Comparison Distribution of Vibrio Species in Stocking to Harvesting Process of Shrimp at Commercialize Shrimp Farm

Q4 Biochemistry, Genetics and Molecular Biology International Journal of Biology and Biomedical Engineering Pub Date : 2022-01-21 DOI:10.46300/91011.2022.16.22
E. Nillian, Nur Diyana Zakaria, D. Lesen, N. Yusoff, Nurain Syahirah Binti Ismail, Teng Sing Tung, L. Bilung
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Abstract

Vibrio species is one of the pathogenic bacteria infecting shrimps in aquaculture farm has caused severe loss to the aquaculture farm. The aim of this research is to isolate and compare the presence of Vibrio spp. in commercialize shrimp farm during the stocking process and the final harvest phase of shrimp productions. Quantification and isolation were conducted and measured using Log CFU (colony forming units) counts and morphological investigation gram staining and conventional biochemical test identification. A total of sixty-four (n=64) sediment and water samples were collected from the inlet and outlet of the two selected shrimp ponds (Pond A and Pond B) in Kampung Telaga Air, Kuching, Sarawak. As a result, the bacteria count from water samples during stocking period at both shrimps ponnds were 6.6 Log CFU/ml and 5.6 Log CFU/ml while during harvesting period were 5.3 Log CFU/ml and 5.8 Log CFU/ml. Meanwhile, bacteria count sediments samples during stocking period at both shrimp ponds were 5.5 Log CFU/g and 5.7 Log CFU/g whereas harvesting period at showed both shrimps pond were 5.2 Log CFU/g and 4.8 Log CFU/g. The finding showed the Vibrio sp. identified in sediment samples were V. parahemolyticus with 27%, followed by V. alginolyticus (22%), V. cholerae (16%). V. fluvialis (14%) and 7% of V. fulmisi and V. vulnificus and V. mimicus. Meanwhile, the Vibrio sp. identified in water samples were V. fluvialis with 29%, followed by V. alginolyticus (22%), V. parahemolyticus (19%) and 10 % were V. fulmisi , V. mimicus and V. vulnificus. The study has been carried out further by investigated the Antibiotic Susceptibility Test (AST) using erythromycin (15 ug/ml), ampicillin (10 ug/ml), and streptomycin (25 ug/ml). The positive cultures from sediment samples showed Ampicillin resistant profile was > 0.2 MAR index while fifty percent (50%) of the isolates from water samples were resistant to ampicillin. Therefore, this study has profound implications for further monitoring process from the stocking process towards the harvesting process in order to prevent any Vibrio sp. infection which caused shrimp’s disease or food safety issue related to public consumption or of shrimps in future.
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商业化虾场放养与收获过程中弧菌种类分布的比较
弧菌是养殖场感染对虾的致病菌之一,给养殖场造成了严重的损失。本研究的目的是分离和比较在商业化虾养殖场的放养过程和虾产品的最后收获阶段弧菌的存在。采用Log CFU(菌落形成单位)计数、形态调查、革兰氏染色和常规生化试验鉴定进行定量和分离。在沙捞越州古晋甘邦特拉加航空的两个对虾池(池A和池B)的入口和出口共采集了64份(n=64)沉积物和水样。结果表明,放养期水样细菌计数分别为6.6 Log CFU/ml和5.6 Log CFU/ml,收获期水样细菌计数分别为5.3 Log CFU/ml和5.8 Log CFU/ml。同时,两个虾池放养期沉积物样品细菌计数分别为5.5 Log CFU/g和5.7 Log CFU/g,而收获期的细菌计数分别为5.2 Log CFU/g和4.8 Log CFU/g。结果表明,沉积物样品中检出的副溶血性弧菌最多,占27%,其次是溶藻弧菌(22%)和霍乱弧菌(16%)。河流弧菌占14%,富米弧菌、创伤弧菌和拟弧菌占7%。水样中检出的弧菌以河流弧菌为主(29%),其次为溶藻弧菌(22%)、副溶血性弧菌(19%),富米弧菌、拟溶血性弧菌和创伤弧菌占10%。本研究进一步采用红霉素(15 ug/ml)、氨苄西林(10 ug/ml)和链霉素(25 ug/ml)进行抗生素敏感性试验(AST)。沉积物样品阳性培养显示氨苄西林耐药谱为bb0 0.2 MAR指数,水样中50%(50%)的分离株对氨苄西林耐药。因此,该研究对从放养过程到收获过程的进一步监测具有深远的意义,以防止任何引起虾病的弧菌感染或未来与公众消费或虾相关的食品安全问题。
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来源期刊
International Journal of Biology and Biomedical Engineering
International Journal of Biology and Biomedical Engineering Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
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期刊介绍: Topics: Molecular Dynamics, Biochemistry, Biophysics, Quantum Chemistry, Molecular Biology, Cell Biology, Immunology, Neurophysiology, Genetics, Population Dynamics, Dynamics of Diseases, Bioecology, Epidemiology, Social Dynamics, PhotoBiology, PhotoChemistry, Plant Biology, Microbiology, Immunology, Bioinformatics, Signal Transduction, Environmental Systems, Psychological and Cognitive Systems, Pattern Formation, Evolution, Game Theory and Adaptive Dynamics, Bioengineering, Biotechnolgies, Medical Imaging, Medical Signal Processing, Feedback Control in Biology and Chemistry, Fluid Mechanics and Applications in Biomedicine, Space Medicine and Biology, Nuclear Biology and Medicine.
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