Organic Ingredients as Alternative Protein Sources in the Diet of Juvenile Organic Seabass (Dicentrarchus labrax)

Author:

Tefal Eslam12ORCID,Jauralde Ignacio1ORCID,Martínez-Llorens Silvia1ORCID,Tomás-Vidal Ana1,Milián-Sorribes María Consolación1,Moyano Francisco Javier3ORCID,Peñaranda David S.1ORCID,Jover-Cerdá Miguel1

Affiliation:

1. Aquaculture and Biodiversity Research Group, Institute of Science and Animal Technology (ICTA), Universitat Politècnica de València, 46022 Valencia, Spain

2. Department of Animal and Poultry Production, Faculty of Agriculture, Damanhour University, Damanhour 22516, Egypt

3. Departamento de Biología y Geología, Facultad de Ciencias, Campus de Excelencia Internacional del Mar (CEI-MAR), Universidad de Almería, 04120 Almeria, Spain

Abstract

The use of organic ingredients as a source of protein in aquaculture diets has gained significant attention due to the growing demand for organic seafood products. This study aimed to evaluate the potential for the use of organic ingredients as protein sources in the diet of juvenile organic seabass (Dicentrarchus labrax). A total of 486 juvenile seabass with an average weight of 90 g were fed six diets containing varied organic proteins. The control group (CON) was fed a diet with conventional fishmeal from sustainable fisheries as the primary protein source. The other five groups were fed diets with different compositions: organic Iberian pig meal byproduct (IB diet), a combination of organic Iberian pig meal byproduct and insect meal (IB-IN diet), a mix of organic Iberian pig meal byproduct and organic rainbow trout meal byproduct (IB-TR diet), a blend of organic rainbow trout meal byproduct and insect meal (TR-IN), and a mixed diet containing all of these protein sources (MIX diet). Over a 125-day feeding trial, growth performance, feed utilisation, feed digestibility, and histological parameters were assessed. The results showed that the fish fed the control diet had the highest final weight and specific growth rate, followed by the fish fed the TR-IN and IB-TR diets. The IB-TR diet had the highest apparent digestibility coefficients (ADCs) for protein, while the TR-IN diet had the lowest. Histological analysis revealed that fish fed the control diet had the largest nucleus diameter and hepatocyte diameter. Use of IN seems to penalise performance in several ways. Fish fed diets containing insect meal grew less, and those diets had lower digestibility. Fish fed the TR and IB diets grew at rates near that of the control, and the feed had acceptable digestibility.

Funder

Biodiversity Foundation

European Maritime and Fisheries Fund

Ministry of Higher Education of the Arab Republic of Egypt

Publisher

MDPI AG

Subject

General Veterinary,Animal Science and Zoology

Reference81 articles.

1. Lembo, G., and Mente, E. (2019). Organic Aquaculture, Springer International Publishing.

2. Willer, H., Trávníček, J., Claudia, M., and Schlatter, B. (2021). The World of Organic Agriculture 2021-Statistics & Emerging Trends, IFOAM.

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4. Nutrition in Organic Aquaculture: An Inquiry and a Discourse;Mente;Aquac. Nutr.,2011

5. The Effect of Organic and Conventional Production Methods on Sea Bream Growth, Health and Body Composition: A Field Experiment;Mente;Sci. Mar.,2012

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