The effect of molasses, tapioca and sago flour on biofloc system and volume of growth performance in whiteleg shrimp Litopenaeus vannamei
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Avnimelech, Y. 1999. Carbon/nitrogen ratio as a control element in aquaculture systems. Aquaculture, 176(3–4): 227–235.
Ballester, E. L., L. P. Maurente, A. Heldt, F. M. Dutra. 2018. Vitamin and mineral supplementation for Macrobrachium rosenbergii in biofloc system. Latin American Journal of Aquatic Research, 46(4): 855–859.
Castro, L. F., R. C. Pinto, A. J. Nunes. 2021. Nutrient value and contribution of microbial floc to the growth performance of juvenile shrimp, Litopenaeus vannamei, fed fatty acid and amino acid-restrained diets under a zero-water exchange intensive system. Aquaculture, 531: 735789.
Chen, X., G. Luo, J. Tan, H. Tan, M. Yao. 2020. Effects of carbohydrate supply strategies and biofloc concentrations on the growth performance of African catfish (Clarias gariepinus) cultured in biofloc systems. Aquaculture, 517: 734808.
Chethurajupalli, L., N. Tambireddy. 2021. Rearing of white leg shrimp Litopenaeus vannamei (Boone, 1931) in biofloc and substrate systems: microbial community of water, growth and immune response of shrimp. Turkish Journal of Fisheries and Aquatic Sciences, 22(3).
David, L. H., S. M. Pinho, K. J. Keesman, F. Garcia. 2021. Assessing the sustainability of tilapia farming in biofloc-based culture using emergy synthesis. Ecological Indicators, 131: 108186.
Deng, M., J. Chen, J. Gou, J. Hou, D. Li, X. He. 2018. The effect of different carbon sources on water quality, microbial community and structure of biofloc systems. Aquaculture, 482: 103–110.
Ekasari, J., M. F. Allam, W. Wiyoto, P. G. S. Julyantoro, I. A. Fauzi, M. Gustilatov, H. Nasrullah. 2024. Carbohydrate structural complexity modulates the formation, composition and functionality of microbial flocs and its impact on gut microbiota and growth of Pacific white shrimp. Aquaculture, 591: 741122.
Ekasari, J., M. H. Azhar, E. H. Surawidjaja, S. Nuryati, P. De Schryver, P. Bossier. 2014. Immune response and disease resistance of shrimp fed biofloc grown on different carbon sources. Fish Shellfish Immunology, 41(2): 332–339.
FAO. 2024. The State of World Fisheries and Aquaculture 2024: Blue Transformation in action. Rome.
Fauji, H., T. Budiardi, J. Ekasari. 2018. Growth performance and robustness of African catfish Clarias gariepinus (Burchell) in biofloc-based nursery production with different stocking densities. Aquaculture Research, 49(3): 1339–1346.
Ferreira, G. S., D. Santos, F. Schmachtl, C. Machado, V. Fernandes, M. Bögner, D. D. Schleder, W. Q. Seiffert, F. N. Vieira. 2021. Heterotrophic, chemoautotrophic and mature approaches in biofloc system for Pacific white shrimp. Aquaculture, 533: 736099.
Gunawan, S., H. W. Aparamarta, I. M. Zarkasie, W. W. Prihandini. 2018. Effect of initial bacterial cells number and fermentation time on increasing nutritive value of sago flour. Malaysian Journal of Fundamental and Applied Sciences, 14(2): 246–250.
Gustilatov, M., J. Ekasari, G. S. J. Pande. 2022. Protective effects of the biofloc system in Pacific white shrimp (Penaeus vannamei) culture against pathogenic Vibrio parahaemolyticus infection. Fish Shellfish Immunology, 124: 66–73.
Huang, H. H., C. Y. Li, Y. J. Lei, B. L. Zhou, W. Q. Kuang, W. S. Zou, P. H. Yang. 2023. Effects of Bacillus strain added as initial indigenous species into the biofloc system rearing Litopenaeus vannamei juveniles on biofloc preformation, water quality and shrimp growth. Aquaculture, 569: 739375.
Izel-Silva, J., R. B. Dos Santos, P. A. de Medeiros, S. M. Suita, W. Wasielesky Jr, M. M. S. Fugimura, E. G. Affonso. 2024. Brycon amazonicus larviculture cannibalism is reduced in biofloc systems. Aquaculture, 579: 740180.
Kaya, D., E. Genc, M. A. Genc, M. Aktas, O. T. Eroldogan, D. Guroy. 2020. Biofloc technology in recirculating aquaculture system as a culture model for green tiger shrimp, Penaeus semisulcatus: Effects of different feeding rates and stocking densities. Aquaculture, 528: 735526.
