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从铜绿假单胞菌 MBTDCMFRI Ps04 中分离新型羟基取代五环酮化合物的抑菌活性导向

Antibacterial assay guided isolation of a novel hydroxy-substituted pentacyclo ketonic compound from Pseudomonas aeruginosa MBTDCMFRI Ps04.

机构信息

ICAR - Central Marine Fisheries Research Institute, Kochi, Kerala, India.

Department of Chemistry, NSS College Cherthala, Cherthala, Kerala, India.

出版信息

Braz J Microbiol. 2021 Mar;52(1):335-347. doi: 10.1007/s42770-020-00404-z. Epub 2020 Nov 25.

Abstract

Antimicrobial compounds from the natural source have gained greater relevance because of their wide spectrum of possible applications, especially in the aquaculture industry where pathogenic threat and antibacterial resistance are serious concerns. In this regard, Pseudomonas aeruginosa MBTDCMFRI Ps04 (P. aeruginosa Ps04) strain isolated from the tropical estuarine habitats of Cochin was evaluated for its antibacterial potential against major aquaculture pathogens. The physiological conditions for the maximum production of the active metabolite were also optimized. An activity-guided approach was employed further to isolate and characterize the secondary metabolite responsible for the inhibitory potential. It was found that the cell free supernatant (CFS) of P. aeruginosa Ps04 exhibited strong antibacterial activity against major aquaculture pathogens belonging to the genus Vibrio and Aeromonas and retained its potential even at 30% (v/v) dilution. The highest antibacterial activity was detected from 3rd day culture, grown in glycerol alanine media (1% each) as carbon and nitrogen source, respectively, at 30 °C, pH 7.0 and at a salinity of 20 parts per thousand (ppt). The activity of the antagonistic principle was found to be stable against variations in pH (pH 2-pH 12), temperature (up to 120 °C) and enzymatic treatments. Bioassay-guided purification followed by spectroscopic characterization of active fractions of P. aeruginosa Ps04 revealed that the compound 4-Hydroxy-11-methylpentacyclo [11.8.0.0.0.0]henicosa-1,3,5,8(9),17-penten-14-one is responsible for its major antibacterial activity. The results of this study indicated that P. aeruginosa Ps04 has beneficial antibacterial properties which could be used in developing novel antimicrobial therapeutics against a variety of aquaculture pathogens.

摘要

从天然来源获得的抗菌化合物因其广泛的潜在应用而受到更多关注,尤其是在水产养殖行业,那里存在严重的致病威胁和抗菌耐药性问题。在这方面,从科钦热带河口栖息地分离的铜绿假单胞菌 MBTDCMFRI Ps04 (P. aeruginosa Ps04) 菌株因其对主要水产养殖病原体的抗菌潜力而被评估。还优化了最大生产活性代谢物的生理条件。进一步采用活性导向方法分离和表征负责抑制潜力的次生代谢物。结果发现,铜绿假单胞菌 Ps04 的无细胞上清液 (CFS) 对属于弧菌属和气单胞菌属的主要水产养殖病原体表现出强烈的抗菌活性,即使在 30%(v/v)稀释时仍保留其潜力。在 30°C、pH 7.0 和盐度为 20 个千分比 (ppt) 的条件下,分别以甘油丙氨酸培养基(各 1%)作为碳源和氮源培养第 3 天的细菌时,检测到最高的抗菌活性。拮抗原理的活性被发现对 pH(pH 2-pH 12)、温度(高达 120°C)和酶处理的变化稳定。铜绿假单胞菌 Ps04 的活性导向纯化后,对活性部分进行光谱特征分析表明,化合物 4-羟基-11-甲基戊环[11.8.0.0.0.0]十一碳-1,3,5,8(9),17-戊烯-14-酮负责其主要的抗菌活性。这项研究的结果表明,铜绿假单胞菌 Ps04 具有有益的抗菌特性,可用于开发针对各种水产养殖病原体的新型抗菌治疗方法。

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