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首页> 外文期刊>Journal of applied microbiology >Diversity of bacterial strains degrading hexadecance in relation to the mode of substrate uptake
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Diversity of bacterial strains degrading hexadecance in relation to the mode of substrate uptake

机译:降解十六进制的细菌菌株的多样性与底物吸收方式的关系

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The relative distribution of the modes of hydrocarbon uptake, used by bacteria of the environment for the degradation of long-chain.alkanes, has been evaluated. The first mode of uptake, direct interfacial accession, revolves contact of cells with hydrocarbon droplets. In the second mode, biosurfactant-mediated transfer, cell contact takes place with hydrocarbons emulsified or solubilized by biosurfactants. Sixty-one strains growing on hexadecane were isolated from polluted and non-polluted soils and identified. The majority (61%) belonged to the Corynebacacterium-Mycobacterium-Nocardia group. Criteria selected for characterizing hexadecane uptake were cell hydrophobicity, interfacial and surface tensions and production of glycolipidic extracellular biosurfactants. These properties were determined in flask cultures on an insoluble (hexadecane) and on a soluble (glycerol or succinate) carbon source for a subset of 23 representative strains. Exclusive direct interfacial uptake was utilized by 47% of studied strains. A large proportion of strains (53%) produced biosurfactants. The data on cellular hydrophobicity suggested the existence of two distinct alkane transfer mechanisms in this group. Accordingly, tentative assignments of biosurfactant-mediated micellar transfer were made for 11% of the isolated strains, and of biosurfactant-enhanced interfacial uptake for 42%.
机译:已经评估了环境细菌用于降解长链烷烃的碳氢化合物吸收方式的相对分布。摄取的第一种模式是直接界面进入,它使细胞与碳氢化合物液滴接触。在第二种模式下,生物表面活性剂介导的转移中,细胞与生物表面活性剂乳化或溶解的烃发生接触。从污染和未污染的土壤中分离出十六种在十六烷上生长的菌株并进行了鉴定。大多数(61%)属于棒状杆菌-分枝杆菌-诺卡氏菌群。选择用于表征十六烷摄取的标准是细胞疏水性,界面和表面张力以及糖脂细胞外生物表面活性剂的产生。在23种代表性菌株的子集的不溶性(十六烷)和可溶性(甘油或琥珀酸酯)碳源上的烧瓶培养中,确定了这些特性。 47%的研究菌株利用独家直接界面吸收。很大一部分菌株(53%)产生了生物表面活性剂。关于细胞疏水性的数据表明该组中存在两种不同的烷烃转移机制。因此,对分离出的菌株中11%进行了生物表面活性剂介导的胶束转移的初步分配,而对42%的菌株则进行了生物表面活性剂增强的界面吸收。

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