Potential of Bioactive Compounds of Holothuria atra- Associated Bacteria as a Raw Material in Bioindustry

D. Pringgenies, G. Santosa, Ali Djunaedi, A. Susanto
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Abstract

Sea cucumbers have bioactive compounds with health efficacies. These active compounds can be used as raw material products for marine aquaculture. This study aims to determine the potential of sea cucumber intestine-associated bacteria as a product of bioindustry materials through investigation of their characteristics using the GC-MS method. The solid-liquid method is used in the extraction process. Open Column Chromatography (OCC) is used in the fractionation process. Anti-bacterial sensitivity test was carried out using the Kirby-Bauer agar diffusion method. This study found 26 bacterial isolates resulting from the isolation of black sea cucumber symbionts (Holothuria atra). Of the 26 bacterial isolates, 9 bacterial isolates were found to have antibacterial activity against MDR bacteria. Two isolates were selected from the 9 test results, namely T.1.2 which formed a 7.3 mm zone of inhibition against Escherichia coli and 7.8 mm against Staphylococcus aureus and T.1.13 which was only active against Staphylococcus aureus with an inhibition zone of 8.2 mm. Identification of selected isolates showed that isolate T.1.2 matched with Bacillus manliponensis species with 97% homology and that isolate T.4.1.25 matched with Bacillus oceanisediminis with 95% homology. GC-MS analysis found Methyl hexadecanoate/methyl palmitate, Bis (2-ethylhexyl) -1,2-benzene dicarboxylate, 9-Octadecenal, Glycerol-1,3-dihexadecanoate and Diisooctyl-1,2-benzene dicarboxylate in sea cucumber intestine-associated bacteria. Diisooctyl-1,2-benzene dicarboxylate can be used as raw materials for plastic which is usable as raw materials for bioindustry. The study concluded that the bioactive compounds of sea cucumber intestine-associated bacteria found in H. atra are useful as a raw ingredient of marine aquaculture products because they contain natural ingredients for plastic raw materials.
全息图菌相关菌活性化合物在生物工业原料中的应用潜力
海参含有具有保健功效的生物活性化合物。这些活性化合物可作为海洋水产养殖的原料产品。本研究旨在通过气相色谱-质谱法研究海参肠道相关菌的特性,确定其作为生物工业材料产品的潜力。萃取过程采用固液法。开柱色谱法(OCC)用于分馏过程。采用Kirby-Bauer琼脂扩散法进行抗菌敏感性试验。本研究从黑海参共生体(Holothuria atra)中分离出26株细菌。26株菌株中,9株菌株对耐多药耐药菌具有抑菌活性。从9个试验结果中筛选出2株,分别为T.1.2对大肠杆菌和金黄色葡萄球菌形成7.3 mm的抑制区和7.8 mm的抑制区,T.1.13只对金黄色葡萄球菌有活性,抑制区为8.2 mm。经鉴定,菌株T.1.2与曼利浦芽孢杆菌的同源性为97%,菌株T.4.1.25与海洋芽孢杆菌的同源性为95%。GC-MS分析在海参肠道相关菌中发现了十六酸甲酯/棕榈酸甲酯、双(2-乙基己基)-1,2-苯二甲酸酯、9-十八烯醛、甘油-1,3-二十六酸酯和二异辛基-1,2-苯二甲酸酯。二异辛基-1,2-苯二甲酸酯可作为塑料原料,可作为生物工业原料。研究结果表明,在海参肠道相关细菌中发现的生物活性化合物,由于含有塑料原料的天然成分,因此可以作为海洋水产养殖产品的原料。
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