Author:
Komilus Connie Fay,Mohamad-Zuki Nurul Ashikin,Aminudin Nur Hamna,Redhwan Aidil Ikhwan,Mohd-Khairulnizam Nurul Aina Nadhirah
Abstract
Betta splendens, Siamese fighting fish exhibit behavior, coloration, and morphology that make them popular aquarium fish in aquaculture. Coloration for this fish requires high-quality feeds rich in carotenoids. Crab shells, mostly dumped as agro-waste by the seafood industry contain carotenoids and protein that can be an alternative for carotenoids in fish feed. The objectives of this study were to analyze the proximate composition and carotenoid content in feed and determine the effect of crab shells as feedstuff on the growth performance and coloration of Betta splendens. A 40-day feeding trial using 45 tails of B. splendens with an average body weight, of 0.25 g was conducted by using five feed treatments namely TC (0% crab shell), T1 (25% crab shell), T2 (50% crab shell), T3 (75% crab shell) and T4 (100% crab shell) respectively. Sampling was done weekly. Analysis done were proximate composition and extraction of carotenoid while growth performance parameters such as body weight gain (BWG), specific growth rate (SGR), feed intake (FI), and feed conversion ratio (FCR) were also taken. Skin coloration and water quality data were collected every 10 days. All data were analyzed using One-Way ANOVA via SPSS. Results showed protein content for T1 (22.40±0.29) was slightly higher compared to all treatments. Carotenoid content in crab shells was lower compared to krill. Body weight from T1 (25% crab shell) showed a significant increase among all treatments. All treatments show no changes in coloration. In conclusion, T1 (25% crab shell waste) is the best treatment as it has a high protein content that improves body weight gain without any significant effect on coloration in all treatments.
Funder
Ministry of Higher Education, Malaysia
Publisher
Persatuan Biologi Gunaan Malaysia
Subject
General Agricultural and Biological Sciences
Reference30 articles.
1. Adeyemi, O.S., Otuechere, C.A., Atolani, O. & Ekor, M. 2013. Chemopreventive and Therapuetic Benefits of Lycopene, Zeaxanthin, Lutein and Astaxanthin. International E. Publication pp. 1-39.
2. Al Shaqsi, N.H.K., Al Hoqan, H.A.S., Hossain, M.A. & AlSibani M.A. 2020. Isolation, characterization and standardization of demineralization process for chitin polymer and minerals from the crabs waste of Portunidae segnis. Advances in Biomarker Sciences and Technology, 2: 45-58.
3. AOAC. 2019. Official Methods of Analysis of the Association of Official Analytical Chemists: Official Methods of Analysis of AOAC International. 21st Edition, AOAC, Washington DC. https://www.aoac.org/resources/official-methods-of-analysis-revisions-to-21st-edition/ (accessed 15.09.22)
4. Caro, T. 2021. When animal coloration is a poor match. Evolutionary Ecology, 35(1): 1-13.
5. Charles, B.S., Ronald, W. & Hamidoghli, A. 2022. Diet Analysis and Evaluation. Fish Nutrition. 4th Edition. Academic Press. pp. 709-743.