensive growth performance of Nile tilapia Oreochromis niloticus Linnaeus 1758 in a recirculating aquaculture system. Lucrări Ştiinţifice-Seria Zootehnie, 60, 227-231.
  • Mizanur, R.M., Yun, H., Moniruzzaman, M., Ferreira, F. Kang-Woong, K., Sungchul, C.B. (2014). Effects of feeding rate and water temperature on growth and body composition of juvenile Korean Rockfish, (Hilgendorf 1880). Journal of Animal Science, 5(27), 690-699.
  • Musa, S.M., Aura, C.M., Ngugi C.C., Kundu, R. (2012). The effects of three different feed types on growth performance and survival of African catfish fry (Clarias gariepinus) reared in a hatchery. International Scholarly Research Network ISRN Zoology, Volume 2012, Article ID 861364, 6 pages doi:10.5402/2012/861364
  • Nsonga, A. (2014). Indigenous fish species a panacea for cage aquaculture in Zambia : A case for Oreochromis macrochir (Boulenger, 1912) at Kambashi out-grower scheme. International Journal of Fisheries and Aquatic Studies, 2(1), 102-105.
  • Pandit N. & Nakamura M. (2010). Effect of high temperature on survival, growth and feed inversion ratio of Nile tilapia, Oreochromis niloticus. Our Nature, 8(1), 219-224.
  • Priyamvada, D., Sirisha D., Gandhi N. (2013). Characterization of fish pond in and around Bhimavaram, West Godavari A.P India. International Journal of Research in Chemistry Environment, 2(1), 251-254.
  • Santos, V.B.D., Mareco, E.A., Dal Pai Silva, M. (2013). Growth curves of Nile tilapia (Oreochromis niloticus) strains cultivated at different temperatures. Acta Scientiarum. Animal Sciences, 35(3), 235-242.
  • Xia, J., Li, X. (2010). Effect of temperature on blood parameters of the salamander Batrachuperus tibetanus (Schmidt, 1925) (Amphibia: Hynobiidae). Russian Journal of Ecology 41, 102-106.
  • Zhu, S., Deltour, J., Wang, S. (1998). Modelling the thermal characteristics of greenhouse pond systems. Journal of Aquaculture Engineering 18, 201-217.
  • Zimbabwe Department of Meteorological services report (2007-2012). Ministry of Home Affairs, Zimbabwe.

GROWTH PERFORMANCE, SURVIVAL AND BREEDING OF Oreochromis niloticus AND Oreochromis macrochir REARED UNDER GREENHOUSE CONDITIONS

Yıl 2018, Cilt: 1 Sayı: 1, 1 - 11, 16.01.2018
https://doi.org/10.3153/AR18001

Öz

The growth, survival and breeding performance of Oreochromis
niloticus
and Oreochromis macrochir was investigated in earthen
ponds under greenhouse conditions at Henderson Research Institute. Six
experimental ponds, three in open atmosphere and three under greenhouses were
set up. Each pond was further subdivided by hapas to make 12 experimental units
of which half were stocked with Oreochromis niloticus and the other Oreochromis
macrochir
. Fish weights and lengths were recorded fortnightly and feed
intake was based on current biomass. Fish sex and breeding activities were
noted. Results showed that mean weight gain for O. niloticus was
significantly higher than O. macrochir both in greenhouse ponds and open
ponds. Feed intake was also higher leading to greater weight gains in the
greenhouse than in open ponds. Growth performance of both species improved
significantly under greenhouse culture but O. niloticus was much
superior compared to O. macrochir. Even O. niloticus cultured in
open ponds had superior performance to O. macrochir cultured in
greenhouse ponds. Turbidity, alkalinity and sulphates had positive correlation
with the weight and length of O. macrochir in open ponds. The study
results demonstrated that the greenhouse can enhance growth performance of O.
niloticus
and O. macrochir in climatic considered less favourable
for tilapia culture.

