References
- Agarwal P., Kayala P., Chandrasekaran N., Mukherjee A., Shah S., Thomas J. (2021). Antioxidant and antibacterial activity of Gelidium pusillum (Stackhouse) against Aeromonas caviae and its applications in aquaculture. Aquac. Int., 29: 845-858.
- Al Asgah N.A., Younis E.S.M., Abdel Warith A.W.A., Shamlol F.S. (2016). Evaluation of red seaweed Gracilaria arcuata as dietary ingredient in African catfish, Clarias gariepinus. Saudi J. Biol. Sci., 23: 205-210.
- Allameh S., Yusoff F., Ringø E., Daud H., Saad C., Ideris A. (2016). Effects of dietary monoand multiprobiotic strains on growth performance, gut bacteria and body composition of Javanese carp (Puntius gonionotus, B leeker 1850). Aquac. Nutr., 22: 367-373.
- An B.N.T., Anh N.T.N. (2020). Co-culture of Nile tilapia (Oreochromis niloticus) and red seaweed (Gracilaria tenuistipitata) under different feeding rates: effects on water quality, fish growth and feed efficiency. J. Appl. Phycol., 32: 2031-2040.
- Anaya-Rosas R.E., Rivas-Vega M.E., Miranda-Baeza A., Piña-Valdez P., Nieves-Soto M. (2019). Effects of a co-culture of marine algae and shrimp (Litopenaeus vannamei) on the growth, survival and immune response of shrimp infected with Vibrio parahaemolyticus and white spot virus (WSSV). Fish Shellfish Immunol., 87: 136-143.
- Anh N.T.N., An B.N.T., Lan L.M., Hai T.N. (2019 a). Integrating different densities of white leg shrimp Litopenaeus vannamei and red seaweed Gracilaria tenuistipitata in the nursery phase: effects on water quality and shrimp performance. J. Appl. Phycol., 31: 3223-3234.
- Anh N.T.N., Huu N.T., Toi H.T., Kha N.M. (2019 b). Water quality, growth and feed efficiency of white leg shrimp (Litopenaeus vannamei) co-cultured with red seaweed (Gracilaria tenuistipitata) under partial reduction of feeding rates. Oceanogr. Fish. Open Access J., 11: 555813.
- Anh N.T.N., Vinh N.H., An B.N.T., Lan L.M., Hai T.N. (2020). Polyculture culture of black tiger shrimp Penaeus monodon and red seaweed Gracilaria tenuistipitata under different densities: Effects on water quality, post-larvae performance and their resistance against Vibrio parahaemolyticus. J. Appl. Phycol., 32: 4333-4345.
- Araújo M., Rema P., Sousa-Pinto I., Cunha L.M., Peixoto M.J., Pires M.A., Seixas F., Brotas V., Beltrán C., Valente L.M. (2016). Dietary inclusion of IMTA-cultivated Gracilaria vermiculophylla in rainbow trout (Oncorhynchus mykiss) diets: Effects on growth, intestinal morphology, tissue pigmentation, and immunological response. J. Appl. Phycol., 28: 679-689.
- Arizo M.A., Beroncal R.A., Chua W.A., Lim J.J., Rogando K.C., Maningas M.B. (2016). Immune response of Macrobrachium rosenbergii immersed in aqueous extract of Gracilaria edulis challenged with white spot syndrome virus. Aquac. Aquar. Conserv. Legis., 9: 215-226.
- Ataguba G.A., Kamble M.T., Salin K.R. (2017). Food industry by-products as protein replacement in aquaculture diets of tilapia and catfishs. In: Food processing by-products and their utilization, Anal A. (ed). John Wiley & Sons Ltd., Hoboken, NJ, USA, pp. 471-507.
- Azhar F., Mukhlis A., Lestari D.P., Marzuki M. (2023). Application of kappa-carrageenan as immunostimulant agent in non-specific defense system of vannamei shrimp. AACL Bioflux, 16: 616-624.
- Bacchetta C., Rossi A.S., Ale A., Cazenave J. (2020). Physiological effects of stocking density on the fish Piaractus mesopotamicus fed with red seaweed (Pyropia columbina) and β‐ carotene‐supplemented diets. Aquac. Res., 51: 1992-2003.
- Bakky M.A.H., Tran N.T., Zhang Y., Hu H., Lin H., Zhang M., Liang H., Zhang Y., Li S. (2023). Effects of dietary supplementation of Gracilaria lemaneiformis-derived sulfated polysaccharides on the growth, antioxidant capacity, and innate immunity of rabbitfish (Siganus canaliculatus). Fish Shellfish Immunol., 139: 108933.
- Bambaranda B.V.A.S.M., Medhe S.V., Kamble M.T. (2024). Seaweed as alternative preservatives for aquafeed in Asian aquaculture. In: Sustainable feed ingredients and additives for aquaculture farming, Gabriel N.N., Abasubong K.P., Erasmus V.N., Kamble M.T. (eds). Springer, Singapore, pp. 565-585.
- Batista S., Pereira R., Oliveira B., Baião L.F., Jessen F., Tulli F., Messina M., Silva J.L., Abreu H., Valente L.M. (2020). Exploring the potential of seaweed Gracilaria gracilis and microalga Nannochloropsis oceanica, single or blended, as natural dietary ingredients for European seabass Dicentrarchus labrax. J. Appl. Phycol., 32: 2041-2059.
- Cantelli L., Goncalves P., Guertler C., Kayser M., Pilotto M.R., Barracco M.A., Perazzolo L.M. (2019). Dietary supplementation with sulfated polysaccharides from Gracilaria birdiae promotes a delayed immunostimulation in marine shrimp challenged by the white spot syndrome virus. Aquac. Int., 27: 349-367.
- Castanho S., Califano G., Soares F., Costa R., Mata L., Pousão-Ferreira P., Ribeiro L. (2017). The effect of live feeds bathed with the red seaweed Asparagopsis armata on the survival, growth and physiology status of Sparus aurata larvae. Fish Physiol. Biochem., 43: 1043-1054.
- Chen Y.Y., Chen J.C., Lin Y.C., Putra D.F., Kitikiew S., Li C.C., Hsieh J.F., Liou C.H., Yeh S.T. (2014). Shrimp that have received carrageenan via immersion and diet exhibit immunocompetence in phagocytosis despite a post-plateau in immune parameters. Fish Shellfish Immunol., 36: 352-366.
- Chen Y.Y., Sim S.S., Chiew S.L., Yeh S.T., Liou C.H., Chen J.C. (2012). Dietary administration of a Gracilaria tenuistipitata extract produces protective immunity of white shrimp Litopenaeus vannamei in response to ammonia stress. Aquaculture, 370: 26-31.
- Cheng A.C., Chen Y.Y., Chen J.C. (2008). Dietary administration of sodium alginate and κ-carrageenan enhances the innate immune response of brown-marbled grouper Epinephelus fuscoguttatus and its resistance against Vibrio alginolyticus. Vet. Immunol. Immunopathol., 121: 206-215.
