Effect of dietary mannan oligosaccharide inclusion on production parameters of Farfantepenaeus aztecus cultured in a biofloc system

Author:

Genc Ercument1ORCID,Kaya Dogukan2ORCID,Genc Munevver Ayce3ORCID,Keskin Emre1ORCID,Yavuzcan Hijran1ORCID,Guroy Derya4ORCID,Aktas Mevlut3ORCID

Affiliation:

1. Faculty of Agriculture, Department of Fisheries and Aquaculture Engineering Ankara University Ankara Turkey

2. Faculty of Agriculture, Department of Animal Science Tokat Gaziosmanpasa University Tokat Turkey

3. Marine Science and Technology Faculty, Department of Aquaculture Iskenderun Technical University Iskenderun Turkey

4. Department of Aquaculture Yalova University, Armutlu Vocational College Yalova Turkey

Abstract

AbstractThe effects of dietary mannan oligosaccharide (MOS) supplementation in a biofloc system on growth performance, whole‐body proximate composition, whole‐body fatty acids, nonspecific immune parameters, antioxidant enzyme activities, digestive enzyme activity, and gut microbiota of brown shrimp, Farfantepenaeus aztecus, were investigated. Shrimp were fed five diets containing different levels of MOS doses (MOS0: basal diet, MOS1: 0.1%, MOS2: 0.2%, MOS3: 0.3%, and MOS4: 0.4%) during the 90‐day trial. The results indicated that all MOS‐supplemented shrimp showed significantly higher growth rates and better feed utilization than shrimp fed the control diet. Experimental diets had varying effects on the nonspecific immune parameters and antioxidant enzyme activities, indicating that MOS supplementation resulted in significant differences in the parameters except for respiratory burst activity. Significantly higher protease activity was observed in shrimp fed MOS1 and MOS2 diets compared with MOS0, MOS3, and MOS4 diets. Shrimps fed MOS2 and MOS3 diets had the highest lipase and amylase activities among all groups. Proteobacteria were the most abundant phylum in all groups and were higher at increasing MOS doses. In conclusion, these results suggest that supplementing the diet of brown shrimp in the biofloc system with 3 g kg−1 of MOS may improve production parameters.

Funder

Türkiye Bilimsel ve Teknolojik Araştırma Kurumu

Publisher

Wiley

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