在不同盐度介质中蚕蛹的生长性能和应激反应

Khairul Samuki, Farah Diana, D. Islama, A. Hendri, M. B. A. F. Hasibuan, Aris Yusdi, F. Saputra
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摘要

塞鲁坎鱼(Osteochilus sp)是一种具有经济价值的潜在养殖商品。环境工程,如控制盐度介质,已经成功地促进了淡水鱼的生长。然而,没有关于养殖塞鲁坎鱼的最佳盐度设置的信息。本研究旨在根据色鲁坎幼鱼的生长性能确定最佳培养基盐度。本研究采用完全随机设计(RAL), 4个处理,3个重复。本研究的维持介质包括对照、P1 (3 ppt)、P2 (6 ppt)和P3 (9 ppt)。试验期45 d,采用商品饲料。试验参数包括饲料化学分析、血糖、SGR、FI、FE和sr,数据采用方差分析和Duncan’s进一步检验。通过正交多项式试验确定了介质盐度的最佳浓度。结果表明,盐渍饲料对特定生长率(SGR)和饲料利用效率有显著影响。最佳盐度浓度为3.8 ppt,表明在此盐度下,鱼叫声趋向于达到最佳生长。鱼类的生理反应(应激),通过血糖水平来测量,也与盐度水平和生长性能成正比。关键词:血糖;生长性能;媒体操纵;Osteochilus sp;压力反应。
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Growth performance and stress response of serukan juvenile (Osteochilus sp) in different salinity media
Serukan fish (Osteochilus sp) has potential as a cultivation commodity with economic value. Environmental engineering, such as the manipulation of salinity media, has succeeded in increasing the growth of freshwater fish. However, there is no information about the optimal salinity setting for raising serukan fish. This study aims to determine the optimal media salinity based on the growth performance of the serukan juvenile. This study used a completely randomized design (RAL) with four treatments and three replications. The maintenance media in this study included control, P1 (3 ppt), P2 (6 ppt) and P3 (9 ppt). The study was conducted for 45 days with commercial feed. The test parameters included feed chemical analysis, blood glucose, SGR, FI, FE and SR. Data were analyzed by ANOVA and Duncan's further test. The optimal concentration of media salinity is determined by an orthogonal polynomial test. The results showed that the salinity-rearing media had a significant effect on the specific growth rate (SGR) and the efficiency of feed usage. The optimal concentration of salinity was found at 3.8 ppt, indicating that the fish call tends to achieve optimal growth at this salinity. The physiological response (stress) of fish, as measured by blood glucose levels, is also directly proportional to the level of salinity and growth performance.Keywords: Blood glucose; Growth performance; Media manipulation; Osteochilus sp; Stress response.
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