- Cheng A.C., Tu C.W., Chen Y.Y., Nan F.H., Chen J.C. (2007). The immunostimulatory effects of sodium alginate and iota-carrageenan on orange-spotted grouper Epinephelus coicoides and its resistance against Vibrio alginolyticus. Fish Shellfish Immunol., 22: 197-205.
- Chopin T., Tacon A.G. (2020). Importance of seaweeds and extractive species in global aquaculture production. Rev. Fish. Sci. Aquac., 29: 1-10.
- Cian R.E., Bacchetta C., Rossi A., Cazenave J., Drago S.R. (2019). Red seaweed Pyropia columbina as antioxidant supplement in feed for cultured juvenile Pacú (Piaractus mesopotamicus). J. Appl. Phycol., 31: 1455-1465.
- Cian R.E., Drago S.R., De Medina F.S., Martínez-Augustin O. (2015). Proteins and carbohydrates from red seaweeds: Evidence for beneficial effects on gut function and microbiota. Mar. Drugs, 13: 5358-5383.
- Čmiková N., Kowalczewski P.Ł., Kmiecik D., Tomczak A., Drożdżyńska A., Ślachciński M., Szala Ł., Matić S., Marković T., Popović S. (2024). Seaweed nutritional value and bioactive properties: Insights from Ascophyllum nodosum, Palmaria palmata, and Chondrus crispus. Life, 14: 1522.
- Da Silva R.L., Barbosa J.M. (2009). Seaweed meal as a protein source for the white shrimp Litopenaeus vannamei. J. Appl. Phycol., 21: 193-197.
- Dang V.T., Li Y., Speck P., Benkendorff K. (2011). Effects of micro and macroalgal diet supplementations on growth and immunity of greenlip abalone, Haliotis laevigata. Aquaculture, 320: 91-98.
- Das R.R., Sarkar S., Saranya C., Esakkiraj P., Aravind R., Saraswathy R., Rekha P., Muralidhar M., Panigrahi A. (2022). Co-culture of Indian white shrimp, Penaeus indicus and seaweed, Gracilaria tenuistipitata in amended biofloc and recirculating aquaculture system (RAS). Aquaculture, 548: 737432.
- Dashtiannasab A., Yeganeh V. (2017). The effect of ethanol extract of a macroalgae Laurencia snyderia on growth parameters and vibriosis resistance in shrimp Litopenaeus vannamei. Iran. J. Fish. Sci., 16: 210-221.
- Daunde V., Kamble M.T., Ponpornpisit A., Chavan B.R., Medhe S.V., & Pirarat N. (2025). Sustainable adaptation strategies for coastal aquaculture amidst climate change-induced temperature rise. Thai J. Vet. Med., 55: 197–199.
- Daunde V.Y., Chavan B.R., Kamble M.T., Medhe S., Pirarat N., Kumar A., Tayade S.H., Ponpornpisit A. (2024). Impact of higher temperature on mud crab aquaculture: A mini-review. Thai J. Vet. Med., 54: 57–58.
- Davies S., Brown M., Camilleri M. (1997). Preliminary assessment of the seaweed Porphyra purpurea in artificial diets for thick-lipped grey mullet (Chelon labrosus). Aquaculture, 152: 249-258.
- de Jesus Raposo M.F., De Morais A.M.B., De Morais R.M.S.C. (2015). Marine polysaccharides from algae with potential biomedical applications. Mar. Drugs, 13: 2967-3028.
- Díaz‐Rosales P., Felices C., Abdala R., Figueroa F.L., Gómez Pinchetti J.L., Moriñigo M.A., Balebona M.C. (2007). In vitro effect of the red alga Hydropuntia cornea (J. Agardh) on the respiratory burst activity of sole (Solea senegalensis, Kaup 1858) phagocytes. Aquac. Res., 38: 1411-1418.
- Dinesh S., Manasi K., Vinodhini S., Vidhya G., Hemalatha K., Sudhakaran R. (2014). Confirmation of anti-WSSV activity from red algae Hypnae spinella in freshwater crab Paratelphusa hydrodomous. Int. J. Chemtech Res., 6: 4022-4026.
- Doumeizel V., Aass K. (2020). Seaweed revolution: A manifesto for a sustainable future. London, UK, Lloyd’s Register Foundation, 16 pp.
- El-Beltagi H.S., Mohamed A.A., Mohamed H.I., Ramadan K.M., Barqawi A.A., Mansour A.T. (2022). Phytochemical and potential properties of seaweeds and their recent applications: A review. Mar. Drugs, 20: 342.
- FAO (2020). The state of world fisheries and aquaculture 2020. Sustainability in action. Rome, 224 pp.
- Farias W.R.L., Rebouças H.J., Torres V.M., Rodrigues J.A.G., Pontes G.D.C., Da Silva F.H.O., Sampaio A.H. (2004). Enhancement of growth in tilapia larvae (Oreochromis niloticus) by sulfated D-galactans extracted from the red marine alga Botryocladia occidentalis Rev. Cienc. Agron., 35 189 - 195.
- Fatima M.R., Dinesh S., Mekata T., Itami T., Sudhakaran R. (2016). Therapeutic efficiency of Portieria hornemannii (Rhodophyta) against Vibrio parahaemolyticus in experimentally infected Oreochromis mossambicus. Aquaculture, 450: 369-374.
- Ferreira M., Abdelhafiz Y., Abreu H., Silva J., Valente L.M., Kiron V. (2022). Gracilaria gracilis and Nannochloropsis oceanica, singly or in combination, in diets alter the intestinal microbiota of European seabass (Dicentrarchus labrax). Front. Mar. Sci., 9: 1001942.
- Fleurence J., Morançais M., Dumay J. (2018). Seaweed proteins. In: Proteins in food processing, Yada R.Y. (ed). Woodhead Publishing, Sawston, United Kingdom, pp. 245-262.
- Fourooghifard H., Matinfar A., Mortazavi M.S., Roohani Ghadikolaee K., Mirbakhsh M. (2017). Growth parameters of whiteleg shrimp Litopenaeus vannamei and red seaweed Gracilaria corticata in integrated culturing method under zero water exchange system. Aquac. Res., 48: 5235-5242.
- Freitas M.V., Pacheco D., Cotas J., Mouga T., Afonso C., Pereira L. (2021). Red seaweed pigments from a biotechnological perspective. Phycology, 2: 1-29.
- Fu Y.W., Hou W.Y., Yeh S.T., Li C.H., Chen J.C. (2007). The immunostimulatory effects of hot-water extract of Gelidium amansii via immersion, injection and dietary administrations on white shrimp Litopenaeus vannamei and its resistance against Vibrio alginolyticus. Fish Shellfish Immunol., 22: 673-685.
- Fujiki K., Shin D.H., Nakao M., Yano T. (1997a). Protective effect of κ-carrageenan against bacterial infections in carp Cyprinus carpio. J. Fac. Agric. Kyushu Univ., 42: 113-119.
