L-Tryptophan Mitigates Cannibalism and Improves Growth of Asian seabass, Lates calcarifer Reared in a RAS System

Q4 Environmental Science Indonesian Aquaculture Journal Pub Date : 2023-06-23 DOI:10.3390/aquacj3030014
Md. Shahzad Kuli Khan, K. Salin, A. Yakupitiyage, T. Tsusaka, L. T. Nguyen, M. Siddique
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Abstract

Severe cannibalism can result in a significant loss of productivity during the nursery phase of Asian seabass, Lates calcarifer. The present study aimed to determine the effect of dietary tryptophan on growth, feed utilization, cannibalism, survival, and muscle proximate composition of Asian seabass juveniles (initial size, 2.77 ± 0.04 cm in length and 0.29 ± 0.01 g in weight) in a recirculating aquaculture system (RAS) at different stocking densities. The tryptophan levels were set at 0.41% (control diet, standard dosage for normal growth and survival of Asian seabass), 1.00% (Diet 1), and 1.50% (Diet 2), while the stocking densities were set at 0.5 ind./L and 1.5 ind./L. The results indicated that dietary supplementation with L-tryptophan (TRP) and fish stocking density had a significant effect on fish growth parameters, feed utilization, cannibalism, survival, and muscle lipid content (p < 0.05) over the 45-day trial. The maximum length, weight, WG, and SGR were 11.64 ± 0.35 cm, 22.93 ± 2.67 g, 22.64 ± 2.67 g, and 9.63 ± 0.27%, respectively, in the fish fed Diet 2, and 11.35 ± 0.22 cm, 24.38 ± 1.28 g, 24.09 ± 1.28 g, and 9.82 ± 0.11% at a 1.5 ind./L stocking density. The lower FCR (0.81 ± 0.04) and higher PER (2.98 ± 0.16) ensured better utilization of Diet 1 than the other diets. Moreover, significant interaction effects between diet and stocking density were observed in total yield, cannibalism, and survival of the Asian seabass. Significantly higher survival rates of 76.11 ± 3.90% in the Diet 1 group and 76.28 ± 2.88% in 0.5 ind./L stocking density were obtained, which is promising. The study concludes that dietary supplementation with 1.00% TRP was effective in reducing cannibalism and increasing the survival of the Asian seabass nursery reared in RAS at a lower stocking density (i.e., 0.5 ind./L), whereas 1.50% supplemental TRP at a higher stocking density (i.e., 1.5 ind./L) significantly increased the cannibalism and growth, which in turn reduced the survival rate.
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l -色氨酸减轻同类相食并促进在RAS系统中饲养的亚洲海鲈生长
严重的同类相食会导致亚洲海鲈苗期生产力的重大损失。本研究旨在研究不同放养密度下饲料色氨酸对循环水养殖系统(RAS)中亚洲海鲈幼鱼(初始体长2.77±0.04 cm,体重0.29±0.01 g)生长、饲料利用、同类相食、存活和肌肉近似组成的影响。色氨酸水平分别为0.41%(对照饲料,为亚洲海鲈正常生长和存活的标准饲料)、1.00%(饲料1)和1.50%(饲料2),放养密度分别为0.5和1.5 ind /L。结果表明,在45 d的试验期间,饲料中添加l -色氨酸(TRP)和放养密度对鱼的生长参数、饲料利用率、同类相食率、存活率和肌脂含量均有显著影响(p < 0.05)。饲料2的最大体长、最大体重、最大WG和最大SGR分别为11.64±0.35 cm、22.93±2.67 g、22.64±2.67 g和9.63±0.27%;密度为1.5只/L时的最大体长、最大体重、最大SGR分别为11.35±0.22 cm、24.38±1.28 g、24.09±1.28 g和9.82±0.11%。较低的FCR(0.81±0.04)和较高的PER(2.98±0.16)保证了饲粮1的利用率优于其他饲粮。此外,饵料和放养密度对亚洲海鱼的总产量、同类相食性和存活率均有显著的交互作用。饲粮1组的成活率为76.11±3.90%,0.5只/L放养密度组的成活率为76.28±2.88%,具有较好的发展前景。综上所述,饲料中添加1.00% TRP可有效降低低放养密度(0.5 ind./L)育苗的同类相食,提高育苗成活率,而饲料中添加1.50% TRP (1.5 ind./L)显著增加育苗的同类相食和生长,降低育苗成活率。
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来源期刊
Indonesian Aquaculture Journal
Indonesian Aquaculture Journal Environmental Science-Water Science and Technology
CiteScore
0.50
自引率
0.00%
发文量
9
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