Significance of dietary quinoa husk (Chenopodium quinoa) in gene regulation for stress mitigation in fish.
Autor: | Kumar N; ICAR-National Institute of Abiotic Stress Management, Malegaon, Baramati, Pune, 413115, India. neeraj_journal@live.in., Thorat ST; ICAR-National Institute of Abiotic Stress Management, Malegaon, Baramati, Pune, 413115, India., Pradhan A; ICAR-National Institute of Abiotic Stress Management, Malegaon, Baramati, Pune, 413115, India., Rane J; ICAR-National Institute of Abiotic Stress Management, Malegaon, Baramati, Pune, 413115, India., Reddy KS; ICAR-National Institute of Abiotic Stress Management, Malegaon, Baramati, Pune, 413115, India. |
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Jazyk: | angličtina |
Zdroj: | Scientific reports [Sci Rep] 2024 Apr 01; Vol. 14 (1), pp. 7647. Date of Electronic Publication: 2024 Apr 01. |
DOI: | 10.1038/s41598-024-58028-4 |
Abstrakt: | The persistent challenges posed by pollution and climate change are significant factors disrupting ecosystems, particularly aquatic environments. Numerous contaminants found in aquatic systems, such as ammonia and metal toxicity, play a crucial role in adversely affecting aquaculture production. Against this backdrop, fish feed was developed using quinoa husk (the byproduct of quinoa) as a substitute for fish meal. Six isonitrogenous diets (30%) and isocaloric diets were formulated by replacing fish meal with quinoa husk at varying percentages: 0% quinoa (control), 15, 20, 25, 30 and 35%. An experiment was conducted to explore the potential of quinoa husk in replacing fish meal and assess its ability to mitigate ammonia and arsenic toxicity as well as high-temperature stress in Pangasianodon hypophthalmus. The formulated feed was also examined for gene regulation related to antioxidative status, immunity, stress proteins, growth regulation, and stress markers. The gene regulation of sod, cat, and gpx in the liver was notably upregulated under concurrent exposure to ammonia, arsenic, and high-temperature (NH (© 2024. The Author(s).) |
Databáze: | MEDLINE |
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