Khanjani, M. H., A. Mohammadi, M. G. C. Emerenciano. 2022. Microorganisms in biofloc aquaculture system. Aquaculture Reports, 26: 101300.
Khanjani, M. H., M. Sharifinia, S. Hajirezaee. 2022. Recent progress towards the application of biofloc technology for tilapia farming. Aquaculture, 552: 738021.
Kumar, V. S., P. K. Pandey, T. Anand, G. R. Bhuvaneswari, A. Dhinakaran, S. Kumar. 2018. Biofloc improves water, effluent quality and growth parameters of Penaeus vannamei in an intensive culture system. Journal of Environmental Management, 215: 206–215.
Liestianty, D., I. Rodianawati, P. Patimah, M. Muliadi. 2016. Chemical composition of modified and fortified sago starch (Metroxylon sp) from Northern Maluku. International Journal of Applied Chemistry, 12(3): 243–249.
Lugert, V., K. Hopkins, C. Schulz, K. Schlicht, J. Krieter. 2018. The course of growth, feed intake and feed efficiency of different turbot (Scophthalmus maximus) strains in recirculating aquaculture systems. Turkish Journal of Fisheries and Aquatic Sciences, 19(4): 305–312.
McCusker, S., M. B. Warberg, S. J. Davies, C. D. S. Valente, M. P. Johnson, R. Cooney, A. H. Wan. 2023. Biofloc technology as part of a sustainable aquaculture system: A review on the status and innovations for its expansion. Aquaculture, Fish and Fisheries, 3(4): 331–352.
Ogello, E. O., N. O. Outa, K. O. Obiero, D. N. Kyule, J. M. Munguti. 2021. The prospects of biofloc technology (BFT) for sustainable aquaculture development. Scientific African, 14: e01053.
Oliveira, L. K., L. Pilz, P. S. Furtado, E. L. C. Ballester, A. J. de Almeida Bicudo. 2021. Growth, nutritional efficiency, and profitability of juvenile GIFT strain of Nile tilapia (Oreochromis niloticus) reared in biofloc system on graded feeding rates. Aquaculture, 541: 736830.
Panigrahi, A., M. Sundaram, C. Saranya, R. S. Kumar, J. S. Dayal, R. Saraswathy, S. K. Otta, P. S. Shyne Anand, P. Nila Rekha, C. Gopal. 2019. Influence of differential protein levels of feed on production performance and immune response of Pacific white leg shrimp in a biofloc–based system. Aquaculture, 503: 118–127.
Pardede, M. A., W. Widanarni, M. Sukenda, M. Yuhana, J. Y. Loh. 2024. Effects of dietary synbiotic supplementation on digestive enzyme, total Vibrio count, and hepatopancreas of Pacific white shrimp, Penaeus vannamei challenged with Vibrio parahaemolyticus. Journal of Applied Aquaculture, 1–11.
Purwanto, P., Sarjito, D. Wijayanto. 2023. Strategy for the Development of Sustainable Vannamei (Litopenaeus vannamei) Shrimp Culture in Plastic Ponds in Tegal Regency, Central Java. Journal of Aquaculture and Fish Health, 12(1): 115–126.
Quyen, N. T. K., H. V. Hien, L. N. D. Khoi, N. Yagi, A. K. Lerøy Riple. 2020. Quality management practices of intensive whiteleg shrimp (Litopenaeus vannamei) farming: A study of the Mekong Delta, Vietnam. Sustainability, 12(11): 4520.
Rahim, R., A. Landu, B. Asmono. 2023. The Addition of Carbon Sources in Suppressing the Development of Bacteria Vibrio sp. in the Cultivation of Vaname Shrimp (Litopenaeus vannamei) Bioflok System. Saintek Perikanan: Indonesian Journal of Fisheries Science and Technology, 19(2).
Rangka, N. A., G. Gunarto. 2012. The Effect of Biofloc Growing On Vannamei Shrimp Culture At Intensive System Pond. Jurnal Ilmiah Perikanan dan Kelautan, 4(2): 141–149.
Raza, B., Z. Zheng, J. Zhu, W. Yang. 2024. A review: Microbes and their effect on growth performance of Litopenaeus vannamei (white leg shrimps) during culture in biofloc technology system. Microorganisms, 12(5): 1013.
