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Anaerobic 1-Alkene Metabolism by the Alkane- and Alkene-Degrading Sulfate Reducer Desulfatibacillum aliphaticivorans Strain CV2803T

机译:降解链烷烃和链烷烃的硫酸盐还原剂Desulfatibacillum脂族ivorans菌株CV2803T的无氧1-烯烃代谢。

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摘要

The alkane- and alkene-degrading, marine sulfate-reducing bacterium Desulfatibacillum aliphaticivorans strain CV2803T, known to oxidize n-alkanes anaerobically by fumarate addition at C-2, was investigated for its 1-alkene metabolism. The total cellular fatty acids of this strain were predominantly C-(even number) (C-even) when it was grown on C-even 1-alkenes and predominantly C-(odd number) (C-odd) when it was grown on C-odd 1-alkenes. Detailed analyses of those fatty acids by gas chromatography-mass spectrometry after 6- to 10-week incubations allowed the identification of saturated 2- and 4-ethyl-, 2- and 4-methyl-, and monounsaturated 4-methyl-branched fatty acids with chain lengths that correlated with those of the 1-alkene. The growth of D. aliphaticivorans on (per)deuterated 1-alkenes provided direct evidence of the anaerobic transformation of these alkenes into the corresponding 1-alcohols and into linear as well as 10- and 4-methyl-branched fatty acids. Experiments performed with [13C]bicarbonate indicated that the initial activation of 1-alkene by the addition of inorganic carbon does not occur. These results demonstrate that D. aliphaticivorans metabolizes 1-alkene by the oxidation of the double bond at C-1 and by the subterminal addition of organic carbon at both ends of the molecule [C-2 and C-(ω-1)]. The detection of ethyl-branched fatty acids from unlabeled 1-alkenes further suggests that carbon addition also occurs at C-3. Alkylsuccinates were not observed as potential initial intermediates in alkene metabolism. Based on our observations, the first pathways for anaerobic 1-alkene metabolism in an anaerobic bacterium are proposed. Those pathways indicate that diverse initial reactions of 1-alkene activation can occur simultaneously in the same strain of sulfate-reducing bacterium.
机译:研究了降解烷烃和烯烃的海洋还原硫酸盐细菌脂肪族脱硫杆菌CV2803 T ,该细菌通过在C-2处富马酸酯加氧厌氧氧化正构烷烃,从而实现了其1烯代谢。当该菌株在C-even 1-烯烃上生长时,其总细胞脂肪酸主要为C-(偶数)(C-even),而当在C-even 1烯烃上生长时,其主要为C-(奇数)(C-odd)。 C-奇数1-烯烃。温育6至10周后,通过气相色谱-质谱对这些脂肪酸进行详细分析,从而可以鉴定出饱和的2-和4-乙基,2-和4-甲基以及单不饱和的4-甲基支链脂肪酸。链长与1-烯烃的链长相关。 D.脂肪族糠醛橡胶在(全)氘代1-烯烃上的生长提供了这些烯烃厌氧转化为相应的1-醇,直链以及10-和4-甲基支链脂肪酸的直接证据。用[ 13 C]碳酸氢盐进行的实验表明,通过添加无机碳不会发生1-烯烃的初始活化。这些结果表明,D。脂肪族果聚糖通过C-1处的双键的氧化和分子[C-2和C-(ω-1)]两端的有机碳的亚末端加成来代谢1-烯烃。从未标记的1-烯烃中检测到的乙基支链脂肪酸进一步表明,碳的添加也发生在C-3处。没有观察到烷基琥珀酸酯是烯烃代谢中潜在的初始中间体。根据我们的观察,提出了厌氧细菌中厌氧1-烯烃代谢的第一个途径。这些途径表明,在相同的硫酸盐还原菌菌株中,1-烯烃活化的各种初始反应可以同时发生。

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