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Dawood, M. A., Shukry, M., Zayed, M. M., Omar, A. A., Zaineldin, A. I., & El Basuini, M. F.
(2019). Digestive enzymes, immunity and oxidative status of Nile tilapia (Oreochromis niloticus) reared
in intensive conditions. Slovenian Veterinary Research, 56(22), 99-108. https://doi.org/10.26873/SVR747-2019
Dawood, M. A. O., Eweedah, N. M., Moustafa, E. M., & Farahat, E. M. (2020). Probiotic effects of
Aspergillus oryzae on the oxidative status, heat shock protein, and immune related gene expression of
Nile tilapia (Oreochromis niloticus) under hypoxia challenge. Aquaculture, 520, 734669.
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de Oliveira, M. M., Ribeiro, T., Orlando, T. M., de Oliveira, D. G. S., Drumond, M. M., de Freitas,
R. T. F., & Rosa, P. V. (2014). Effects crude protein levels on female Nile tilapia (Oreochromis
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Dubois, M., Gilles, K., Hamilton, J., Roberts, P., & Smith, F. (1956). Phenol sulphuric acid method
for carbohydrate determination. Ann Chem, 28(3), 350-359.
Duy, N. T., & Van Khanh, L. (2018). Effect of molasses addition at different C: N ratios on growth
and survival rate of spotted scat (Scatophagus argus) fingerling in biofloc system. International Journal
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Ebeling, J. M., Timmons, M. B., & Bisogni, J. J. (2006). Engineering analysis of the stoichiometry of
photoautotrophic, autotrophic, and heterotrophic removal of ammonia–nitrogen in aquaculture systems.
Aquaculture, 257(1), 346-358. https://doi.org/10.1016/j.aquaculture.2006.03.019
Edwards, P. (2015). Aquaculture environment interactions: Past, present and likely future trends.
Aquaculture, 447, 2-14. https://doi.org/10.1016/j.aquaculture.2015.02.001
Ekasari, J., Rivandi, D. R., Firdausi, A. P., Surawidjaja, E. H., Zairin, M., Bossier, P., & De
Schryver, P. (2015). Biofloc technology positively affects Nile tilapia (Oreochromis niloticus) larvae
performance. Aquaculture, 441, 72-77.
https://doi.org/https://doi.org/10.1016/j.aquaculture.2015.02.019
138
Dauda, A. B. (2020). Biofloc technology: a review on the microbial interactions, operational parameters
and implications to disease and health management of cultured aquatic animals. Reviews in Aquaculture,
12(2), 1193-1210. https://doi.org/10.1111/raq.12379
Dawood, M. A., Shukry, M., Zayed, M. M., Omar, A. A., Zaineldin, A. I., & El Basuini, M. F.
(2019). Digestive enzymes, immunity and oxidative status of Nile tilapia (Oreochromis niloticus) reared
in intensive conditions. Slovenian Veterinary Research, 56(22), 99-108. https://doi.org/10.26873/SVR747-2019
Dawood, M. A. O., Eweedah, N. M., Moustafa, E. M., & Farahat, E. M. (2020). Probiotic effects of
Aspergillus oryzae on the oxidative status, heat shock protein, and immune related gene expression of
Nile tilapia (Oreochromis niloticus) under hypoxia challenge. Aquaculture, 520, 734669.
https://doi.org/10.1016/j.aquaculture.2019.734669
de Oliveira, M. M., Ribeiro, T., Orlando, T. M., de Oliveira, D. G. S., Drumond, M. M., de Freitas,
R. T. F., & Rosa, P. V. (2014). Effects crude protein levels on female Nile tilapia (Oreochromis
niloticus) reproductive performance parameters. Animal Reproduction Science, 150(1), 62-69.
https://doi.org/https://doi.org/10.1016/j.anireprosci.2014.08.006
Defoirdt, T., Sorgeloos, P., & Bossier, P. (2011). Alternatives to antibiotics for the control of bacterial
disease
in
aquaculture.
Current
Opinion
in
Microbiology,
14(3),
251-258.
https://doi.org/https://doi.org/10.1016/j.mib.2011.03.004
DeLong, D. P., Losordo, T., & Rakocy, J. (2009). Tank culture of tilapia. SRAC Publication. No.
282.
Deng, M., Dai, Z., Senbati, Y., Li, L., Song, K., & He, X. (2020). Aerobic denitrification microbial
community and function in zero-discharge recirculating aquaculture system using a single biofloc-based
suspended growth reactor: Influence of the carbon-to-nitrogen ratio. Frontiers in microbiology, 11,
1760.
Deng, Y., Kokou, F., Eding, E. H., & Verdegem, M. C. (2021). Impact of early-life rearing history on
gut microbiome succession and performance of Nile tilapia. Animal microbiome, 3(1), 1-17.
Dubois, M., Gilles, K., Hamilton, J., Roberts, P., & Smith, F. (1956). Phenol sulphuric acid method
for carbohydrate determination. Ann Chem, 28(3), 350-359.
Duy, N. T., & Van Khanh, L. (2018). Effect of molasses addition at different C: N ratios on growth
and survival rate of spotted scat (Scatophagus argus) fingerling in biofloc system. International Journal
of Scientific and Research Publications, 8(5), 452-459. https://doi.org/10.29322/IJSRP.8.5.2018.p7759
Ebeling, J. M., Timmons, M. B., & Bisogni, J. J. (2006). Engineering analysis of the stoichiometry of
photoautotrophic, autotrophic, and heterotrophic removal of ammonia–nitrogen in aquaculture systems.
Aquaculture, 257(1), 346-358. https://doi.org/10.1016/j.aquaculture.2006.03.019
Edwards, P. (2015). Aquaculture environment interactions: Past, present and likely future trends.
Aquaculture, 447, 2-14. https://doi.org/10.1016/j.aquaculture.2015.02.001
Ekasari, J., Rivandi, D. R., Firdausi, A. P., Surawidjaja, E. H., Zairin, M., Bossier, P., & De
Schryver, P. (2015). Biofloc technology positively affects Nile tilapia (Oreochromis niloticus) larvae
performance. Aquaculture, 441, 72-77.
https://doi.org/https://doi.org/10.1016/j.aquaculture.2015.02.019