Rostika, R., M. F. Azhima, Y. N. Ihsan, Y. Andriani, I. B. B. Suryadi, L. P. Dewanti. 2020. The use of solid probiotics in feed to growth and survival rate of mantap common carp (Cyprinus carpio). Aquaculture, Aquarium, Conservation & Legislation, 13(1): 199–206.
Roslan, H. A., M. A. Hossain, N. N. Sing, A. Husaini. 2020. Sago palm genome size estimation via real-time quantitative PCR. Current Applied Science and Technology, 208–216.
Sarmayani, S., S. Effendi, I. Ahmad. 2023. Management of broodstock rearing of vanname shrimp (Litopenaeus vannamei) at PT Esaputlii Prakarsa Utama, Barru Regency, South Sulawesi. Indonesian Journal of Contemporary Multidisciplinary Research, 2(3): 433–444.
Senawi, B. L., R. Asdari, M. B. Munir. 2020. Effects of sago-based (Metroxylon sagu) carbohydrate on growth performance and blood plasma compositions of Nile tilapia, Oreochromis niloticus (Linnaeus, 1758) juveniles. Journal of Sustainability Science and Management, 15(7): 56–73.
Sidiq, F. F., D. Coles, C. Hubbard, B. Clark, L. J. Frewer. 2021. Sago and the indigenous peoples of Papua, Indonesia: A review. Journal of Agriculture and Applied Biology, 2(2): 138–149.
Singh, T., A. Mandal, S. A. Holeyappa, S. O. Khairnar, A. Tyagi. 2024. Growth performance and physiological responses of striped catfish (Pangasianodon hypophthalmus) under different carbohydrates supplemented biofloc aquaculture systems. Aquaculture, 579: 740252.
Sontakke, R., V. K. Tiwari, P. Kurcheti, B. R. Asanaru Majeedkutty, M. P. Ande, H. Haridas. 2021. Yam‐based biofloc system improves the growth, digestive enzyme activity, bacterial community structure and nutritional content in milkfish (Chanos chanos). Aquaculture Research, 52(7): 3460–3474.
Suleman, G. A., W. Widanarni, M. Yuhana, U. Afiff. 2024. Growth, immunity, and resistance of catfish (Clarias sp.) reared in biofloc system supplemented with Bacillus NP5 against Aeromonas hydrophila infection. Indonesian Aquaculture Journal, 19(1): 45–56.
Thompson, M. S., T. H. Yan, K. M. Mikal, S. M. Shamsudin, A. Rashed, S. R. Sarbini. 2023. An in vivo study: Prebiotic evaluation of the resistant starch from Metroxylon sagu on obesity using fat-induced rats. Bioactive Carbohydrates and Dietary Fibre, 30: 100365.
Toledo, T. M., B. C. Silva, F. D. N. Vieira, J. L. P. Mouriño, W. Q. Seiffert. 2016. Effects of different dietary lipid levels and fatty acids profile in the culture of white shrimp Litopenaeus vannamei (Boone) in biofloc technology: water quality, biofloc composition, growth and health. Aquaculture Research, 47(6): 1841–1851.
Uthumporn, U., N. Wahidah, A. A. Karim. 2014. Physicochemical properties of starch from sago (Metroxylon sagu) palm grown in mineral soil at different growth stages. IOP Conference Series: Materials Science and Engineering, 62(1): 012026.
Wei, Y., S. A. Liao, A. L. Wang. 2016. The effect of different carbon sources on the nutritional composition, microbial community and structure of bioflocs. Aquaculture, 465: 88–93.
Yu, Y. B., J. H. Choi, J. H. Lee, A. H. Jo, J. W. Lee, H. J. Choi, J. C. Kang, K. M. Lee, J. H. Kim. 2024. The use, application and efficacy of biofloc technology (BFT) in shrimp aquaculture industry: A review. Environmental Technology Innovation, 33: 103345.
Zafar, M. A., M. M. Rana. 2022. Biofloc technology: an eco-friendly “green approach” to boost up aquaculture production. Aquaculture International, 30(1): 51–72.
Zokaeifar, H., J. L. Balcázar, C. R. Saad, M. S. Kamarudin, K. Sijam, A. Arshad, N. Nejat. 2012. Effects of Bacillus subtilis on the growth performance, digestive enzymes, immune gene expression and disease resistance of white shrimp, Litopenaeus vannamei. Fish Shellfish Immunology, 33(4): 683–689.
DOI: https://doi.org/10.13170/depik.14.1.41060
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Faculty of Marine and Fisheries
Universitas Syiah Kuala
Meureubo Street No. 1, Kopelma Darussalam
Banda Aceh, 23111, Indonesia
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