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首页> 外文期刊>Biochemical Engineering Journal >Isolation and identification of new microalgae strains with antibacterial activity on food-borne pathogens. Engineering approach to optimize synthesis of desired metabolites
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Isolation and identification of new microalgae strains with antibacterial activity on food-borne pathogens. Engineering approach to optimize synthesis of desired metabolites

机译:新微藻菌株对食品传播病原体抗菌活性的分离与鉴定。 优化所需代谢物合成的工程方法

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摘要

This paper presents a strategy for isolation, identification and evaluation of microalgae strains synthesizing biologically active compounds (BAC) with antimicrobial activity against food-borne and other pathogens. Water samples containing microalgae were initially submitted to the enrichment process, followed by standard procedure for obtaining pure culture. Purified DNA from the microalgae isolates was used for sequencing the amplified 18S rDNA genomic region, which resulted in the identification of Poterioochromonas malhamensis, Chlorella sp., Micractinium sp., Tetradesmus sp. and Desmodesmus sp. All isolated strains were cultivated in 1-L flat-plate PBRs, with the Poterioochromonas malhamensis being the only one to show antibacterial activity in agar diffusion assay. Further, PPEQ-01 strain was cultured under different types and scales of PBR, intensity and spectrum of the incident light, in order to study and prove the antibacterial potential of the strain. Ethanolic and methanolic supernatants, or hydrophilic and methanolic extracts produced from biomass cultivated in different conditions led to formation of bacterial growth inhibition halos around the impregnated disks used in the agar diffusion test. The hydrophilic extract, obtained from biomass cultured under green illumination, exhibited stronger activity against all tested pathogenic bacteria as compared to the other extracts. The results obtained with the new isolated Poterioochromonas malhamensis strain proved efficiency of the innovative complex approach applied to BAC aiming the identification of microalgae that present antimicrobial activity.
机译:本文介绍了微藻菌株的分离,鉴定和评价策略,所述微藻菌株合成生物活性化合物(BAC)与对食品和其他病原体的抗微生物活性。含有微藻的水样最初提交至富集过程,然后进行纯培养的标准程序。微藻分离株中的纯化DNA用于测序扩增的18S rDNA基因组区域,导致鉴定Poterioochromonas Malhamensis,小球藻SP。,MICRINIUM SP。,TETRASESMUS SP。和desmodesmus sp。所有分离的菌株均以1-L平板PBR培养,Poterioochromonas Malhamensis是唯一一个在琼脂扩散测定中显示抗菌活性的菌株。此外,PPEQ-01菌株在不同类型和尺度的PBR,强度和光谱的尺度下培养,以研究和证明该菌株的抗菌电位。在不同条件下培养的生物质产生的乙醇和甲醇上清液或亲水和甲醇萃取液导致在琼脂扩散试验中使用的浸渍盘周围形成细菌生长抑制晕。与其他萃取液相比,从在绿色照射下培养的生物质获得的亲水提取物表现出对所有测试的致病细菌的较强的活性。用新的分离的Poterioochromonas乳仑菌株获得的结果证明了旨在鉴定目前抗微生物活性的微藻的创新复杂方法的效率。

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