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首页> 外文期刊>Electronic Journal of Biology >Isolation and Identification of Halophilic Actinomyces with Antimicrobial Activity and Partial Characterization of their Bioactive Compounds
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Isolation and Identification of Halophilic Actinomyces with Antimicrobial Activity and Partial Characterization of their Bioactive Compounds

机译:具有抗菌活性的嗜盐放线菌的分离和鉴定及其生物活性化合物的部分表征

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Aim: The purpose of this study was isolation of halophilic Actinomyces and the evaluation of their potential for producing antimicrobial metabolites. Methodology and results: To isolate antimicrobial metabolites producing Actinomyces, culture supernatant of 51 halophilic Actinnomyces isolates were assessed against Escherichia coli (PTCC 1330), Pseudomonas aeruginosa (PTCC 1074), Bacillus cereus (PTCC 1015), Staphylococcus aureus (PTCC 1112), Candida albicans (PTCC 5027) and Aspergillus niger (PTCC 5012) using Well Diffusion Agar (WDA) method. Then the promising strains were identified by API kit (bioMerieux) and 16S rRNA gene sequencing. The antimicrobial production was optimized at different temperatures, pHs, and variety of carbon, nitrogen-sources. Then the structural analysis of the metabolites carried out by UV-visible, FT-IR and 1H NMR and 13C NMR. Out of 51strainsof halophilic Actinomyces isolates, three strains showed potent activity for the production of antimicrobial metabolites. Bacillus cereus, Staphylococcus aureus and Candida albicans were sensitive to all and E. coli was sensitive to the bioactive compounds produced by Am18 and Aa8. Pseudomonas aeruginosa was resistance to all antimicrobial metabolites produced by the isolates. Phenotyping and molecular identification of the antimicrobial metabolites producing strains recognized them as Streptomyces sp. Ahbb4, Streptomyces flavidofuscus strain HBUM1740 and Streptomyces olivoviridis strain CGMCC. Optimal temperature, pH and C, N-sources for growth of these strains were 27°C, 8 and fructose, xylose and yeast extract and peptone respectively. In addition, The UV-visible, FT-IR and 1H NMR and 13C NMR spectrum suggesting the peptide nature of the compounds. However chloroacetate, ethylcholoroacetate and 4 chloro 3 hydroxybutyronitrite groups could be probably linked to the structures, but complete structure elucidations were not fully recognized. Conclusion, significance and impact of study: Our finding probably introduces new antimicrobial metabolites produced by halophilic Actinomyces however it needs more evaluation.
机译:目的:本研究的目的是分离嗜盐放线菌并评估其产生抗菌代谢物的潜力。方法和结果:为分离产生放线菌的抗菌代谢物,针对大肠杆菌(PTCC 1330),铜绿假单胞菌(PTCC 1074),蜡状芽孢杆菌(PTCC 1015),金黄色葡萄球菌(PTCC 1112),51种嗜盐放线菌的培养上清液进行了评估。使用井扩散琼脂(WDA)方法检测白色念珠菌(PTCC 5027)和黑曲霉(PTCC 5012)。然后通过API试剂盒(bioMerieux)和16S rRNA基因测序鉴定出有希望的菌株。在不同的温度,pH值以及各种碳源,氮源下优化了抗菌素的生产。然后通过紫外可见光,FT-IR,1H NMR和13C NMR对代谢物进行结构分析。在51株嗜盐放线菌菌株中,有3株显示出产生抗菌代谢产物的有效活性。蜡状芽孢杆菌,金黄色葡萄球菌和白色念珠菌对所有人敏感,而大肠杆菌对Am18和Aa8产生的生物活性化合物敏感。铜绿假单胞菌对分离物产生的所有抗菌代谢物均具有抗性。产生菌株的代谢产物的表型鉴定和分子鉴定将其识别为链霉菌。 Ahbb4,黄链霉菌菌株HBUM1740和寡链链霉菌菌株CGMCC。这些菌株生长的最佳温度,pH和C,N源分别为27、8和果糖,木糖,酵母提取物和蛋白ept。另外,UV-可见,FT-IR和1H NMR和13C NMR光谱表明该化合物的肽性质。但是,氯乙酸酯,氯胆酸乙酯和4个氯3羟基丁酸亚铁基可能与结构相连,但尚未完全认识到完整的结构说明。结论,研究的意义和影响:我们的发现可能引入了由嗜盐放线菌产生的新的抗菌代谢物,但需要更多的评估。

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