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1. 1. Farzanfar, A., 2006. The use of probiotics in shrimp aquaculture. FEMS Immunology & Medical Microbiology. 48(2): 149-158. doi: 10.1111/j.1574-695 X.2006.00116.x 2. 2. Yılmaz, S., Ergün, S. and Türk, N., 2012. Effects of cumin-supplemented diets on growth and disease (Streptococcus iniae) resistance of tilapia (Oreochromis mossambicus). The Israeli Journal of Aquaculture Bamidgeh. 64: 764-768. https://doi.org/10.46989/001c.20 626 3. 3. Guimarães, A.M., Guertler, C., do Vale Pereira, G., da Rosa Coelho, J., Costa Rezende, P., Nóbrega, R.O. and do Nascimento Vieira, F., 2021. Nannochloropsis spp. as Feed Additive for the Pacific White Shrimp: Effect on Midgut Microbiology, Thermal Shock Resistance and Immunology. Animals. 11(1): 150. doi: 10.3390/ani11010 150 4. 4. Iba, W.A., Rice, M.A. and Wikfors, G.H., 2014. Microalgae in eastern pacific white shrimp, Litopenaeus vannamei (Boone 1931) hatcheries: a review on roles and culture environments. Asian Fisheries Science. 27(3): 212-233. https://doi.org/10.33997/j.afs.2014.27.3.005 5. 5. Huang, C., Luo, Y., Zeng, G., Zhang, P., Peng, R., Jiang, X. and Jiang, M., 2022. Effect of adding microalgae to whiteleg shrimp culture on water quality, shrimp development and yield. Aquaculture Reports. 22: 100916. https://doi.org/10.1016/j.aqrep.2021.100916 6. 6. Nagappan, S., Das, P., AbdulQuadir, M., Thaher, M., Khan, S., Mahata, C., Al-Jabri, H., Vatland, A.K. and Kumar, G., 2021. Potential of microalgae as a sustainable feed ingredient for aquaculture. Journal of Biotechnology. 341: 1-20. doi: 10.1016/j.jbiotec.2021.09. 003 7. 7. Borovkov, A.B., Gudvilovich, I.N. and Avsiyan, A.L., 2020. Scale-up of Dunaliella salina cultivation: from strain selection to open ponds. Journal of Applied Phycology. 32(3): 1545-1558. doi: 10.1007/s10811-020-0 2104-5 8. 8. Amini khoei, A., Erfanifar, E., Ajdari, A. and Abir, S., 2021. Investigation of the effects of different salinities on the amount of valuable pigments of Cyanothece sp salt loving microalgae identified from tides behind Lipar dam (Chabahar) in laboratory conditions. Iranian Journal of Fisheries. 33(5): 121-133. doi: 10.22092/ISFJ.2021.12 5503 (In Persian) 9. 9. Erfanifar, E., Hosseini. S.A., Amini khoei, A., Pourmozaffar, S., Hedayati, A.A. and Ajdari, A., 2022. Effect of aqueous extract of Cyanothece sp. In the diet on growth indices, survival and feed conversion ratio of young western white leg shrimp L. vannamei. Journal of Aquatic Sciences. 10(17): 10-22. (Translated in Persian) 10. 10. Kaushik, B.D., 1987. Laboratory methods for blue–green algae, Associated Publixhing Company. doi:.org/10.22 092/BOTANY.2016.105984 11. 11. Tabarsa, M., Shin, I.S., Lee, J.H., Surayot, U., Park, W. and You, S., 2015. An immune-enhancing water-soluble α-glucan from Chlorella vulgaris and structural characteristics. Food science and biotechnology. 24(6): 1933-1941. doi: 10.1007/s10068-015-0255-0; Corpus ID: 88693773. 12. 12. Tabarsa, M., You, S., Dabaghian, E.H. and Surayot, U., 2018. Water-soluble polysaccharides from Ulva intestinalis: Molecular properties, structural elucidation and immunomodulatory activities. Journal of food and drug analysis. 