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The Physiological Opportunism of Desulfitobacterium hafniense Strain TCE1 towards Organohalide Respiration with Tetrachloroethene

机译:Hafniense脱硫杆菌TCE1菌株对四氯乙烯进行有机卤化物呼吸的生理机会。

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Desulfitobacterium hafniense strain TCE1 is capable of metabolically reducing tetra- and trichloroethenes by organohalide respiration. A previous study revealed that the pce gene cluster responsible for this process is located on an active composite transposon, Tn- Dha1 . In the present work, we investigated the effects on the stability of the transposon during successive subcultivations of strain TCE1 in a medium depleted of tetrachloroethene. At the physiological level, an increased fitness of the population was observed after 9 successive transfers and was correlated with a decrease in the level of production of the PceA enzyme. The latter observation was a result of the gradual loss of the pce genes in the population of strain TCE1 and not of a regulation mechanism, as was postulated previously for a similar phenomenon described for Sulfurospirillum multivorans . A detailed molecular analysis of genetic rearrangements occurring around Tn- Dha1 showed two independent but concomitant events, namely, the transposition of the first insertion sequence, IS Dha1 -a, and homologous recombination across identical copies of IS Dha1 flanking the transposon. A new model is proposed for the genetic heterogeneity around Tn- Dha1 in D. hafniense strain TCE1, along with some considerations for the cleavage mechanism mediated by the transposase TnpA1 encoded by IS Dha1 .
机译:Hafniense脱硫杆菌菌株TCE1能够通过有机卤化物呼吸代谢还原四氯乙烯和三氯乙烯。先前的研究表明,负责此过程的pce基因簇位于一个活跃的复合转座子Tn-Dha1上。在目前的工作中,我们调查了在四氯乙烯缺乏的培养基中连续培养TCE1菌株对转座子稳定性的影响。在生理水平上,连续9次转移后观察到种群的适应性增加,并且与PceA酶产生水平的降低有关。后一观察到的结果是菌株TCE1中pce基因逐渐丢失的结果,而不是调节机制,正如先前针对多硫酸硫螺旋菌所描述的类似现象所假定的那样。对Tn-Dha1周围发生的基因重排的详细分子分析显示了两个独立但同时发生的事件,即第一个插入序列IS Dha1-a的转座,以及跨转座子的IS Dha1相同副本之间的同源重组。提出了一种新的模型,用于哈弗氏念珠菌TCE1中Tn-Dha1周围的遗传异质性,以及对IS Dha1编码的转座酶TnpA1介导的裂解机制的一些考虑。

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