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Aerobic biodegradation of biphenyl and polychlorinated biphenyls by Arctic soil microorganisms.

机译:北极土壤微生物对联苯和多氯联苯的好氧生物降解。

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We examined the degradation of biphenyl and the commercial polychlorinated biphenyl (PCB) mixture Aroclor 1221 by indigenous Arctic soil microorganisms to assess both the response of the soil microflora to PCB pollution and the potential of the microflora for bioremediation. In soil slurries, Arctic soil microflora and temperate-soil microflora had similar potentials to mineralize [14C]biphenyl. Mineralization began sooner and was more extensive in slurries of PCB-contaminated Arctic soils than in slurries of uncontaminated Arctic soils. The maximum mineralization rates at 30 and 7 degrees C were typically 1.2 to 1.4 and 0.52 to 1.0 mg of biphenyl g of dry soil-1 day-1, respectively. Slurries of PCB-contaminated Arctic soils degraded Aroclor 1221 more extensively at 30 degrees C (71 to 76% removal) than at 7 degrees C (14 to 40% removal). We isolated from Arctic soils organisms that were capable of psychrotolerant (growing at 7 to 30 degrees C) or psychrophilic (growing at 7 to 15 degrees C) growth on biphenyl. Two psychrotolerant isolates extensively degraded Aroclor 1221 at 7 degrees C (54 to 60% removal). The soil microflora and psychrotolerant isolates degraded all mono-, most di-, and some trichlorobiphenyl congeners. The results suggest that PCB pollution selected for biphenyl-mineralizing microorganisms in Arctic soils. While low temperatures severely limited Aroclor 1221 removal in slurries of Arctic soils, results with pure cultures suggest that more effective PCB biodegradation is possible under appropriate conditions.
机译:我们研究了土著北极土壤微生物对联苯和市售多氯联苯(PCB)混合物Aroclor 1221的降解,以评估土壤微生物对PCB污染的反应以及该微生物对生物修复的潜力。在土壤泥浆中,北极土壤微生物区系和温带土壤微生物区系具有相似的矿化[14C]联苯的潜力。与被未污染的北极土壤的泥浆相比,被多氯联苯污染的北极土壤的矿化开始得更快,而且范围更广。在30摄氏度和7摄氏度下,最大的矿化速率通常分别为干燥土壤1天1联苯的1.2至1.4和0.52至1.0毫克。受PCB污染的北极土壤在30摄氏度(71至76%的去除率)下降解的Aroclor 1221比在7摄氏度(14至40%的去除率)下降解程度更大。我们从北极土壤中分离出能够在联苯上增加抗精神病药(在7至30摄氏度下生长)或嗜酸性(在7至15摄氏度下生长)的生物。两种抗精神病病毒分离株在7摄氏度下会大量降解Aroclor 1221(去除54%至60%)。土壤微生物区系和抗精神病菌的分离物降解了所有单,大部分二氯和一些三氯联苯同源物。结果表明,PCB污染是为北极土壤中联苯矿化微生物选择的。虽然低温严重限制了北极土壤泥浆中Aroclor 1221的去除,但纯培养物的结果表明,在适当的条件下,更有效的PCB生物降解是可能的。

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