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Characterization of Rhamnolipids Produced by an Arctic Marine Bacterium from the Pseudomonas fluorescence Group

机译:假单胞菌荧光群的北极海洋细菌产生的鼠李糖脂的表征

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The marine environment is a rich source of biodiversity, including microorganisms that have proven to be prolific producers of bioactive secondary metabolites. Arctic seas are less explored than warmer, more accessible areas, providing a promising starting point to search for novel bioactive compounds. In the present work, an Arctic marine Pseudomonas sp. belonging to the Pseudomonas (P.) fluorescence group was cultivated in four different media in an attempt to activate biosynthetic pathways leading to the production of antibacterial and anticancer compounds. Culture extracts were pre-fractionated and screened for antibacterial and anticancer activities. One fraction from three of the four growth conditions showed inhibitory activity towards bacteria and cancer cells. The active fractions were dereplicated using molecular networking based on MS/MS fragmentation data, indicating the presence of a cluster of related rhamnolipids. Six compounds were isolated using HPLC and mass-guided fractionation, and by interpreting data from NMR and high-resolution MS/MS analysis; the structures of the compounds were determined to be five mono-rhamnolipids and the lipid moiety of one of the rhamnolipids. Molecular networking proved to be a valuable tool for dereplication of these related compounds, and for the first time, five mono-rhamnolipids from a bacterium within the P. fluorescence group were characterized, including one new mono-rhamnolipid.
机译:海洋环境是生物多样性的丰富来源,其中包括已被证明是生物活性次级代谢产物多产的微生物。与更温暖,更容易接近的地区相比,北极海的勘探较少,这为寻找新型生物活性化合物提供了一个有希望的起点。在目前的工作中,北极海洋假单胞菌属。为了激活生物合成途径以导致产生抗菌和抗癌化合物,在四种不同的培养基中培养了属于Pseudomonas(P.)荧光群的细胞。将培养物提取物预先分级分离,并筛选其抗菌和抗癌活性。在四种生长条件中的三种中,有三分之一显示出对细菌和癌细胞的抑制活性。使用基于MS / MS碎片数据的分子网络对活性级分进行重复复制,表明存在相关鼠李糖脂簇。使用HPLC和质量导向分馏法,通过解释NMR和高分辨率MS / MS分析数据分离出六种化合物;确定化合物的结构为五个单鼠李糖脂和鼠李糖脂之一的脂质部分。分子网络被证明是删除这些相关化合物的有价值的工具,并且首次表征了来自荧光假单胞菌属中细菌的五个单鼠李糖脂,包括一个新的单鼠李糖脂。

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