26(2): 599-608. https://doi.org/10.1016/j. jfda. 017.07.016. 13. 13. Supamattaya, K., Kiriratnikom, S., Boonyaratpalin, M. and Borowitzka, L., 2005. Effect of a Dunaliella extract on growth performance, health condition, immune response and disease resistance in black tiger shrimp (Penaeus monodon). Aquaculture. 248: 207-216. doi: 10.1016/j.aquaculture.2005.04.014 14. 14. Adine, H. and Harcig, M., 2018. The effect of different levels of bioflak on water quality, growth performance and survival Vanami Shrimp Litopenaeus vannamei Larvae Post. Journal of Veterinary Research. 73(4): 15. 401-393. doi: 10.22059/jvr.2019.227254.2584 (In Persian) 16. 15. Kakoolaki, S., Sharifpour, I., Soltani, M., Ebrahimzadeh Mousavi, H., Mirzargar, S. and Rostami, M., 2010. Selected morphochemical features of hemocytes in farmed shrimp, Fennero penaeus indicus in Iran. Iranian Journal of Fisheries Sciences. 9(2): 219-232. dor: 20.1001.1.15622916.2010.9.2.3.7 17. 16. Da Silva, B.C., Do Nascimento Vieira, F., Mouriño, J.L.P., Ferreira, G.S. and Seiffert, W.Q., 2013. Salts of organic acids selection by multiple characteristics for marine shrimp nutrition. Aquaculture. 384: 104-110. http://dx.doi.org/10.1016/j.aquaculture.2012.12.017 18. 17. Liu, Z. and Lin, H., 1993. A species of microalgal with useful and developable prospects- Aphanothece halophytica. Sea-lake Salt & Chemical Industry. 22: 19. 16-19. 20. 18. Lowry, O.H., Rosenbrough, N.J., Farr, A.L. and Randall, R.J., 1951. Protein measurement with the Folin phenol reagent. The Journal of Biological Chemistry. 193(1): 265-275. 21. 19. Maliwat, G.C., Velasquez, S., Robil, J.L., Chan, M., Traifalgar, R.F., Tayamen, M. and Ragaza, J.A., 2016. Growth and immune response of giant freshwater prawn Macrobrachium rosenbergii (De Man) postlarvae fed diets containing Chlorella vulgaris (Beijerinck). Aquaculture Research. 48(4): 1666-1676. doi: 10.1111/are. 13004 22. 20. Amini khoei, A., Erfanifar, E., Dlokiav, A., Jadgal. S. and Sofimoghadam, A.R., 2019. Production of single celled microalgae biomass of Aphanothece halophytica isolated from the waters of the Oman Sea coast and its introduction for exploitation in the aquaculture industry. Proceedings of the First National Conference on Science, Marine Industries and Sustainable Development of Makran Coast, Chabahar, Chabahar University of Maritime and Marine Sciences. (In Persian) 23. 21. Su, C., Chi, Z. and Lu, W., 2007. Optimization of medium and cultivation conditions for enhanced exopolysaccharide yield by marine Cyanothece sp. 113. Chinese Journal of Oceanology and Limnology. 25(4): 411-417. doi: 10.1007/s00343-007-0411-3 24. 22. Schneegurt M.A., Arieli B., McKeehen J.D., Stephens S.D., Nielsen S.S., Saha P.R., Trumbo P.R. and Sherman L.A., 1995. Compositional and toxicological evaluation of the diazotrophic cyanobacterium, Cyanothece sp. Strain ATCC 51142. Aquaculture. 134 25. (3-4): 339-349. https://doi.org/10.1016/0044-8486(95)00 054-6 26. 23. Madhumathi, M. and Rengasamy, R., 2011. Antioxidant status of Penaeus monodon fed with Dunaliella salina supplemented diet and resistance against WSSV. International journal of engineering science and technology. 3(10): 7249-7259. Corpus ID: 56019214.
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