Producing Active Secondary Metabolite Against Pathogenic Vibrio spp. by Actinobacteria-Sodium Alginate Co-Culture

N. Azhar, E. Yudiati, S. Subagiyo, R. Alghazeer
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引用次数: 3

Abstract

Vibrio vulnificus, Vibrio parahaemolyticus and Vibrio harveyi have been found in aquatic environments and suspected as the primary trigger of WFD (White Feces Disease) outbreaks in aquaculture. This Vibrio spp. has an antibiotic resistance to Ampicillin, Co-Amoxiclav, Amoxicillin, Azithromycin, Actinobacteria and Ciprofloxacin HCL. Actinobacteria and alginate have been reported to increase the marine biota resistance against diseases through prebiotic and probiotic mechanisms. This study aims to discover and increase the secondary metabolite production of Actinobacteria-Alginate and its ability as anti-vibrio. Alginate extraction in the samples dated September 2020 originally from Teluk Awur Bays, Jepara, Central Java, Indonesia (33.73±1.84%) was considerably higher than in May 2021 (22.67±0.3%). Samples were taken from sediment and mangrove root. Actinobacteria strains are macroscopically and microscopically similar to the genus Streptomyces. The most well-known antibiotics were produced by Streptomyces spp. The anti-vibrio test was carried out by Kirby-Bauer disc diffusion. The results were observed by measuring the inhibition zone surrounding the paper disc using a digital calliper. Co-culture strain 90 together with alginate have an approved antibacterial activity against all Vibrio spp. in the concentration of 10.disc-1 mg and 5 mg.disc-1. Co-culture Actinobacteria with alginate has remarkably changed the green-yellow color to olive green/dark red-orange (strains 3, 62, 63, 72, and 90), indicating the transformation of the formation alginate with pigments into other compounds through the biosynthetic pathway. Therefore, alginate enables to support of Actinobacteria by induction the active secondary metabolite as an anti-vibrio to counteract the bacterial pathogen diseases.
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放线菌-海藻酸钠共培养产生抗致病性弧菌活性次级代谢物
在水生环境中发现了创伤弧菌、副溶血性弧菌和哈维弧菌,它们被怀疑是水产养殖中白粪病暴发的主要诱因。该弧菌属对氨苄西林、复方阿莫西林、阿莫西林、阿奇霉素、放线菌和环丙沙星HCL具有耐药性。放线菌和海藻酸盐已被报道通过益生元和益生菌机制增强海洋生物群对疾病的抵抗力。本研究旨在发现和提高海藻酸放线菌次生代谢产物的产量及其抗弧菌的能力。2020年9月来自印度尼西亚中爪哇Jepara的Teluk Awur海湾的样品中藻酸盐的提取率(33.73±1.84%)显著高于2021年5月(22.67±0.3%)。样本取自沉积物和红树林根。放线菌菌株在宏观和微观上与链霉菌属相似。最著名的抗生素由链霉菌产生,抗弧菌试验采用Kirby-Bauer圆盘扩散法进行。用数字卡尺测量纸圆盘周围的抑制带,观察结果。菌株90与海藻酸盐共培养,在浓度为10时,对所有弧菌均有抑菌活性。碟片1毫克和5毫克,碟片1。与藻酸盐共培养的放线菌(菌株3、62、63、72和90)的绿黄色明显转变为橄榄绿/深红橙色,表明藻酸盐与色素的形成通过生物合成途径转化为其他化合物。因此,海藻酸盐能够通过诱导活性次级代谢物作为抗弧菌来支持放线菌,以对抗细菌病原体疾病。
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