期刊
JOURNAL OF THE WORLD AQUACULTURE SOCIETY
卷 -, 期 -, 页码 -出版社
WILEY
DOI: 10.1111/jwas.13041
关键词
dietary protein; digestive enzyme activity; immune response; microbiota; shrimp culture
类别
This study conducted a 90-day feeding trial using biofloc technology to explore the effects of different dietary protein levels on the growth performance, digestive enzyme activity, immune response, body composition, fatty acid composition, and intestinal microbiota of Farfantepenaeus aztecus. The results showed that a protein level of 35% in the diet resulted in the optimal growth performance of F. aztecus. The study also highlighted the significant impact of dietary protein levels on various physiological and microbial aspects of F. aztecus.
In this study, a biofloc technology (BFT) based 90-day feeding trial was performed to estimate the effects of four different dietary protein levels (290, 320, 350 and 380 g protein kg(-1) diet; 29P, 32P, 35P, and 38P, respectively) on growth performance, digestive enzyme activity, non-specific immune response, whole-body proximate and fatty acid composition and intestinal microbiota of Farfantepenaeus aztecus. Final weight, weight gain, and specific growth rate improved with protein levels up to 35P per kg of diet, below which decreased significantly. Significant differences were observed in total hemocyte count, acid phosphatase, respiratory burst, glutathione, alkaline phosphatase, and total antioxidant capacity indices of shrimp fed different dietary protein levels. Protease, lipase, and amylase activities of shrimp were also affected by dietary protein levels. Proteobacteria was the most abundant bacteria among the groups. Overall, this study revealed that using 35% dietary protein is optimal in F. aztecus culture under environmentally friendly BFT conditions. Furthermore, these results provide a theoretical basis for future research on the evaluation of functional ingredients in diet for more economical production of F. aztecus at optimal protein levels.
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