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Degradation of Aroclor 1242 Dechlorination Products in Sediments by Burkholderia xenovorans LB400(ohb) and Rhodococcus sp. Strain RHA1(fcb)

机译:伯克霍尔德菌xenovorans LB400(ohb)和红球菌(Rhodococcus sp。)对沉积物中Aroclor 1242脱氯产物的降解。菌株RHA1(fcb)

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摘要

Burkholderia xenovorans strain LB400, which possesses the biphenyl pathway, was engineered to contain the oxygenolytic ortho dehalogenation (ohb) operon, allowing it to grow on 2-chlorobenzoate and to completely mineralize 2-chlorobiphenyl. A two-stage anaerobic/aerobic biotreatment process for Aroclor 1242-contaminated sediment was simulated, and the degradation activities and genetic stabilities of LB400(ohb) and the previously constructed strain RHA1(fcb), capable of growth on 4-chlorobenzoate, were monitored during the aerobic phase. The population dynamics of both strains were also followed by selective plating and real-time PCR, with comparable results; populations of both recombinants increased in the contaminated sediment. Inoculation at different cell densities (104 or 106 cells g−1 sediment) did not affect the extent of polychlorinated biphenyl (PCB) biodegradation. After 30 days, PCB removal rates for high and low inoculation densities were 57% and 54%, respectively, during the aerobic phase.
机译:具有联苯途径的伯克霍尔德菌xenovorans菌株LB400经过工程改造,可包含氧解邻位脱卤(ohb)操纵子,使其在2-氯苯甲酸酯上生长并完全矿化2-氯联苯。模拟了Aroclor 1242污染沉积物的两阶段厌氧/好氧生物处理过程,并监测了能够在4-氯苯甲酸酯上生长的LB400(ohb)和先前构建的菌株RHA1(fcb)的降解活性和遗传稳定性。在有氧阶段。两种菌株的种群动态还随后进行了选择性平板接种和实时PCR,结果相当。两种重组体的种群在受污染的沉积物中均增加。在不同细胞密度(10 4 或10 6 细胞g −1 沉积物)下接种不会影响多氯联苯(PCB)生物降解的程度。 30天后,在有氧阶段,高和低接种密度的PCB去除率分别为57%和54%。

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