Aquaculture

Outputs related to Aquaculture

Showing 101 to 200 of 3137

Article

Elahwl EA, Assar DH, Al-Hawary II, Salah AS, Ragab AE, Elsheshtawy A, Assas M, Abo-Al-Ela HG, Fouad AM & Elbialy ZI (2025) Alleviation of glyphosate-induced toxicity by Horseradish tree (Moringa oleifera) Leaf extract and phytase in Nile Tilapia (Oreochromis niloticus) highlighting the antioxidant, anti-inflammatory, and anti-apoptotic activities. Veterinary Research Communications, 49, Art. No.: 135. https://doi.org/10.1007/s11259-025-10672-5


Article

Awulu OA, Jenkins A, Balogun BA, Chukwu EE, Fasina FO, Egwuenu A, Oduyebo OO, Bamidele TA, Cadmus S, Aworh MK, Adekola AA, Desbois AP, Chah KF & Brunton LA (2025) Prioritising intervention areas for antimicrobial resistance in Nigeria's human and animal health sectors using a mixed-methods approach. One Health, 20, Art. No.: 101082. https://doi.org/10.1016/j.onehlt.2025.101082


Article

Wischhusen P, Madaro A, Hvas M, Broughton R, Han L, Quiroz KF, Chaiyasut K, Gupta A, Olsen RE, Fontagné-Dicharry S, Napier JA & Betancor MB (2025) Growth performance, swimming capacity, and fillet quality in rainbow trout fed a transgene-derived omega-3 and carotenoid-enriched oil. Aquaculture, 604, Art. No.: 742453. https://doi.org/10.1016/j.aquaculture.2025.742453


Article

Chivite-Alcalde M, Betancor M, Clokie BGJ, Elsheshtawy A, McDonald E, Ramírez-Rodríguez C, Pipan M, MacKenzie SA & Planellas SR (2025) Changes in behaviour and serotonergic system of Atlantic salmon (Salmo salar) fry related to different levels of black soldier fly larvae meal inclusion in the diet: Exploring the use of nutritional enrichment for its use as positive welfare in aquaculture.. Applied Animal Behaviour Science, p. 106631. https://doi.org/10.1016/j.applanim.2025.106631


Article

Burke M, Nikolic D, Fabry P, Rishi H, Telfer T & Rey Planellas S (2025) Precision farming in aquaculture: non-invasive monitoring of Atlantic salmon (Salmo salar) behaviour in response to environmental conditions in commercial sea cages for health and welfare assessment [PFF in aquaculture]. Frontiers in Robotics and AI, 12. https://doi.org/10.3389/frobt.2025.1574161


Article

Carvalho M, Montero D, Betancor M, Kaur K, Serradell A, Izquierdo M, Gines R, Claeyssens V & Torrecillas S (2025) Benefits of dietary krill meal inclusion towards better utilization of nutrients, and response to oxidative stress in gilthead seabream (Sparus aurata) juveniles. Aquaculture, 598, Art. No.: 741957. https://doi.org/10.1016/j.aquaculture.2024.741957


Article

Vu IV, Boudry P, Vengatesen T, Gheyas AA, Khanh TD, Nguyen TM, Htoo H, Kim HW, Kundu S, Minh TTN, Trung DTT, Nguyen TTA, Thu LT, O’Connor W & Luu GTH (2025) Genetic parameters for whole weight and survival rate of the Portuguese oyster, Crassostrea angulata at different harvest stages after six generations of selection. Aquaculture International, 33, Art. No.: 238. https://doi.org/10.1007/s10499-025-01925-w


Article

Ajmi N, Duman M, Coskun B, Esen C, Sonmez O, Tasci G, Coskuner-Weber O, Ay H, Yoyen-Ermis D, Yibar A, Desbois AP & Saticioglu IB (2025) Unraveling Genomic and Pathogenic Features of Aeromonas ichthyocola sp. nov., Aeromonas mytilicola sp. nov., and Aeromonas mytilicola subsp. aquatica subsp. nov.. Animals, 15 (7), Art. No.: 948. https://doi.org/10.3390/ani15070948


Article

Rimoldi S, Quiroz KF, Kalemi V, McMillan S, Stubhaug I, Martinez-Rubio L, Betancor MB & Terova G (2025) Interactions between nutritional programming, genotype, and gut microbiota in Atlantic salmon: Long-term effects on gut microbiota, fish growth and feed efficiency. Aquaculture, 596 (Part 1), p. 741813. https://doi.org/10.1016/j.aquaculture.2024.741813


Article

Assar DH, Salah AS, Rashwan AG, Al-Hawary II, Hendam BM, Elsheshtawy A, Al Ali A, Al Shmrany H & Elbialy ZI (2025) Dietary l-carnitine supplementation recovers the hepatic damage induced by high-fat diet in Nile tilapia (Oreochromis niloticus L.) via activation of Nrf2/Keap pathway and inhibition of pro-inflammatory cytokine. Fish Physiology and Biochemistry, 51, Art. No.: 40. https://doi.org/10.1007/s10695-024-01430-6


