el Fantroussi S, Mahillon J, Naveau H, Agathos S N
Unité de Génie Biologique, Université Catholique de Louvain, Louvain-la-Neuve, Belgium.
Appl Environ Microbiol. 1997 Feb;63(2):806-11. doi: 10.1128/aem.63.2.806-811.1997.
Desulfomonile tiedjei and Desulfitobacterium dehalogenans were chosen as model bacteria to demonstrate the introduction of an anaerobic microbia reductive dechlorination activity into nonsterile soil slurry microcosms by inoculation. De novo 3-chlorobenzoate dechlorination activity was established with the bacterium D. tiedjei in microcosms normally devoid of this dechlorination capacity. The addition of D. tiedjei to microcosms supplemented with 20 mM pyruvate as the cosubstrate resulted in total biotransformation of 1.5 mM 3-chlorobenzoate within 7 days. The introduction of the bacterium Desulfitobacterium dehalogenans into nonsterile microcosms resulted in a shortening of the period required for dechlorination activity to be established. In microcosms inoculated with Desulfitobacterium dehalogenans, total degradation of 6 mM 3-chloro-4-hydroxy phenoxyacetic acid (3-Cl-4-OHPA) was observed after 4 days in contrast to the result in noninoculated microcosms, where the total degradation of 3-Cl-4-OHPA by indigenous microorganisms was observed after 11 days. Both externally introduced bacterial strains were detected in soil slurry microcosms by a nested-PCR methodology.
选择蒂氏脱硫单胞菌(Desulfomonile tiedjei)和脱卤脱硫杆菌(Desulfitobacterium dehalogenans)作为模式细菌,以证明通过接种将厌氧微生物还原脱氯活性引入非无菌土壤泥浆微宇宙。在通常缺乏这种脱氯能力的微宇宙中,用蒂氏脱硫单胞菌建立了从头开始的3-氯苯甲酸脱氯活性。向补充有20 mM丙酮酸作为共底物的微宇宙中添加蒂氏脱硫单胞菌,导致1.5 mM 3-氯苯甲酸在7天内完全生物转化。将脱卤脱硫杆菌引入非无菌微宇宙导致建立脱氯活性所需的时间缩短。在接种了脱卤脱硫杆菌的微宇宙中,4天后观察到6 mM 3-氯-4-羟基苯氧基乙酸(3-Cl-4-OHPA)完全降解,而在未接种的微宇宙中,11天后才观察到本地微生物对3-Cl-4-OHPA的完全降解。通过巢式PCR方法在土壤泥浆微宇宙中检测到了两种外部引入的细菌菌株。