- Fujiki K., Shin D.H., Nakao M., Yanot T. (1997b). Effects of κ-carrageenan on the non-specific defense system of carp Cyprinus carpio. Fish. Sci., 63: 934-938.
- Gabriel N.N., Abasubong K.P., Erasmus V.N., Kamble M.T. (2024b). Sustainable feed ingredients and additives for aquaculture farming. Singapore, Springer, 585 pp.
- Gabriel N.N., Abasubong K.P., Kamble M.T. (2024a). Garlic (Allium sativum) as a growth and health promoter feed supplement in aquaculture. In: Sustainable feed ingredients and additives for aquaculture farming, Gabriel N.N., Abasubong K.P., Erasmus V.N., Kamble M.T. (eds). Springer, Singapore, pp. 365-380.
- Ganeshamurthy R., Dhayanithi N.B., Kumar T., Kumaresan S. (2014). Evaluation of antibacterial activity and immunostimulant of red seaweed Chondrococcus hornemanni (Kuetzing, 1847) against marine ornamental fish pathogens. J. Coast. Life Med., 2: 64-69.
- Ghanadi A., Mehrgan M.S., Rajabi Islami H., Mousavi S.A. (2024). Exploring the potential of the marine red alga (Hypnea cornua) hydroalcoholic extract in beluga sturgeon (Huso huso) diet: Growth, immuno-antioxidant responses, and growth-related gene expression. J. Appl. Phycol., 36: 2979-2987
- Gonçalves A.T., Simões M., Costa C., Passos R., Baptista T. (2022). Modulatory effect of Gracilaria gracilis on European seabass gut microbiota community and its functionality. Sci. Rep., 12: 14836.
- Guerreiro I., Magalhães R., Coutinho F., Couto A., Sousa S., Delerue-Matos C., Domingues V.F., Oliva-Teles A., Peres H. (2019). Evaluation of the seaweeds Chondrus crispus and Ulva lactuca as functional ingredients in gilthead seabream (Sparus aurata). J. Appl. Phycol., 31: 2115-2124.
- Hafting J.T., Critchley A.T., Cornish M.L., Hubley S.A., Archibald A.F. (2012). On-land cultivation of functional seaweed products for human usage. J. Appl. Phycol., 24: 385-392.
- Hamed I., Özogul F., Özogul Y., Regenstein J.M. (2015). Marine bioactive compounds and their health benefits: a review. Compr. Rev. Food Sci. Food Saf., 14: 446-465.
- Hashim R., Saat M.A.M. (1992). The utilization of seaweed meals as binding agents in pelleted feeds for snakehead (Channa striatus) fry and their effects on growth. Aquaculture, 108: 299-308.
- Hejna M., Dell’anno M., Liu Y., Rossi L., Aksmann A., Pogorzelski G., Jóźwik A. (2024). Assessment of the antibacterial and antioxidant activities of seaweed-derived extracts. Sci. Rep., 14: 21044.
- Hindu S.V., Thanigaivel S., Vijayakumar S., Chandrasekaran N., Mukherjee A., Thomas J. (2018). Effect of microencapsulated probiotic Bacillus vireti 01-polysaccharide extract of Gracilaria folifera with alginate-chitosan on immunity, antioxidant activity and disease resistance of Macrobrachium rosenbergii against Aeromonas hydrophila infection. Fish Shellfish Immunol., 73: 112-120.
- Hoffman R., Dubinsky Z. (2010). Invasive and alien rhodophyta in the mediterranean and along the Israeli shores. In: Red algae in the genomic age, Seckbach J., Chapman D. (eds). Springer Science & Business Media, 2010, Berlin, Germany, pp. 45-60.
- Holdt S.L., Kraan S. (2011). Bioactive compounds in seaweed: functional food applications and legislation. J. Appl. Phycol., 23: 543-597.
- Hou W.Y., Chen J.C. (2005). The immunostimulatory effect of hot-water extract of Gracilaria tenuistipitata on the white shrimp Litopenaeus vannamei and its resistance against Vibrio alginolyticus. Fish Shellfish Immunol., 19: 127-138.
- Izzati M. (2011). The role of seaweeds Sargassum polycistum and Gracilaria verrucosa on growth performance and biomass production of tiger shrimp (Penaeous monodon Fabr). J. Coast. Dev., 14: 235-241.
- Jasmanindar Y., Sukenda S., Alimuddin A., Junior M.Z., Utomo N.B.P. (2018a). The chemical composition of Gracilaria verrucosa extract and its utilization on survival and growth Litopenaeus vannamei. Omni-Akuatika, 14: 1–9.
- Jasmanindar Y., Sukenda S., Zairin Jr M., Alimuddin A., Utomo N.B. (2018b). Dietary administration of Gracilaria verrucosa extract on Litopenaeus vannamei immune response, growth, and resistance to Vibrio harveyi. Aquac. Aquar. Conserv. Legis., 11: 1069-1080.
- Jumah Y.U., Tumbokon B.L., Serrano Jr A.E. (2020). Effects of dietary κ-carrageenan on growth and resistance to acute salinity stress in the black tiger shrimp Penaeus monodon post larvae. Isr. J. Aquac. - Bamidgeh, 72: 11.
- Kamble M.T., Chaiyapechara S., Salin K.R., Bunphimpapha P., Chavan B.R., Bhujel R.C., Medhe S.V., Kettawan A., Thiyajai P., Thompson K.D., Pirarat N. (2024a). Guava and star gooseberry leaf extracts improve growth performance, innate immunity, intestinal microbial community, and disease resistance in Nile tilapia (Oreochromis niloticus) against Aeromonas hydrophila. Aquac. Rep., 35: 101947.
- Kamble M.T., Gallardo W., Salin K.R., Pumpuang S., Chavan B.R., Bhujel R.C., Medhe S.V., Kettawan A., Thompson K.D., Pirarat N. (2024b). Effect of Moringa oleifera leaf extract on the growth performance, hematology, innate immunity, and disease resistance of Nile tilapia (Oreochromis niloticus) against Streptococcus agalactiae Biotype 2. Animals, 14: 953.
- Kamble M.T., Rudtanatip T., Soowannayan C., Nambunruang B., Medhe S.V., Wongprasert K. (2022). Depolymerized fractions of sulfated galactans extracted from Gracilaria fisheri and their antibacterial activity against Vibrio parahaemolyticus and Vibrio harveyi. Mar. Drugs, 20: 469.
- Kamble M.T., Salin K.R., Chavan B.R., Medhe S.V., Thompson K.D., Pirarat N. (2024c). Length-weight relationship and condition factor of Nile tilapia (Oreochromis niloticus) fed diets supplemented with guava and star gooseberry leaf extract. F1000Research, 13: 540.
- Kamble M.T., Soowannayan C., Chaicherd S., Medhe S.V., Rudtanatip T., Pissuwan D., Wongprasert K. (2024d). Bimetallic nanoparticles with sulfated galactan eliminate Vibrio parahaemolyticus in shrimp Penaeus vannamei. Fish Shellfish Immunol., 151: 109753.
