首页> 外文期刊>Applied and Environmental Microbiology >Microbial Degradation of the Multiply Branched Alkane 2,6,10,15,19,23-Hexamethyltetracosane (Squalane) byMycobacterium fortuitum and Mycobacterium ratisbonense
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Microbial Degradation of the Multiply Branched Alkane 2,6,10,15,19,23-Hexamethyltetracosane (Squalane) byMycobacterium fortuitum and Mycobacterium ratisbonense

机译:Fortuitum and ratisbonense分枝杆菌对多支链烷烃2,6,10,15,19,23-六甲基四氢六烷(角鲨烷)的微生物降解作用

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Among several bacterial species belonging to the generalGordonia, Mycobacterium,Micromonospora, Pseudomonas, andRhodococcus, only two mycobacterial isolates,Mycobacterium fortuitum strain NF4 and the new isolateMycobacterium ratisbonense strain SD4, which was isolated from a sewage treatment plant, were capable of utilizing the multiply branched hydrocarbon squalane (2,6,10,15,19,23-hexamethyltetracosane) and its analogous unsaturated hydrocarbon squalene as the sole carbon source for growth. Detailed degradation studies and high-pressure liquid chromatography analysis showed a clear decrease of the concentrations of squalane and squalene during biomass increase. These results were supported by resting-cell experiments using strain SD4 and squalane or squalene as the substrate. The degradation of acyclic isoprenoids and alkanes as well as of acids derived from these compounds was also investigated. Inhibition of squalane and squalene degradation by acrylic acid indicated the possible involvement of β-oxidation in the degradation route. To our knowledge, this is the first report demonstrating the biodegradation of squalane by using defined axenic cultures.
机译:在属于普通G草属,分枝杆菌属,微小单孢菌属,假单胞菌属和红球菌属的几种细菌中,只有两种分枝杆菌分离株,即从污水处理厂分离出的耐分枝杆菌分枝杆菌菌株NF4和新分离株鼠藤分枝杆菌SD4菌株。烃角鲨烷(2,6,10,15,19,23-六甲基四氢六烷)及其类似的不饱和烃角鲨烯为唯一的生长碳源。详细的降解研究和高压液相色谱分析表明,生物量增加期间角鲨烷和角鲨烯的浓度明显降低。这些结果得到了使用SD4菌株和角鲨烷或角鲨烯作为底物的静息细胞实验的支持。还研究了无环类异戊二烯和烷烃以及衍生自这些化合物的酸的降解。丙烯酸对角鲨烷和角鲨烯降解的抑制表明,β-氧化可能参与了降解途径。据我们所知,这是第一个报告,通过使用确定的树胶培养物证明了角鲨烷的生物降解作用。

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