首页> 外文期刊>JFMR-Journal of Fisheries and Marine Research >EXPLORATION OF SEA CUCUMBER INTESTINAL SYMBIONT MICROBE AS PROBIOTIC MICROBE CANDIDATE IN HEALTHCARE PRODUCTS
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EXPLORATION OF SEA CUCUMBER INTESTINAL SYMBIONT MICROBE AS PROBIOTIC MICROBE CANDIDATE IN HEALTHCARE PRODUCTS

机译:海参肠共阴微生物作为医疗保健产品益生菌微生物候选物的探索

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Natural ingredients from animals and plants generally have potential in pharmaceutical applications. However, there are still relatively little exploration made on the active ingredients from marine life. Sea cucumbers inhabit seabed and are filter feeders, consuming all microorganisms within their vicinity, which opens the prospect of medicinal applications of sea cucumber intestinal symbiont microbes. This study aims to obtain sea cucumber intestinal symbiont microbes with potential pharmaceutical application as probiotic microbe candidate. The study was carried out by collecting samples, microbe isolation, antimicrobial screening, identification of potential probiotic microbe candidate. Characteristics of the microbe were studied by biochemical screening, and molecular identification . The study found 21 microbial isolates from Holothuria atra and 30 microbial isolates from Holothuria leucospilota . Antimicrobial activity screening results against pathogens of Bacillus cereus dan Pseudomonas aeruginosa found 13 microbial isolates with positive activity. Four species were identified by molecular identification, namely Bacillus aquimaris , Bacillus maritimus , Bacillus toyonensis , and Virgibacillus chiguensis, whereas the other nine were identified by biochemical screening. Four microbe genus, namely Rothia sp., Listeria sp., Micrococcus sp., and Staphylococcus sp, were found to be the most viable candidate for probiotics. It was concluded that Bacillus sp., Rothia sp., Micrococcus sp., and Staphylococcus sp. Exhibited the most potential as probiotic microbes.
机译:来自动物和植物的天然成分通常具有药物应用的潜力。然而,在海洋生物的活性成分上仍有相对较少的探索。海参居住海床,是过滤器,消耗其附近的所有微生物,这为海参肠道患者微生物的药用应用开辟了前景。本研究旨在获得具有潜在药物应用作为益生菌微生物候选物的海参肠道型微生物。该研究是通过收集样品,微生物分离,抗微生物筛选,鉴定潜在的益生菌微生物候选物进行研究。通过生物化学筛选和分子鉴定研究了微生物的特征。该研究发现,来自Holothuria Atra的21个微生物分离物和来自Holothuria Leucospilota的30个微生物分离物。抗菌活性筛查结果对芽孢杆菌丹菌菌的病原体铜绿假单胞菌发现13个微生物分离株,阳性活性。通过分子鉴定,即Bacillus Aquimaris,Bacillus Maritimus,Bacillus Toyonensis和Virgibacillus Chiguensis鉴定了四种物种,而另外九种通过生化筛选鉴定。四种微生物属,即Rothia sp.,histeria sp.,micrococcus sp.和staphyloccus sp,被发现是益生菌最活泼的候选者。结论是芽孢杆菌Sp。,Rothia sp.,micrococcus sp。和葡萄球菌sp。表现出最潜力的益生菌微生物。

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