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从海洋沉积物中分离出的BDK01的分类学特征及抗菌化合物的产生

Taxonomic characterization and antimicrobial compound production from BDK01 isolated from marine sediment.

作者信息

Manikandan Madheslu, Gowdaman Vasudevan, Duraimurugan Kasiviswanathan, Prabagaran Solai Ramatchandirane

机构信息

Department of Biotechnology, Sri Krishna Arts and Science College, Coimbatore, 641 008 India.

Genomics Lab, Megavision Life Sciences Pvt Ltd, Pune, 411 004 India.

出版信息

3 Biotech. 2019 May;9(5):167. doi: 10.1007/s13205-019-1687-7. Epub 2019 Apr 4.

DOI:10.1007/s13205-019-1687-7
PMID:30997304
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6449414/
Abstract

sp. isolated from marine sediment collected from Palk Strait, Bay of Bengal was investigated for its antagonistic potential. The isolate exhibited antimicrobial activity against selected bacterial strains of clinical importance such as MTCC 3160, NCIM 2327, (methicillin resistant), MTCC 1698, (ESBL), MTCC 1457, and Phenotypic and molecular characterization ascertained the isolate BDK01 as . Media optimization with one variable-at-a-time strategy was attempted to identify the ideal concentrations of starch (5-15 g/l), casein (0.01-0.05 g/l), NaCl 1.0-3.0 g/l, pH (4.0-9.0 g/l), temperature (25-45 °C) and inoculum level (0.5-5 ml) towards achieving maximum antimicrobial compound production. Statistical optimization of production media was carried by establishing an 11 variables 17 run experiment through PB model which evinced starch, calcium carbonate, pH and inoculum concentration that highly influenced bioactive compound production. Spectral data of active ethyl acetate extract revealed the presence of various bioactive compounds such as Salicyl alcohol, -phenyl benzamide. 6-Octadecenoic acid, (), 1,3,5-Cycloheptatriene. Antiproliferation activity of active fraction against MCF-7 Cell line exhibited IC value of 9.5 µg/ml. Overall, it is observed that the marine actinomycete BDK01 could be employable as promising strain for novel antimicrobial and cytotoxic metabolites.

摘要

对从孟加拉湾帕克海峡采集的海洋沉积物中分离出的菌株进行了拮抗潜力研究。该分离株对具有临床重要性的选定细菌菌株表现出抗菌活性,如MTCC 3160、NCIM 2327(耐甲氧西林)、MTCC 1698(产超广谱β-内酰胺酶)、MTCC 1457。表型和分子特征鉴定确定分离株BDK01为 。采用一次一个变量的策略进行培养基优化,以确定淀粉(5 - 15 g/l)、酪蛋白(0.01 - 0.05 g/l)、NaCl(1.0 - 3.0 g/l)、pH(4.0 - 9.0)、温度(25 - 45°C)和接种量(0.5 - 5 ml)的理想浓度,以实现最大抗菌化合物产量。通过PB模型建立11变量17运行实验对生产培养基进行统计优化,结果表明淀粉、碳酸钙、pH和接种物浓度对生物活性化合物的产生有高度影响。活性乙酸乙酯提取物的光谱数据显示存在多种生物活性化合物,如水杨醇、对苯基苯甲酰胺、6 - 十八碳烯酸、( )、1,3,5 - 环庚三烯。活性部分对MCF - 7细胞系的抗增殖活性表现出IC值为9.5 μg/ml。总体而言,观察到海洋放线菌BDK01可作为产生新型抗菌和细胞毒性代谢物的有前景的菌株。