- Kamble M.T., Yakupitiyage A., Salin K.R., Chavan B.R. (2018). Effect of Psidium guajava and Phyllanthus acidus leaf extract on immunostimulant response of Nile tilapia against Streptococcus agalactiae infection. Isr. J. Aquac. - Bamidgeh, 70: 1-9.
- Kamble M.T., Yostawonkul J., Medhe S.V., Chavan B.R., Kumar A., Palekar G.R., Daunde V.Y., Tayade S.H., Gabriel N.N., Ataguba G.A. (2024e). Innovative feed additives for sustainable aquaculture: phytobiotics encapsulated in organic nanoparticles. In: Sustainable feed ingredients and additives for aquaculture farming, Gabriel N., Abasubong K., Erasmus V., Kamble M. (eds). Springer, Singapore, pp. 501-520.
- Kanjana K., Radtanatip T., Asuvapongpatana S., Withyachumnarnkul B., Wongprasert K. (2011). Solvent extracts of the red seaweed Gracilaria fisheri prevent Vibrio harveyi infections in the black tiger shrimp Penaeus monodon. Fish Shellfish Immunol., 30: 389-396.
- Karnjana K., Nobsathian S., Soowannayan C., Zhao W., Tang Y.J., Wongprasert K. (2020). Purification and evaluation of N-benzyl cinnamamide from red seaweed Gracilaria fisheri as an inhibitor of Vibrio harveyi AI-2 quorum sensing. Mar. Drugs, 18: 80.
- Karnjana K., Soowannayan C., Wongprasert K. (2019). Ethanolic extract of red seaweed Gracilaria fisheri and furanone eradicate Vibrio harveyi and Vibrio parahaemolyticus biofilms and ameliorate the bacterial infection in shrimp. Fish Shellfish Immunol., 88: 91-101.
- Khanzadeh M., Hoseinifar S.H., Beikzadeh B. (2024). Investigating the effect of hydroalcoholic extract of red algae (Laurencia caspica) on growth performance, mucosal immunity, digestive enzyme activity and resistance to Streptococcus iniae and Aeromonas hydrophila in Nile tilapia (Oreochromis niloticus). Aquac. Rep., 35: 101984.
- Kiadaliri M., Firouzbakhsh F., Deldar H. (2020). Effects of feeding with red algae (Laurencia caspica) hydroalcoholic extract on antioxidant defense, immune responses, and immune gene expression of kidney in rainbow trout (Oncorhynchus mykiss) infected with Aeromonas hydrophila. Aquaculture, 526: 735361.
- Kumar V., Kumar S., Pandey P., Raman R., Prasad K.P., Roy S., Kumar A., Kumar K. (2014). Growth and hemato-immunological response to dietary i-carrageenan in Labeo rohita (Hamilton, 1822) juveniles. Isr. J. Aquac. - Bamidgeh, 66: 10.
- Lee P.T., Wen C.M., Nan F.H., Yeh H.Y., Lee M.C. (2020). Immunostimulatory effects of Sarcodia suiae water extracts on Nile tilapia Oreochromis niloticus and its resistance against Streptococcus agalactiae. Fish Shellfish Immunol., 103: 159-168.
- Li J., Sun X., Zheng F., Hao L. (2009). Screen and effect analysis of immunostimulants for sea cucumber, Apostichopus japonicus. Chin. J. Oceanol. Limnol., 27: 80-84.
- Li P., Gatlin Iii D.M. (2004). Dietary brewers yeast and the prebiotic Grobiotic™ AE influence growth performance, immune responses and resistance of hybrid striped bass (Morone chrysops× M. saxatilis) to Streptococcus iniae infection. Aquaculture, 231: 445-456.
- Li Y., Sun S., Pu X., Yang Y., Zhu F., Zhang S., Xu N. (2018). Evaluation of antimicrobial activities of seaweed resources from Zhejiang Coast, China. Sustainability, 10: 2158.
- Lim S.Y., Loo K.W., Wong W.L. (2019). Synergistic antimicrobial effect of a seaweed-probiotic blend against acute hepatopancreatic necrosis disease (AHPND)-causing Vibrio parahaemolyticus. Probiotics Antimicrob. Proteins, 12: 906–917.
- Lin Y.C., Yeh S.T., Li C.C., Chen L.L., Cheng A.C., Chen J.C. (2011). An immersion of Gracilaria tenuistipitata extract improves the immunity and survival of white shrimp Litopenaeus vannamei challenged with white spot syndrome virus. Fish Shellfish Immunol., 31: 1239-1246.
- Lozano I., Wacyk J.M., Carrasco J., Cortez-San Martín M.A. (2016). Red macroalgae Pyropia columbina and Gracilaria chilensis: Sustainable feed additive in the Salmo salar diet and the evaluation of potential antiviral activity against infectious salmon anemia virus. J. Appl. Phycol., 28: 1343-1351.
- Ly T.H., Van Khanh L., Anh N.T.N. (2024). Nursery rearing freshwater prawn, Macrobrachium rosenbergii, in biofloc system integrated with red seaweed, Gracilaria tenuistipitata, at different stocking densities under zero water exchange. Vietnam J. Sci. Technol. Eng., 66: 77-83.
- Magnoni L.J., Martos-Sitcha J.A., Queiroz A., Calduch-Giner J.A., Gonçalves J.F.M., Rocha C.M., Abreu H.T., Schrama J.W., Ozorio R.O., Pérez-Sánchez J. (2017). Dietary supplementation of heat-treated Gracilaria and Ulva seaweeds enhanced acute hypoxia tolerance in gilthead sea bream (Sparus aurata). Biol. Open, 6: 897-908.
- Manikandan D.B., Veeran S., Seenivasan S., Sridhar A., Arumugam M., Yangen Z., Ramasamy T. (2022). Exploration of marine red seaweed as a dietary fish meal replacement and its potentiality on growth, hematological, biochemical, and enzyme activity in freshwater fish Labeo rohita. Trop. Anim. Health Prod., 54: 395.
- Manilal A., Selvin J., George S. (2012). In vivo therapeutic potentiality of red seaweed, Asparagopsis (Bonnemaisoniales, Rhodophyta) in the treatment of Vibriosis in Penaeus monodon Fabricius. Saudi J. Biol. Sci., 19: 165-175.
- Manilal A., Selvin J., Sugathan S. (2013). Immuno-modulatory efficacy of Indian red algae, Asparagopsis taxiformis, in Penaeus monodon. J. Appl. Aquac., 25: 81-93.
- Mao Y., Yang H., Zhou Y., Ye N., Fang J. (2009). Potential of the seaweed Gracilaria lemaneiformis for integrated multi-trophic aquaculture with scallop Chlamys farreri in north China. J. Appl. Phycol., 21: 649.
- Mariot L.V., Bolívar N., Coelho J.D.R., Goncalves P., Colombo S.M., Do Nascimento F.V., Schleder D.D., Hayashi L. (2021). Diets supplemented with carrageenan increase the resistance of the Pacific white shrimp to WSSV without changing its growth performance parameters. Aquaculture, 545: 737172.
