Analysis of Leptobarbus hoevenii in control environment at natural lakes

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internalnotes Ahmad, A.K., S. Othman and M.M. Ali, 2009a. A temporal study of selected metals concentration in fishes of lake chini, peninsular Malaysia. Malaysian J. Analytical Sci., 13: 100-106. Ahmad, A.K., S. Othman, M.B. Ghasim and S. Dugat, 2009b. Fish diversity at lake Chini, Pahang, Malaysia. Sains Malaysiana.35: 625-630. Ahmad, H., M. Idris, J. Hamzah, M.E. Toriman and A. Kurnia, 2012. Tourism packaging lake chini as biosphere reserve. J. e-Bangi, 7: 119-132. Ashhar, A.O., 1998. Breeding and production of carp fry(leptobarbus hoevenii) bleeker. Freshwater Fisheries Research Center, PPPAT, Batu Berendam, Melaka, Malaysia. Batisse, M., 1982. The biosphere reserve: A tool for environmental conservation and management. Environ. Conservat., 9: 101-111. DOI:10.1017/S0376892900019937 Boyd, C.E., 1998. Water quality for pond aquaculture.research and development. Proceedings of the Series43rd International Center for Aquaculture and Aquatic Environments, Alabama Agricultural Experiment Station, (AAES’ 98), Auburn University, Alabama. Elliott, J.M. and L. Persson, 1978. The estimation of daily rates of food consumption for fish. J. Anim. Ecol., 47: 977-991. Erincho, S.B., 1993. Lake Chini-Eco-Tourism development study. Environmental Impact Assessment, Malaysia. Hyslop, E.J., 1980. Stomach contents analysis-a review of methods and their application. J. Fish Biol., 17:411-429. DOI: 10.1111/j.1095-8649.1980.tb02775.x Idris, M. and A.A. Kutty, 2005. Tren of Physico-chemical Water Quality. In: Sumber Asli Tasik Chini, Mushrifah, I., K. Hussin and A. Latiff, (Eds.),Penerbit Universiti Kebangsaan Malaysia, Bangi,ISBN-10: 9679427439, pp: 20-29. Inerny, D.M. and G. Gerard, 1989. All about Tropical Fish. 4th Edn., Random House Australia, Sydney,ISBN-10: 0091693705, pp: 480. Kamarudin, M.K.A., M.E. Toriman, S. Mastura, S.A.M. Idris and N.R. Jamil et al., 2009. Temporal variability on lowland river sediment properties and yield. Am. J. Environ. Sci., 5: 657-663. DOI:10.3844/ajessp.2009.657.663. Othman, J., M.E. Toriman, M. Idris, S. Mastura and S.A. Hafizan et al., 2010a. Study of water level-discharge relationship using Artificial Neural Network (ANN) in sungai gumum, tasik chini, pahang, Malaysia. Res. J. Applied Sci., 5: 20-26.DOI: 10.3923/rjasci.2010.20.26. Othman, J., M.E. Toriman, M. Idris, S. Mastura and S.A.M.B. Gazim et al., 2010b. Modeling the impacts of ringlet reservoir on downstream hydraulic capacity of bertam river using XPSWMM in cameron highlands, Malaysia. Res.J. Applied Sci., 5: 47-53. DOI:10.3923/rjasci.2010.47.53 Othman, S.M., L.E. Chong and M.B. Gasim, 2009.Status of Water Quality On Chini Lake And River. In: Natural Resources of Lake Chini, Idris, M., S. Othman, M. Sahibin, A. Rahim. Hussin and N.A. Abas et al., (Eds.), National University of Malaysia, Bangi, pp: 33-42. Othman, S.M., L.E. Chong, M. Idris and S. Idrus, 2005.Water quality and heavy metals at chini lake, pahang. EAR. Pathmasothy, S., 1985. The Effect of Three Diets with Variable Protein Levels on Ovary Development and Fecundity in Leptobarbus hoevenii. In: Finfish Nutrition in Asia: Methodological Approaches to Research and Development, Cho, C.Y., C.B. Cowey and T. Watanabe, (Eds.), International Development Research Centre, ISBN-10: 088936429X, pp: 23-26. Schultz, L., A. Duit and C. Folke, 2011. Participation, adaptive co-management and management performance in the world network of biosphere reserves. World Dev., 39: 662-671. DOI:10.1016/j.worlddev.2010.09.014 Tan, E.S.P., 1980. Some aspects of the biology of Malaysian riverine cyprinids. Aquaculture, 20: 281-290. DOI: 10.1016/0044-8486(80)90119-2 Toriman, M.E., M.K.A Kamarudin, N.A.A. Azlina and M.B. Gasim et al., 2009. Modeling hydrological hydraulic analysis of water flow inverse river sediment particle size, chini river, pahang. J. E-Bangi, 4: 56-69.