Article

Glencross BD, Berry A, Clokie B, Hevroy E, Huyben D, Martinez-Rubio L, Mathew CA, Munoz P, MacKenzie S & Wilson RW (2024) Isolation of intake mediated effects demonstrate that the phenomic benefits of dietary omega-3 are nominal to Atlantic salmon when reared in a challenging (hypoxic) environment. Clokie B (Project Member) Aquaculture, 581, p. 740461. https://doi.org/10.1016/j.aquaculture.2023.740461


Article

Li S, Ang SY, Hunter AM, Erdem S, Bostock J, Da CT, Nguyen NT, Moss A, Hope W, Howie C, Newton R, Casteleiro MA & Little D (2024) Building towards One Health: A Transdisciplinary Autoethnographic Approach to Understanding Perceptions of Sustainable Aquatic Foods in Vietnam. Sustainability, 16 (24), pp. 1-23, Art. No.: 10865. https://www.mdpi.com/2071-1050/16/24/10865; https://doi.org/10.3390/su162410865


Article

Vu S, Kumar M, Rastas P, Boudry P, Gheyas A, Bean T, Nguyen M, Tran K, Geist J, Nguyen H, O’Connor W, Tran H, Le T, Cao G, Nguyen T & Vu I (2024) High-density linkage map and single nucleotide polymorphism association with whole weight, meat yield, and shell shape in the Portuguese oyster, Crassostrea angulate. Aquaculture International, 32, p. 10109–10122. https://doi.org/10.1007/s10499-024-01652-8


Article

Diack G, Bird T, Akenhead S, Bayer J, Brophy D, Bull C, de Eyto E, Johnson B, Jones M, Knight A, Nevoux M, van der Stap T & Walker A (2024) Salmon Data Mobilization. North Pacific Anadromous Fish Commission Bulletin, (7), pp. 61-76. https://doi.org/10.23849/npafcb7/x3rlpo23a


Article

Midtbø HMD, Borchel A, Morton HC, Paley R, Monaghan S, Haugland GT & Øvergård A (2024) Cell death induced by Lepeophtheirus salmonis labial gland protein 3 in salmonid fish leukocytes: A mechanism for disabling host immune responses [Sea lice labial gland 3 leukocyte killing]. Fish & Shellfish Immunology, 154, Art. No.: 109992. https://doi.org/10.1016/j.fsi.2024.109992


Article

Cai W, Zhong L, Parrish K, Kumar S, Eslamloo K, Fajei E, Whyte SK, Purcell SL, Jahangiri L, Li R, Solares AC, Taylor RG, Balder R, Rise ML & Fast MD (2024) Synergies of co-infecting pathogens, sea lice (Lepeophetheirus salmonis) and Moritella viscosa, are impacted by exposure order, and host response to initial infection. Aquaculture, 591, Art. No.: 741115. https://doi.org/10.1016/j.aquaculture.2024.741115


Article

Xue X, Eslamloo K, Caballero-Solares A, Katan T, Umasuthan N, Taylor RG, Fast MD, Andreassen R & Rise ML (2024) Characterization of the impact of dietary immunostimulant CpG on the expression of mRNA biomarkers involved in the immune responses in Atlantic salmon (Salmo salar). Fish & Shellfish Immunology, 153, Art. No.: 109840. https://doi.org/10.1016/j.fsi.2024.109840


Article

Sajid Z, Gamperl AK, Parrish CC, Colombo SM, Santander J, Mather C, Neis B, Holmen IM, Filgueira R, McKenzie CH, Cavalli LS, Jeebhay M, Gao W, López Gómez MA & Caballero‐Solares A (2024) An aquaculture risk model to understand the causes and consequences of Atlantic Salmon mass mortality events: A review. Reviews in Aquaculture, 16 (4), pp. 1674-1695. https://doi.org/10.1111/raq.12917


Article

Emam M, Kumar S, Eslamloo K, Caballero-Solares A, Hall JR, Xue X, Paradis H, Gendron RL, Santander J & Rise ML (2024) Transcriptomic response of lumpfish (Cyclopterus lumpus) head kidney to viral mimic, with a focus on the interferon regulatory factor family. Frontiers in Immunology, 15. https://doi.org/10.3389/fimmu.2024.1439465


Article

Orr JA, Macaulay SJ, Mordente A, Burgess B, Albini D, Hunn JG, Restrepo‐Sulez K, Wilson R, Schechner A, Robertson AM, Lee B, Stuparyk BR, Singh D, O'Loughlin I & Juvigny‐Khenafou NPD (2024) Studying interactions among anthropogenic stressors in freshwater ecosystems: A systematic review of 2396 multiple‐stressor experiments. Ecology Letters, 27 (6), Art. No.: e14463. https://doi.org/10.1111/ele.14463