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Anaerobic biodegradation of pristane by a marine sedimentary bacterial and/or archaeal community

机译:海洋沉积细菌和/或古细菌群落对of烷的厌氧生物降解

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Pristane was incubated in anaerobic sediment slurries under conditions promoting or limiting nitrate reduction. Pristane was efficiently degraded (85% after 6 months) by the mixed microbial community when nitrate reducing processes were avoided. The biodegradation of pristane was accompanied by the abundant production of methane which indicated that methanogenic Archaea were involved in the degradation of the substrate. Comparison of the biodegradation rate of pristane with that of unsaturated isoprenoid alkenes indicated that, in Recent anoxic sediments, acyclic isoprenoid alkanes can also undergo relatively rapid biotransformations and, therefore, can no longer be considered as recalcitrant biomarkers. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 15]
机译:在促进或限制硝酸盐还原的条件下,将乙烷在厌氧沉积浆液中孵育。当避免硝酸盐还原过程时,混合微生物群落可有效降解烷(6个月后占85%)。 rist烷的生物降解伴随着甲烷的大量产生,这表明产甲烷的古生菌参与了底物的降解。 rist烷与不饱和类异戊二烯烯烃的生物降解速率的比较表明,在最近的缺氧沉积物中,无环类异戊二烯烷烃也可以经历相对快速的生物转化,因此,不再被视为顽固的生物标记。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:15]

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