- Mata L., Wright E., Owens L., Paul N., De Nys R. (2013). Water-soluble natural products from seaweed have limited potential in controlling bacterial pathogens in fish aquaculture. J. Appl. Phycol., 25: 1963-1973.
- Mchugh D.J. 2003. A guide to the seaweed industry. Fisheries Technical Paper No. 441. Rome, FAO. 105 pp.
- Medhe S.V., Kamble M.T., Kumar A., Daunde V.Y., Kettawan A., Nirmal N., Pirarat N. (2025). Fish protein hydrolysate as a food and feed ingredient. In: Fish protein hydrolysates, Nirmal N., Santivarangkna C., Bekhit A.E.D.A., Barba F.J. (eds). Academic Press, Cambridge, Massachusetts, United States, pp. 249-276.
- Mendoza Rodriguez M.G., Pohlenz C., Gatlin Iii D.M. (2017). Supplementation of organic acids and algae extracts in the diet of red drum Sciaenops ocellatus: Immunological impacts. Aquac. Res., 48: 1778-1786.
- Muin H., Alias Z., Nor A.M., Mohd Taufek N. (2024). Co-cultured of red hybrid tilapia and Gracilaria changii (Gracilariaceae: Rhodophyta): Effects on water quality, growth performance and algal density. Phycologia, 63: 303-311.
- Muñoz I.L., Wacyk J., Perez C., Carrasco J., Cortez-San Martin M. (2019). Diets enriched in red seaweed (Pyropia columbina and Gracilaria chilensis) cryo concentrates modulate the immune-relevant gene encoding the Mx antiviral protein in salmon (Salmo salar) white blood cells. J. Appl. Phycol., 31: 1415-1424.
- Murthy S., Shrikala D., Patil P., Shankar R. (2017). Effect of dietary administration of carrageenan on growth, survival and feed utilization of common carp, Cyprinus Carpio. J. Aquac. Mar. Bio., 5: 00106.
- Nasaran D., Huxley V. (2013). Effect of chosen immunostimulant induced immunological changes in common carp (Cyprinus carpio). J. Theor. Exp. Biol., 10 67-73.
- Niu J., Xie J.J., Guo T.Y., Fang H.H., Zhang Y.M., Liao S.Y., Xie S.W., Liu Y.J., Tian L.X. (2019). Comparison and evaluation of four species of macro-algaes as dietary ingredients in Litopenaeus vannamei under normal rearing and WSSV challenge conditions: Effect on growth, immune response, and intestinal microbiota. Front. Physiol., 9: 1880.
- Nur A., Hossain M.F., Hasan M.N., Zannat S., Chakroborty K., Rafiquzzaman S. (2020). Effect of selected seaweed powder as a fish feed on growth and immune system of tilapia (Oreochromis niloticus). Int. J. Fish. Aquat. Stud., 8: 24-30.
- Ozório R.Á., Lopes R.G., Vieira F.D.N., Bolívar-Ramírez N.C., Oliveira C.Y.B.D., Barracco M.A.A.M., Owatari M.S., Fracalossi D.M., Derner R.B. (2024). Crude polysaccharide extract from the microalga Porphyridium cruentum improved nonspecific immune responses and resistance in Penaeus vannamei exposed to Vibrio alginolyticus. Aquac. J., 4: 104-113.
- Paolucci M., Fabbrocini A., Volpe M.G., Varricchio E., Coccia E. (2012). Development of biopolymers as binders for feed for farmed aquatic organisms. In: Aquaculture, Muchlisin Z. (ed). In Tech Open, pp. 3-34.
- Passos R., Correia A.P., Ferreira I., Pires P., Pires D., Gomes E., Do Carmo B., Santos P., Simões M., Afonso C. (2021a). Effect on health status and pathogen resistance of gilthead seabream (Sparus aurata) fed with diets supplemented with Gracilaria gracilis. Aquaculture, 531: 735888.
- Passos R., Correia A.P., Pires D., Pires P., Ferreira I., Simões M., Do Carmo B., Santos P., Pombo A., Afonso C. (2021b). Potential use of macroalgae Gracilaria gracilis in diets for European seabass (Dicentrarchus labrax): Health benefits from a sustainable source. Fish Shellfish Immunol., 119: 105-113.
- Peixoto M.J., Ferraz R., Magnoni L.J., Pereira R., Gonçalves J.F., Calduch-Giner J., Pérez-Sánchez J., Ozório R.O. (2019a). Protective effects of seaweed supplemented diet on antioxidant and immune responses in European seabass (Dicentrarchus labrax) subjected to bacterial infection. Sci. Rep., 9: 1-12.
- Peixoto M.J., Magnoni L., Gonçalves J.F., Twijnstra R.H., Kijjoa A., Pereira R., Palstra A.P., Ozório R.O. (2019b). Effects of dietary supplementation of Gracilaria sp. extracts on fillet quality, oxidative stress, and immune responses in European seabass (Dicentrarchus labrax). J. Appl. Phycol., 31: 761-770.
- Peixoto M.J., Salas-Leitón E., Pereira L.F., Queiroz A., Magalhães F., Pereira R., Abreu H., Reis P.A., Goncalves J.F.M., De Almeida Ozório R.O. (2016a). Role of dietary seaweed supplementation on growth performance, digestive capacity and immune and stress responsiveness in European seabass (Dicentrarchus labrax). Aquac. Rep., 3: 189-197.
- Peixoto M.J., Svendsen J.C., Malte H., Pereira L.F., Carvalho P., Pereira R., Gonçalves J.F., Ozório R.O. (2016b). Diets supplemented with seaweed affect metabolic rate, innate immune, and antioxidant responses, but not individual growth rate in European seabass (Dicentrarchus labrax). J. Appl. Phycol., 28: 2061-2071.
- Peñaflorida V.D., Golez N.V. (1996). Use of seaweed meals from Kappaphycus alvarezii and Gracilaria heteroclada as binders in diets for juvenile shrimp Penaeus monodon. Aquaculture, 143: 393-401.
- Pereira R., Valente L.M., Sousa-Pinto I., Rema P. (2012). Apparent nutrient digestibility of seaweeds by rainbow trout (Oncorhynchus mykiss) and Nile tilapia (Oreochromis niloticus). Algal Res., 1: 77-82.
- Radhika D., Mohaideen A. (2017). Study on immunostimulatory property of few seaweeds injected intraperitoneally. Int. J. Curr. Pharm. Res., 9: 135-139.
- Ragaza J.A., Koshio S., Mamauag R.E., Ishikawa M., Yokoyama S., Villamor S.S. (2015). Dietary supplemental effects of red seaweed Eucheuma denticulatum on growth performance, carcass composition and blood chemistry of juvenile Japanese flounder, Paralichthys olivaceus. Aquac. Res., 46: 647-657.
- Rasch M., Buch C., Austin B., Slierendrecht W.J., Ekmann K.S., Larsen J.L., Johansen C., Riedel K., Eberl L., Givskov M. (2004). An inhibitor of bacterial quorum sensing reduces mortalities caused by vibriosis in rainbow trout (Oncorhynchus mykiss, Walbaum). Syst. Appl. Microbiol., 27: 350-359.