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spelling 10715 https://intelek.unisza.edu.my/intelek/pages/view.php?ref=10715 https://intelek.unisza.edu.my/intelek/pages/search.php?search=!collection407072 Restricted Document Article Journal image/jpeg inches 96 96 norman 1431 20 20 2016-10-13 09:21:56 727 1431x727 4822-01-FH02-FBIM-16-06776.jpg UniSZA Private Access Analysis of Leptobarbus hoevenii in control environment at natural lakes American Journal of Agricultural and Biological Science Leptobarbus hoevenii or its common name Ikan Jelawat is a high-value fish from family Cyprinidae, genus Leptobarbus are omnivorous fish that can grow up to 60 cm long. Due to human activities and the time change, this species has been depleted in Lake Chini. As an initiative from the Malaysian government, a conservation project for this species has been carried out. This article discussed the results on growth-up monitoring of L. hoevenii on the food and environment factor in conservation cage at Lake Chini. Monitoring of the grown-up, food and water quality of chemical composition was carried out for four months of this study. The results of statistical analysis showed, L. hoevenii growth is a positive rate with the Body Weight (BW) and Total Length (TL) on R2 0.986 and R2 0.988 respectively, by using floating type ‘grower pellet’, with 32% of protein. However, the Jemberau River basin is experiencing changes duelogging and mining activities and that have affected to the chemical composition of the water quality and environmental. The iron content in the first week is ±0.0 mg L-1 change to ±5.0 mg L-1 and ±0.0 mg L-1 to ±2.0 mg L-1 for ammonia content in 10 weeks. The high content of the iron and ammonia on the water quality in the cage areas, effected for livestock to be stressed and also to the diet and growth-up of fish.2500 of batch 1 L. hoevenii that has been released in Lake Chini showed they can be adapted to the local environment at the Laut Jemberau Lake, but take a time. Therefore, the closure of the Laut Jemberau Lakeas fish conservation area is proposed to ensure that conservation objectives are achieved. 8 2 142-148 Ahmad, A.K., S. Othman and M.M. Ali, 2009a. A temporal study of selected metals concentration in fishes of lake chini, peninsular Malaysia. Malaysian J. Analytical Sci., 13: 100-106. Ahmad, A.K., S. Othman, M.B. Ghasim and S. Dugat, 2009b. Fish diversity at lake Chini, Pahang, Malaysia. Sains Malaysiana.35: 625-630. Ahmad, H., M. Idris, J. Hamzah, M.E. Toriman and A. Kurnia, 2012. Tourism packaging lake chini as biosphere reserve. J. e-Bangi, 7: 119-132. Ashhar, A.O., 1998. Breeding and production of carp fry(leptobarbus hoevenii) bleeker. Freshwater Fisheries Research Center, PPPAT, Batu Berendam, Melaka, Malaysia. Batisse, M., 1982. The biosphere reserve: A tool for environmental conservation and management. Environ. Conservat., 9: 101-111. DOI:10.1017/S0376892900019937 Boyd, C.E., 1998. Water quality for pond aquaculture.research and development. Proceedings of the Series43rd International Center for Aquaculture and Aquatic Environments, Alabama Agricultural Experiment Station, (AAES’ 98), Auburn University, Alabama. Elliott, J.M. and L. Persson, 1978. The estimation of daily rates of food consumption for fish. J. Anim. Ecol., 47: 977-991. Erincho, S.B., 1993. Lake Chini-Eco-Tourism development study. Environmental Impact Assessment, Malaysia. Hyslop, E.J., 1980. Stomach contents analysis-a review of methods and their application. J. Fish Biol., 17:411-429. DOI: 10.1111/j.1095-8649.1980.tb02775.x Idris, M. and A.A. Kutty, 2005. Tren of Physico-chemical Water Quality. In: Sumber Asli Tasik Chini, Mushrifah, I., K. Hussin and A. Latiff, (Eds.),Penerbit Universiti Kebangsaan Malaysia, Bangi,ISBN-10: 9679427439, pp: 20-29. Inerny, D.M. and G. Gerard, 1989. All about Tropical Fish. 4th Edn., Random House Australia, Sydney,ISBN-10: 0091693705, pp: 480. Kamarudin, M.K.A., M.E. Toriman, S. Mastura, S.A.M. Idris and N.R. Jamil et al., 2009. Temporal variability on lowland river sediment properties and yield. Am. J. Environ. Sci., 5: 