Kaynakça

  • Angienda, P. O., Lee, H.J., Elmer, K.R., Abila, R., Waindi, E.N., Meyer, A. (2011). Genetic structure and gene flow in an endangered native tilapia fish (Oreochromis esculentus) compared to invasive Nile tilapia (Oreochromis niloticus) in Yala swamp, East Africa. Conservation Genetics, 12(1), 243-255.
  • Brander, K.M. (2007). Global fish production and climate change. International Council for the Exploration of the Sea, Copenhagen V, Denmark.
  • El-Sherif, M.S., El-Feky A.M.I. (2009). Performance of Nile tilapia (Oreochromis niloticus) fingerlings. II. Influence of different water temperatures. International Journal of Agriculture and Biology, 11(3), 297-300.
  • FAO (2011). Fisheries and Aquaculture Proceedings No. 20. Rome, FAO. pp. 85-112.
  • Food & Agriculture Organisation (FAO) (2010). The State of World Fisheries and Aquaculture. Rome.
  • Gardeur J.N., Mathis, N., Kobilinsky, A., Brun-Bellut, J. (2007). Simultaneous effects of nutritional and environmental factors on growth and flesh quality of Perca fluviatilis using a fractional factorial design study. Aquaculture, 273, 50-63.
  • Ghosal M.K., Tiwari G.N., Das D.K., Pandey K.P. (2005). Modelling and comparative thermal performance of greenhouse air collector and earth air heat exchanger for heating of greenhouse. Energy Build, 37, 613-621.
  • Hirpo, L.A. (2013). Reproductive biology of Oreochromis niloticus in Lake Beseka, Ethiopia. Journal of Animal Biology, 7(9), 116-120.
  • Hulata, G., Simon, Y. (2011). An overview on desert aquaculture in Israel. In V. Crespi & A. Lovatelli (Eds). Aquaculture in desert and arid lands: development constraints and opportunities. FAO Technical Workshop. 6–9 July 2010, Hermosillo, Mexico.
  • Josiah, A., Mwatete, M.C., Njiru, J. (2014). Effects of greenhouse and stocking density on growth and survival of African catfish (Clarias gariepinus Burchell 1822 ) fry reared in high altitude Kenya regions. Internationa Journal of Science and Research, 3(9), 1558-1563.
  • Karadede-Akin, H., Ünlü, E. (2007). Heavy metal concentrations in water, sediment, fish and some benthic organisms from Tigris River, Turkey. Environmental Monitoring and Assessment, 131(1), 323-337.
  • Kausar, R. & Salim, M. (2006). Effect of water temperature on the growth performance and feed conversion ratio of Labeo rohita. Pakistan Veterinary Journal, 26(3), 105-108.
  • Lucas, J.S., Southgate, P. (2003). Aquaculture. Blackwell Publishing Company, Oxford, United Kingdom. ISBN: 978-1-405-18858-6
  • Mirea, C., Cristea, V., Grecu, I. R., & Dediu, L. (2013). Influence of different water temperature on intensive growth performance of Nile tilapia Oreochromis niloticus Linnaeus 1758 in a recirculating aquaculture system. Lucrări Ştiinţifice-Seria Zootehnie, 60, 227-231.
  • Mizanur, R.M., Yun, H., Moniruzzaman, M., Ferreira, F. Kang-Woong, K., Sungchul, C.B. (2014). Effects of feeding rate and water temperature on growth and body composition of juvenile Korean Rockfish, (Hilgendorf 1880). Journal of Animal Science, 5(27), 690-699.
  • Musa, S.M., Aura, C.M., Ngugi C.C., Kundu, R. (2012). The effects of three different feed types on growth performance and survival of African catfish fry (Clarias gariepinus) reared in a hatchery. International Scholarly Research Network ISRN Zoology, Volume 2012, Article ID 861364, 6 pages doi:10.5402/2012/861364
  • Nsonga, A. (2014). Indigenous fish species a panacea for cage aquaculture in Zambia : A case for Oreochromis macrochir (Boulenger, 1912) at Kambashi out-grower scheme. International Journal of Fisheries and Aquatic Studies, 2(1), 102-105.
  • Pandit N. & Nakamura M. (2010). Effect of high temperature on survival, growth and feed inversion ratio of Nile tilapia, Oreochromis niloticus. Our Nature, 8(1), 219-224.
  • Priyamvada, D., Sirisha D., Gandhi N. (2013). Characterization of fish pond in and around Bhimavaram, West Godavari A.P India. International Journal of Research in Chemistry Environment, 2(1), 251-254.
  • Santos, V.B.D., Mareco, E.A., Dal Pai Silva, M. (2013). Growth curves of Nile tilapia (Oreochromis niloticus) strains cultivated at different temperatures. Acta Scientiarum. Animal Sciences, 35(3), 235-242.
  • Xia, J., Li, X. (2010). Effect of temperature on blood parameters of the salamander Batrachuperus tibetanus (Schmidt, 1925) (Amphibia: Hynobiidae). Russian Journal of Ecology 41, 102-106.
  • Zhu, S., Deltour, J., Wang, S. (1998). Modelling the thermal characteristics of greenhouse pond systems. Journal of Aquaculture Engineering 18, 201-217.
  • Zimbabwe Department of Meteorological services report (2007-2012). Ministry of Home Affairs, Zimbabwe.
Toplam 23 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Hidrobiyoloji
Bölüm Articles
Yazarlar

Clementain C. Zvavahera 0000-0002-5445-0563

Vimbai R. Hamandishe 0000-0001-6462-5614

Petronella T. Saidi 0000-0002-8376-5695

Venancio E. Imbayarwo-chikosi 0000-0003-3775-0051

Tamuka Nhiwatiwa 0000-0002-5295-0724

Yayımlanma Tarihi 16 Ocak 2018
Gönderilme Tarihi 23 Kasım 2017
Yayımlandığı Sayı Yıl 2018Cilt: 1 Sayı: 1

Kaynak Göster

APA Zvavahera, C. C., Hamandishe, V. R., Saidi, P. T., Imbayarwo-chikosi, V. E., vd. (2018). GROWTH PERFORMANCE, SURVIVAL AND BREEDING OF Oreochromis niloticus AND Oreochromis macrochir REARED UNDER GREENHOUSE CONDITIONS. Aquatic Research, 1(1), 1-11. https://doi.org/10.3153/AR18001

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