- Rico R., Tejedor-Junco M., Tapia-Paniagua S., Alarcón F., Mancera J., López-Figueroa F., Balebona M., Abdala-Díaz R., Moriñigo M. (2016). Influence of the dietary inclusion of Gracilaria cornea and Ulva rigida on the biodiversity of the intestinal microbiota of Sparus aurata juveniles. Aquac. Int., 24: 965-984.
- Romero J., Feijoó C.G., Navarrete P. (2012). Antibiotics in aquaculture-use, abuse and alternatives. In: Health and environment in aquaculture, Carvalho E., David G., Silva R. (eds). BoD – Books on Demand, Norfolk, UK, pp. 159.
- Ross F.W., Boyd P.W., Filbee-Dexter K., Watanabe K., Ortega A., Krause-Jensen D., Lovelock C., Sondak C.F., Bach L.T., Duarte C.M. (2023). Potential role of seaweeds in climate change mitigation. Sci. Total Environ., 885: 163699.
- Rudi M., Sukenda S., Pasaribu W., Hidayatullah D. (2019). Seaweed extract of Gracilaria verrucosa as an antibacterial and treatment against Vibrio harveyi infection of Litopenaeus vannamei. J. Akuakultur Indones., 18: 11-20.
- Rudtanatip T., Asuvapongpatana S., Withyachumnarnkul B., Wongprasert K. (2014). Sulfated galactans isolated from the red seaweed Gracilaria fisheri target the envelope proteins of white spot syndrome virus and protect against viral infection in shrimp haemocytes. J. Gen. Virol., 95: 1126-1134.
- Rudtanatip T., Boonsri N., Asuvapongpatana S., Withyachumnarnkul B., Wongprasert K. (2017). A sulfated galactans supplemented diet enhances the expression of immune genes and protects against Vibrio parahaemolyticus infection in shrimp. Fish Shellfish Immunol., 65: 186-197.
- Rudtanatip T., Lynch S.A., Wongprasert K., Culloty S.C. (2018). Assessment of the effects of sulfated polysaccharides extracted from the red seaweed Irish moss Chondrus crispus on the immune-stimulant activity in mussels Mytilus spp. Fish Shellfish Immunol., 75: 284-290.
- Rudtanatip T., Pariwatthanakun C., Somintara S., Sakeaw W., Wongprasert K. (2022). Structural characterization, antioxidant activity, and protective effect against hydrogen peroxide-induced oxidative stress of chemically degraded Gracilaria fisheri sulfated galactans. Int. J. Biol. Macromol., 206: 51-63.
- Rudtanatip T., Withyachumnarnkul B., Wongprasert K. (2015). Sulfated galactans from Gracilaria fisheri bind to shrimp haemocyte membrane proteins and stimulate the expression of immune genes. Fish Shellfish Immunol., 47: 231-238.
- Safavi S.V., Kenari A.A., Tabarsa M., Esmaeili M. (2019). Effect of sulfated polysaccharides extracted from marine macroalgae (Ulva intestinalis and Gracilariopsis persica) on growth performance, fatty acid profile, and immune response of rainbow trout (Oncorhynchus mykiss). J. Appl. Phycol., 31: 4021-4035.
- Sakthivel M., Deivasigamani B., Rajasekar T., Kumaran S., Alagappan K. (2015). Immunostimulatory effects of polysaccharide compound from seaweed Kappaphycus alvarezii on Asian seabass (Lates calcarifer) and it’s resistance against Vibrio parahaemolyticus. J. Mar. Biol. Oceanogr., 4: 2.
- Samocha T., Fricker J., Ali A., Shpigel M., Neori A. (2015). Growth and nutrient uptake of the macroalga Gracilaria tikvahiae cultured with the shrimp Litopenaeus vannamei in an integrated multi-trophic aquaculture (IMTA) system. Aquaculture, 446: 263-271.
- Sangsayan R., Kamble M.T., Salin K.R. (2025). Drivers of carbon footprint variability in shrimp aquaculture: insights from aquamimicry shrimp farming. Aquac. Int., 33: 359.
- Sarkar S., Rekha P.N., Balasubramanian C.P., Ambasankar K. (2019). Bioremediation potential of the brackishwater macroalga Gracilaria tenuistipitata (Rhodophyta) co-cultured with Pacific white shrimp Litopenaeus vannamei (boone). J. Coast. Res., 86: 248-254.
- Sarkar S., Rekha P.N., Panigrahi A., Das R., Rajamanickam S., Balasubramanian C. (2021). Integrated brackishwater farming of red seaweed Agarophyton tenuistipitatum and Pacific white leg shrimp Litopenaeus vannamei (Boone) in biofloc system: A production and bioremediation way out. Aquac. Int., 29: 2145-2159.
- Schubel J.R., Thompson K. (2019). Farming the sea: The only way to meet humanity’s future food needs. GeoHealth, 3: 238-244.
- Seyedalhosseini S.H., Salati A.P., Mozanzadeh M.T., Parrish C.C., Shahriari A. (2023). Effects of dietary seaweeds (Gracilaria spp. and Sargassum spp.) on growth, feed utilization, and resistance to acute hypoxia stress in juvenile Asian seabass (Lates calcarifer). Aquac. Rep., 31: 101663.
- Seyedalhosseini S.H., Salati A.P., Torfi Mozanzadeh M., Parrish C.C., Shahriari A., Ahangarzadeh M. (2024a). Effect of dietary seaweed (Gracilaria pulvinata and Sargassum ilicifolium) on serum and mucosal immunity, some growth and immune‐ related genes expression, antioxidant status, and fatty acid profile in Asian Seabass (Lates calcarifer). Aquac. Nutr., 2024: 3683163.
- Seyedalhosseini S.H., Salati A.P., Torfi Mozanzadeh M., Parrish C.C., Shahriari A., Emam M. (2024b). Effect of dietary seaweed (Gracilaria pulvinata and Sargassum ilicifolium) on growth, immune and antioxidant responses, and muscle fatty acid composition of Sobaity seabream (Sparidentex hasta). Aquac. Int., 32: 9607-9629.
- Shapawi R., Safiin N.S.Z., Senoo S. (2015). Improving dietary red seaweed Kappaphycus alvarezii (Doty) Doty ex. P. Silva meal utilization in Asian seabass Lates calcarifer. J. Appl. Phycol., 27: 1681-1688.
- Silva-Brito F., Cardoso A., Machado M., Ramos-Pinto L., Hinzmann M., Abreu H., Costas B., Magnoni L. (2022). Dietary supplementation with Gracilaria gracilis by-products modulates the immune status and oxidative stress response of gilthead seabream (Sparus aurata) stimulated with Photobacterium damselae subsp. piscicida. Fish Shellfish Immunol., 126: 164-177.