657-663. DOI:10.3844/ajessp.2009.657.663. Othman, J., M.E. Toriman, M. Idris, S. Mastura and S.A. Hafizan et al., 2010a. Study of water level-discharge relationship using Artificial Neural Network (ANN) in sungai gumum, tasik chini, pahang, Malaysia. Res. J. Applied Sci., 5: 20-26.DOI: 10.3923/rjasci.2010.20.26. Othman, J., M.E. Toriman, M. Idris, S. Mastura and S.A.M.B. Gazim et al., 2010b. Modeling the impacts of ringlet reservoir on downstream hydraulic capacity of bertam river using XPSWMM in cameron highlands, Malaysia. Res.J. Applied Sci., 5: 47-53. DOI:10.3923/rjasci.2010.47.53 Othman, S.M., L.E. Chong and M.B. Gasim, 2009.Status of Water Quality On Chini Lake And River. In: Natural Resources of Lake Chini, Idris, M., S. Othman, M. Sahibin, A. Rahim. Hussin and N.A. Abas et al., (Eds.), National University of Malaysia, Bangi, pp: 33-42. Othman, S.M., L.E. Chong, M. Idris and S. Idrus, 2005.Water quality and heavy metals at chini lake, pahang. EAR. Pathmasothy, S., 1985. The Effect of Three Diets with Variable Protein Levels on Ovary Development and Fecundity in Leptobarbus hoevenii. In: Finfish Nutrition in Asia: Methodological Approaches to Research and Development, Cho, C.Y., C.B. Cowey and T. Watanabe, (Eds.), International Development Research Centre, ISBN-10: 088936429X, pp: 23-26. Schultz, L., A. Duit and C. Folke, 2011. Participation, adaptive co-management and management performance in the world network of biosphere reserves. World Dev., 39: 662-671. DOI:10.1016/j.worlddev.2010.09.014 Tan, E.S.P., 1980. Some aspects of the biology of Malaysian riverine cyprinids. Aquaculture, 20: 281-290. DOI: 10.1016/0044-8486(80)90119-2 Toriman, M.E., M.K.A Kamarudin, N.A.A. Azlina and M.B. Gasim et al., 2009. Modeling hydrological hydraulic analysis of water flow inverse river sediment particle size, chini river, pahang. J. E-Bangi, 4: 56-69.
spellingShingle Analysis of Leptobarbus hoevenii in control environment at natural lakes
summary Leptobarbus hoevenii or its common name Ikan Jelawat is a high-value fish from family Cyprinidae, genus Leptobarbus are omnivorous fish that can grow up to 60 cm long. Due to human activities and the time change, this species has been depleted in Lake Chini. As an initiative from the Malaysian government, a conservation project for this species has been carried out. This article discussed the results on growth-up monitoring of L. hoevenii on the food and environment factor in conservation cage at Lake Chini. Monitoring of the grown-up, food and water quality of chemical composition was carried out for four months of this study. The results of statistical analysis showed, L. hoevenii growth is a positive rate with the Body Weight (BW) and Total Length (TL) on R2 0.986 and R2 0.988 respectively, by using floating type ‘grower pellet’, with 32% of protein. However, the Jemberau River basin is experiencing changes duelogging and mining activities and that have affected to the chemical composition of the water quality and environmental. The iron content in the first week is ±0.0 mg L-1 change to ±5.0 mg L-1 and ±0.0 mg L-1 to ±2.0 mg L-1 for ammonia content in 10 weeks. The high content of the iron and ammonia on the water quality in the cage areas, effected for livestock to be stressed and also to the diet and growth-up of fish.2500 of batch 1 L. hoevenii that has been released in Lake Chini showed they can be adapted to the local environment at the Laut Jemberau Lake, but take a time. Therefore, the closure of the Laut Jemberau Lakeas fish conservation area is proposed to ensure that conservation objectives are achieved.
title Analysis of Leptobarbus hoevenii in control environment at natural lakes
title_full Analysis of Leptobarbus hoevenii in control environment at natural lakes
title_fullStr Analysis of Leptobarbus hoevenii in control environment at natural lakes
title_full_unstemmed Analysis of Leptobarbus hoevenii in control environment at natural lakes
title_short Analysis of Leptobarbus hoevenii in control environment at natural lakes
title_sort analysis of leptobarbus hoevenii in control environment at natural lakes