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Aquafeed additive quality and quantity remain pivotal factors that constrain the sustainability and progress of aquaculture feed development. This study investigates the impact of incorporating the benthic diatom Amphora coffeaeformis into the diet of Nile tilapia (Oreochromis niloticus) broodstock, on the blood biochemistry, steroid hormone (SH) levels and seed production efficiency. Broodstock females displaying mature ovary indications were initially combined with males at a ratio of three females to one male. A total of 384 adult Nile tilapia (288 females and 96 males) were used, with 32 fish (24 females and eight males) assigned to each of 12 concrete tanks (8 m³; 2 m × 4 m × 1 m), with three replicate tanks for each dietary treatment, throughout a 14-day spawning cycle until egg harvest. Fish were fed one of four different dietary treatments: AM (control diet), and AM, AM and AM enriched with the diatom A. coffeaeformis at levels of 20, 40 and 60 g/kg of diet respectively. At the trial's conclusion, total protein, albumin, triglyceride and creatinine), SHs (follicle-stimulating hormone, luteinizing hormone, free testosterone, total testosterone, progesterone and prolactin) and seeds production efficiency of Nile tilapia improved significantly (p < 0.05) in alignment with the increment of A. coffeaeformis supplementation. The findings propose that including A. coffeaeformis at levels ranging from 4% to 6% could be effectively employed as a feed additive during the Nile tilapia broodstock's spawning season.
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http://dx.doi.org/10.1111/jpn.14004 | DOI Listing |
Aquac Nutr
August 2025
Guangdong Provincial Key Laboratories of Marine Biotechnology, Shantou University, Shantou 515063, China.
In mammals, cholesterol accumulation in tissues often results in health damage, such as oxidative stress. In contrast, the adverse effects of cholesterol accumulation on the physiological health of fish remain largely unexplored. The present study investigated the impacts of cholesterol accumulation on oxidative stress and the potential mechanisms involved in Nile tilapia ().
View Article and Find Full Text PDFJ Food Prot
September 2025
Faculty of Veterinary Medicine, Hawassa University, Hawassa Ethiopia, P.O.Box. 05.
Escherichia coli O157:H7 is a significant foodborne pathogen with global public health implications. This study, conducted from December 2022 to July 2023 in Hawassa and Yirgalem, Sidama Region, Ethiopia, assessed the prevalence, molecular identification, and antimicrobial resistance of E. coli O157:H7 in animal-derived foods.
View Article and Find Full Text PDFBMC Microbiol
September 2025
Fish Diseases Department, Agriculture Research Center ARC, Animal Health Research Institute AHRI, Kafrelsheikh, 12619, Egypt.
The production of striped catfish (Pangasianodon hypothalamus) has increased worldwide; recently, it was farmed with Nile tilapia in polyculture farms. Polyculture systems and water temperature (25℃ and 33℃) could affect Edwardsiella tarda infection, antibiotic efficacy, and residues. Moribund fishes were collected from three Farms 1-3: Farm 1 (monoculture, Nile tilapia), Farm 2 (monoculture, striped catfish), and Farm 3 (polyculture).
View Article and Find Full Text PDFJ Appl Toxicol
September 2025
Grupo de Pesquisa em Toxicologia Celular, Departamento de Biologia Celular, Universidade Federal do Paraná, Curitiba, PR, Brazil.
Many human activities contribute to the pollution of aquatic ecosystems, primarily through agricultural, industrial, mining, and domestic discharges into water bodies. Fish, being highly sensitive to environmental changes, serve as valuable models for monitoring the health of these ecosystems. Metallothionein (Mt), a biomarker for metal contamination, shows variable expression depending on the metal involved.
View Article and Find Full Text PDFBMC Genomics
September 2025
School of Life and Health Sciences, Hainan Province Key Laboratory of One Health, Collaborative Innovation Center of Life and Health, Hainan University, Haikou, 570228, Hainan, China.
Nile tilapia (Oreochromis niloticus) is a vital aquaculture species worldwide, prized for its rapid growth and high productivity. However, the increasing prevalence of Aeromonas veronii infections has led to significant economic losses in the Nile tilapia industry. To elucidate the molecular mechanisms underlying the host immune response, we performed transcriptome sequencing of Nile tilapia spleen tissues at 3, 7, and 10 days post-infection.
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