- Silva-Brito F., Guardiola F.A., Cavalheri T., Pereira R., Abreu H., Kijjoa A., Magnoni L. (2020). Dietary supplementation with Gracilaria sp. by-products modulates stress response, antioxidant and immune systems of gilthead seabream (Sparus aurata) exposed to crowding. J. Appl. Phycol., 32: 4347-4359.
- Silva D., Valente L., Sousa-Pinto I., Pereira R., Pires M., Seixas F., Rema P. (2015). Evaluation of IMTA-produced seaweeds (Gracilaria, Porphyra, and Ulva) as dietary ingredients in Nile tilapia, Oreochromis niloticus L., juveniles. Effects on growth performance and gut histology. J. Appl. Phycol., 27: 1671-1680.
- Sirirustananun N., Chen J.-C., Lin Y.-C., Yeh S.-T., Liou C.-H., Chen L.-L., Sim S.S., Chiew S.L. (2011). Dietary administration of a Gracilaria tenuistipitata extract enhances the immune response and resistance against Vibrio alginolyticus and white spot syndrome virus in the white shrimp Litopenaeus vannamei. Fish Shellfish Immunol., 31: 848-855.
- Sivakumar K., Kannappan S., Dineshkumar M., Patil P.K. (2014). Antagonism of marine macro alga Kappaphycus alvarezii extract against luminescence disease causing Vibrio harveyi during Penaeus monodon larviculture. Afr. J. Microbiol. Res., 8: 458-469.
- Soler-Vila A., Coughlan S., Guiry M.D., Kraan S. (2009). The red alga Porphyra dioica as a fish-feed ingredient for rainbow trout (Oncorhynchus mykiss): Effects on growth, feed efficiency, and carcass composition. J. Appl. Phycol., 21: 617-624.
- Soowannayan C., Boonmee S., Puckcharoen S., Anatamsombat T., Yatip P., Ng W.-K., Thitamadee S., Tuchinda P., Munyoo B., Chabang N. (2019a). Ginger and its component shogaol inhibit Vibrio biofilm formation in vitro and orally protect shrimp against acute hepatopancreatic necrosis disease (AHPND). Aquaculture, 504: 139-147.
- Soowannayan C., Teja D.N.C., Yatip P., Mazumder F.Y., Krataitong K., Unagul P., Suetrong S., Preedanon S., Klaysuban A., Sakayaroj J. (2019b). Vibrio biofilm inhibitors screened from marine fungi protect shrimp against acute hepatopancreatic necrosis disease (AHPND). Aquaculture, 499: 1-8.
- Sotoudeh E., Jafari M. (2017). Effects of dietary supplementation with red seaweed, Gracilaria pygmaea, on growth, carcass composition and hematology of juvenile rainbow trout, Oncorhynchus mykiss. Aquac. Int., 25: 1857-1867.
- Stentiford G.D., Sritunyalucksana K., Flegel T.W., Williams B.A., Withyachumnarnkul B., Itsathitphaisarn O., Bass D. (2017). New paradigms to help solve the global aquaculture disease crisis. PLoS Pathog., 13: e1006160.
- Suantika G., Situmorang M.L., Aditiawati P., Khakim A., Suryanarayan S., Nori S.S., Kumar S., Putri F. (2017). Effect of red seaweed Kappaphycus alvarezii on growth, salinity stress tolerance and vibriosis resistance in shrimp Litopenaeus vannamei hatchery. J. Fish. Aquat. Sci., 12: 127-133.
- Tangestani N., Nafisi M., Morshedi V., Bagheri D., Sotoudeh E., Ghasemi A., Bojarski B. (2023). Effects of dietary macroalgae Gracilaria pygmaea on Asian sea bass (Lates calcarifer) juveniles. J. Agric. Sci. Technol., 25: 647-660.
- Tayade S., Chavan B., Kamble M., Medhe S., Kumar A., Daunde V., Pirarat N., Bodake P. (2024). Gracilaria species as bioremediator of intensive pond waste: A mini-review. Thai J. Vet. Med., 54 143–144.
- Teves J.F.C., Ragaza J.A. (2016). The quest for indigenous aquafeed ingredients: A review. Rev. Aquac., 8: 154-171.
- Thanigaivel S., Chandrasekaran N., Mukherjee A., Thomas J. (2019). Protective efficacy of microencapsulated seaweed extracts for preventing Aeromonas infections in Oreochromis mossambicus. Comp. Biochem. Physiol. C Toxicol. Pharmacol., 218: 36-45.
- Thépot V., Campbell A.H., Rimmer M.A., Jelocnik M., Johnston C., Evans B., Paul N.A. (2022). Dietary inclusion of the red seaweed Asparagopsis taxiformis boosts production, stimulates immune response and modulates gut microbiota in Atlantic salmon, Salmo salar. Aquaculture, 546: 737286.
- Thépot V., Campbell A.H., Rimmer M.A., Paul N.A. (2021). Effects of a seaweed feed inclusion on different life stages of the mottled rabbitfish Siganus fuscescens. Aquac. Res., 52: 6626-6640.
- Thirunavukkarasu R., Pandiyan P., Balaraman D., Jayaraman I., Subaramaniyan K., George E.G.J. (2015). Enhancements of non-specific immune response in Mugil cephlus by using seaweed extract protection against Vibrio alginolyticus (BRTR07). J. Coast. Life Med., 3: 776-86.
- Tian J., Wang Y., Huang J., Yan H., Duan Y., Wang J., Zhou C., Huang Z. (2024). Effects of dietary Gracilaria lichenoides and Bacillus amyloliquefaciens on growth performance, antioxidant capacity, and intestinal health of Penaeus monodon. Biology, 13: 252.
- Tien H.L., Cao B.T., Le H.V., Nguyen H.Y.N., Nguyen T.N.A. (2024). Polyculture of red seaweed (Gracilaria tenuistipitata) with different stocking densities of whiteleg shrimp (Litopenaeus vannamei): Effects on water quality and shrimp performance. Vietnam J. Sci. Technol. Eng., 67: 74-79.
- Tiwari B.K., Troy D.J. (2015). Seaweed sustainability-food and nonfood applications. In: Seaweed Sustainability, Tiwari B.K. (ed). Academic Press, Cambridge, Massachusetts, USA, pp. 472.
- Troell M., Rönnbäck P., Halling C., Kautsky N., Buschmann A. (1999). Ecological engineering in aquaculture: use of seaweeds for removing nutrients from intensive mariculture. J. Appl. Phycol., 11: 89-97.
- Trullàs C., Sewaka M., Rodkhum C., Chansue N., Boonanuntanasarn S., Kamble M.T., Pirarat N. (2022). Effects of jerusalem artichoke (Helianthus tuberosus) as a prebiotic supplement in the diet of red tilapia (Oreochromis spp.). Animals, 12: 2882.
- Vadher K.K., Vyas A., Parmar P. (2016). Effects of seaweed, Gracilaria sp. as feed additive in diets on growth and survival of Labeo rohita. J. Exp. Zool. India, 19: 771-778.
