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Enhancement of microbial 2,4,6-trinitrotoluene transformation with increased toxicity by exogenous nutrient amendment

机译:通过外源营养改良剂增强微生物2,4,6-三硝基甲苯转化并增加毒性

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In this study, the bacterial strain Citrobacter youngae strain E4 was isolated from 2,4,6-trinitrotoluene (TNT) contaminated soil and used to assess the capacity of TNT transformation with/without exogenous nutrient amendments. C. youngae E4 poorly degraded TNT without an exogenous amino nitrogen source, whereas the addition of an amino nitrogen source considerably increased the efficacy of TNT transformation in a dose dependent manner. The enhanced TNT transformation of C. youngae E4 was mediated by increased cell growth and up-regulation of TNT nitroreductases, including NemA, NfsA and NfsB. This result indicates that the increase in TNT transformation by C. youngae E4 via nitrogen nutrient stimulation is a cometabolism process. Consistently, TNT transformation was effectively enhanced when C. youngae E4 was subjected to a TNT contaminated soil slurry in the presence of an exogenous amino nitrogen amendment. Thus, effective enhancement of TNT transformation via the coordinated inoculation of the nutrient-responsive C. youngae E4 and an exogenous nitrogen amendment might be applicable for the remediation of TNT-contaminated soil. Although the TNT transformation was significantly enhanced by C. youngae E4 in concert with biostimulation, the 96-h LC50 value of the TNT transformation product mixture on the aquatic invertebrate Tigriopus japonicas was higher than the LC50 value of TNT alone. Our results suggest that exogenous nutrient amendment can enhance microbial TNT transformation; however, additional detoxification processes may be needed due to the increased toxicity after reduced TNT transformation.
机译:在这项研究中,从2,4,6-三硝基甲苯(TNT)污染的土壤中分离出了幼小的柠檬酸杆菌E4菌株,并用于评估有/无外源养分改良剂的TNT转化能力。在没有外源氨基氮源的情况下,小球藻E4降解TNT的能力很差,而添加氨基氮源则以剂量依赖的方式大大提高了TNT转化的功效。 C.youngae E4的TNT转化增强是由细胞生长增加和TNT硝基还原酶(包括NemA,NfsA和NfsB)的上调介导的。该结果表明,通过氮营养刺激,由年轻小球藻E4引起的TNT转化的增加是一种新陈代谢过程。一致地,当在外源性氨基氮改性剂的存在下,将小球藻E4置于受TNT污染的土壤泥浆中时,可有效增强TNT转化。因此,通过协调接种营养敏感的小球藻E4和外源氮改良剂,有效增强TNT转化可能适用于TNT污染土壤的修复。尽管C.youngae E4与生物刺激协同作用显着增强了TNT转化,但是在水生无脊椎动物Tigriopus japonicas上,TNT转化产物混合物的96小时LC50值高于单独的TNT的LC50值。我们的研究结果表明,外源营养改良剂可以增强微生物的TNT转化。但是,由于减少的TNT转化后毒性增加,可能需要其他解毒过程。

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