Prama Hartami, Eva Ayuzar, Salamah Salamah, Lilis Nurjannah, O. Carman, A. Alimuddin, Muhammad Rafi, Muhammad Fakhri
{"title":"嗜水气单胞菌对三倍体带鱼(Pangasianodon hypopthalmus)的移动性嗜水气单胞菌败血症(MAS)抗病性试验","authors":"Prama Hartami, Eva Ayuzar, Salamah Salamah, Lilis Nurjannah, O. Carman, A. Alimuddin, Muhammad Rafi, Muhammad Fakhri","doi":"10.20473/jafh.v13i1.45431","DOIUrl":null,"url":null,"abstract":"Motile Aeromonas Septicemia (MAS) disease caused by Aeromonas hydrophila is a common pathogen that attacks freshwater fish commodities, including triploid as the new strain of striped catfish. This study aimed to test the resistance of triploid striped catfish to MAS infection before being released to farmers as a new commodity to increase national striped catfish production. The test was carried out for two months at the Sukamandi Fish Breeding Research Institute, Subang by injecting A. hydrophila into triploid and diploid striped catfish. The challenge test was carried out by injecting the cultured A. hydrophila with a density of 107 cfu.mL-1 as much as 0.1 mL.ind-1 at fish intramuscularly in all treatments, while in the Control (-) treatment, 0.1 mL of PBS solution was injected.tail-1. The test striped catfish used for each treatment were 10 individuals measuring 9.23 – 9.65 cm, and weighing 7.1 – 9.23 g. Survival parameter data and blood description were analyzed quantitatively using Microsoft Excel 2010 and SPSS version 16.0 software with analysis of variance (ANOVA) at a 95% confidence interval. The results of re-characterization with biochemical tests showed that A. hydrophila were gram-negative, oxidase and catalase positive, motile, could fermentatively convert sugar, and could grow in blood media. The survival of triploid striped catfish after the test was 95%, total erythrocytes on day 7, and total leukocytes on the first day were significantly different from diploid striped catfish. Thus, it can be concluded that striped triploid striped catfish are more resistant to infection with A. hydrophila than diploid.","PeriodicalId":15127,"journal":{"name":"Journal of Aquaculture and Fish Health","volume":"92 10","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-02-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Motile Aeromonas Septicemia (MAS) Disease Resistance Test by Aeromonas hydrophila on Triploid Striped Catfish (Pangasianodon hypopthalmus)\",\"authors\":\"Prama Hartami, Eva Ayuzar, Salamah Salamah, Lilis Nurjannah, O. Carman, A. Alimuddin, Muhammad Rafi, Muhammad Fakhri\",\"doi\":\"10.20473/jafh.v13i1.45431\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Motile Aeromonas Septicemia (MAS) disease caused by Aeromonas hydrophila is a common pathogen that attacks freshwater fish commodities, including triploid as the new strain of striped catfish. 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The results of re-characterization with biochemical tests showed that A. hydrophila were gram-negative, oxidase and catalase positive, motile, could fermentatively convert sugar, and could grow in blood media. The survival of triploid striped catfish after the test was 95%, total erythrocytes on day 7, and total leukocytes on the first day were significantly different from diploid striped catfish. 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引用次数: 0
摘要
由嗜水气单胞菌(Aeromonas hydrophila)引起的气单胞菌败血症(MAS)是一种常见的病原体,可侵袭淡水鱼类商品,包括作为带鱼新品系的三倍体带鱼。本研究旨在测试三倍体带鱼对 MAS 感染的抵抗力,然后将其作为新商品投放给养殖户,以提高全国带鱼产量。试验在梳邦苏卡曼迪鱼类育种研究所进行,为期两个月,向三倍体和二倍体带鱼注射嗜水青虫。在所有处理中,将密度为 107 cfu.mL-1 的嗜水蝇以 0.1 mL.ind-1 的剂量注射到鱼的肌肉中,而在对照组(-)处理中,则以 0.1 mL PBS 溶液注射到鱼的尾部。使用 Microsoft Excel 2010 和 SPSS 16.0 版软件对生存参数数据和血液描述进行定量分析,并进行方差分析(ANOVA),置信区间为 95%。生化检测重新定性的结果表明,嗜水青虫为革兰氏阴性,氧化酶和过氧化氢酶阳性,能运动,能发酵转化糖,并能在血液培养基中生长。试验后三倍体带鱼的存活率为 95%,第 7 天的红细胞总数和第 1 天的白细胞总数与二倍体带鱼有显著差异。因此,可以得出结论,三倍体条纹鲶比二倍体条纹鲶更能抵抗嗜水青虫的感染。
Motile Aeromonas Septicemia (MAS) Disease Resistance Test by Aeromonas hydrophila on Triploid Striped Catfish (Pangasianodon hypopthalmus)
Motile Aeromonas Septicemia (MAS) disease caused by Aeromonas hydrophila is a common pathogen that attacks freshwater fish commodities, including triploid as the new strain of striped catfish. This study aimed to test the resistance of triploid striped catfish to MAS infection before being released to farmers as a new commodity to increase national striped catfish production. The test was carried out for two months at the Sukamandi Fish Breeding Research Institute, Subang by injecting A. hydrophila into triploid and diploid striped catfish. The challenge test was carried out by injecting the cultured A. hydrophila with a density of 107 cfu.mL-1 as much as 0.1 mL.ind-1 at fish intramuscularly in all treatments, while in the Control (-) treatment, 0.1 mL of PBS solution was injected.tail-1. The test striped catfish used for each treatment were 10 individuals measuring 9.23 – 9.65 cm, and weighing 7.1 – 9.23 g. Survival parameter data and blood description were analyzed quantitatively using Microsoft Excel 2010 and SPSS version 16.0 software with analysis of variance (ANOVA) at a 95% confidence interval. The results of re-characterization with biochemical tests showed that A. hydrophila were gram-negative, oxidase and catalase positive, motile, could fermentatively convert sugar, and could grow in blood media. The survival of triploid striped catfish after the test was 95%, total erythrocytes on day 7, and total leukocytes on the first day were significantly different from diploid striped catfish. Thus, it can be concluded that striped triploid striped catfish are more resistant to infection with A. hydrophila than diploid.