- Valente L., Gouveia A., Rema P., Matos J., Gomes E., Pinto I. (2006). Evaluation of three seaweeds Gracilaria bursa-pastoris, Ulva rigida and Gracilaria cornea as dietary ingredients in European sea bass (Dicentrarchus labrax) juveniles. Aquaculture, 252: 85-91.
- Van Doan H., Doolgindachbaporn S., Suksri A. (2014a). Effects of low molecular weight agar and Lactobacillus plantarum on growth performance, immunity, and disease resistance of basa fish (Pangasius bocourti, Sauvage 1880). Fish Shellfish Immunol., 41: 340-345.
- Van Doan H., Doolgindachbaporn S., Suksri A. (2014b). Effects of low molecular weight agar from seaweed on growth performance, immunity, and disease resistance of basa fish (Pangasius bocourti, Sauvage 1880). Pensee, 76: 47-57.
- Van Doan H., Prakash P., Hoseinifar S.H., Ringø E., El-Haroun E., Faggio C., Olsen R.E., Tran H.Q., Stejskal V., Abdel-Latif H.M. (2023). Marine-derived products as functional feed additives in aquaculture: A review. Aquac. Rep., 31: 101679.
- Vatsos I.N., Rebours C. (2015). Seaweed extracts as antimicrobial agents in aquaculture. J. Appl. Phycol., 27: 2017-2035.
- Vazirzadeh A., Marhamati A., Rabiee R., Faggio C. (2020). Immunomodulation, antioxidant enhancement and immune genes up-regulation in rainbow trout (Oncorhynchus mykiss) fed on seaweeds included diets. Fish Shellfish Immunol., 106: 852-858.
- Villamil L., Villamil S.I., Rozo G., Rojas J. (2019). Effect of dietary administration of kappa carrageenan extracted from Hypnea musciformis on innate immune response, growth, and survival of Nile tilapia (Oreochromis niloticus). Aquac. Int., 27: 53-62.
- Vinosha M., Palanisamy S., Anjali R., Li C., Yelithao K., Marudhupandi T., Tabarsa M., You S., Prabhu N.M. (2020). Sulfated galactan from Halymenia dilatata enhance the antioxidant properties and prevents Aeromonas hydrophila infection in tilapia fish: In vitro and in vivo study. Int. J. Biol. Macromol., 158: 569-579.
- Wells M.L., Potin P., Craigie J.S., Raven J.A., Merchant S.S., Helliwell K.E., Smith A.G., Camire M.E., Brawley S.H. (2017). Algae as nutritional and functional food sources: revisiting our understanding. J. Appl. Phycol., 29: 949-982.
- WHO (2006). Antimicrobial use in aquaculture and antimicrobial resistance. Report of a joint FAO/OIE/WHO expert consultation on antimicrobial use in aquaculture and antimicrobial resistance. Seoul, Republic of Korea.
- Won S., Hamidoghli A., Lee J.H., Bae J., Bai S.C. (2018). Effects of three different dietary binders on juvenile sea cucumber, Apostichopus japonicus. Turk J. Fish. Aquat. Sci., 18: 913-920.
- Wongprasert K., Rudtanatip T., Praiboon J. (2014). Immunostimulatory activity of sulfated galactans isolated from the red seaweed Gracilaria fisheri and development of resistance against white spot syndrome virus (WSSV) in shrimp. Fish Shellfish Immunol., 36: 52-60.
- World Bank (2023). Global Seaweed: New and Emerging Markets Report, 2023. Washington DC, USA.
- Xie J., Niu J. (2022). Evaluation of four macro-algae on growth performance, anti-oxidant capacity and non-specific immunity in golden pompano (Trachinotus ovatus). Aquaculture, 548: 737690.
- Xu S., Zhang L., Wu Q., Liu X., Wang S., You C., Li Y. (2011). Evaluation of dried seaweed Gracilaria lemaneiformis as an ingredient in diets for teleost fish Siganus canaliculatus. Aquac. Int., 19: 1007-1018.
- Yatip P., Teja D.N.C., Flegel T.W., Soowannayan C. (2018). Extract from the fermented soybean product Natto inhibits Vibrio biofilm formation and reduces shrimp mortality from Vibrio harveyi infection. Fish Shellfish Immunol., 72: 348-355.
- Yazdanpanah M., Sotoudeh E., Mansouri Taee H., Habibi H. (2021). Dietary administration of Sargassum angustifolium and Gracilaria pulvinata extracts affect antioxidant enzyme activities and Lactobacillus bacterial population in intestine of rainbow trout (Oncorhynchus mykiss) fry. Iran. J. Fish. Sci., 20: 926-944.
- Yazici M., Zavvar F., Hoseinifar S.H., Nedaei S., Doan H.V. (2024). Administration of red macroalgae (Galaxaura oblongata) in the diet of the rainbow Trout (Oncorhynchus mykiss) improved immunity and hepatic gene expression. Fishes, 9: 48.
- Yeh S.T., Chen J.C. (2008). Immunomodulation by carrageenans in the white shrimp Litopenaeus vannamei and its resistance against Vibrio alginolyticus. Aquaculture, 276: 22-28.
- Yeh S.T., Chen J.C. (2009). White shrimp Litopenaeus vannamei that received the hot-water extract of Gracilaria tenuistipitata showed earlier recovery in immunity after a Vibrio alginolyticus injection. Fish Shellfish Immunol., 26: 724-730.
- Yostawonkul J., Kamble M.T., Sakuna K., Madyod S., Sukkarun P., Medhe S.V., Rodkhum C., Pirarat N., Sewaka M. (2023). Effects of mangosteen (Garcinia mangostana) peel extract loaded in nanoemulsion on growth performance, immune response, and disease resistance of Nile tilapia (Oreochromis niloticus) against Aeromonas veronii infection. Animals, 13: 1798.
- Younis E.S.M., Al Quffail A.S., Al Asgah N.A., Abdel Warith A.W.A., Al Hafedh Y.S. (2018). Effect of dietary fish meal replacement by red algae, Gracilaria arcuata, on growth performance and body composition of Nile tilapia Oreochromis niloticus. Saudi J. Biol. Sci., 25: 198-203.
- Yu Y.Y., Chen W.D., Liu Y.J., Niu J., Chen M., Tian L.-X. (2016). Effect of different dietary levels of Gracilaria lemaneiformis dry power on growth performance, hematological parameters and intestinal structure of juvenile Pacific white shrimp (Litopenaeus vannamei). Aquaculture, 450: 356-362.
- Zahra A., Sukenda S., Wahjuningrum D. (2017). Extract of seaweed Gracilaria verrucosa as immunostimulant to controlling white spot disease in Pacific white shrimp Litopenaeus vannamei. J. Akuakultur Indones., 16: 174-183.
- Zhou Y., Yang H., Hu H., Liu Y., Mao Y., Zhou H., Xu X., Zhang F. (2006). Bioremediation potential of the macroalga Gracilaria lemaneiformis (Rhodophyta) integrated into fed fish culture in coastal waters of north China. Aquaculture, 252: 264-276.