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Toxicity biomonitoring of degradation byproducts using freeze-dried recombinant bioluminescent bacteria

机译:使用冷冻干燥的重组生物发光细菌对降解副产物进行毒性生物监测

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摘要

A toxicity biomonitoring system using freeze-dried recombinant bioluminescent bacteria was implemented to diagnose the biotreatment of 2,4,5-trichlorophenol and its degradation byproducts of using a cell-free culture broth of Phanerochaete chrysosporium. The cellular toxicity ws measured by the bioluminescence of constitutive bioluminescent bacteria, such as Photobacterium phosphoreum and GC2, while information on the toxicity caused by unknown byproducts was obtained using the specific bioluminescent responses of stress-indicible bioluminescent bacteria, which included DPD2540(membrane-damage sensitive), TV1061 (protein-damage sensitive), DPD2794(DNA-damage sensitive), and DPD2511 (oxidative-damage sensitive) strains. An overall decrease in the cellular toxicity was observed as the treatment progressed i.e. as 2,4,5-trichlorophenol disappeared.On the other hand, bioluminescent responses from DPD2511, DPD2540, and TV1061 increased as degradation progressed, most probably due to the formation of byproducts causing oxidative-, membrane-, and protein-damage. In conclusion, this toxicity biomonitoring method may be applied to evaluate the toxicities of degradation byproducts of the other environmental processes to provide more information about the mode of the byproducts' toxicity.
机译:实施了使用冷冻干燥的重组生物发光细菌的毒性生物监测系统,以诊断使用Phanerochaete chrysosporium的无细胞培养液对2,4,5-三氯苯酚及其降解副产物的生物处理。细胞毒性是通过组成型生物发光细菌(例如,光致发光细菌和GC2)的生物发光来测量的,而未知副产物引起的毒性的信息是通过应力可指示的生物发光细菌的特定生物发光反应获得的,其中包括DPD2540(膜损伤)。敏感型),TV1061(蛋白质损坏敏感型),DPD2794(DNA损坏敏感型)和DPD2511(氧化损坏敏感型)菌株。随着处理的进行,细胞毒性总体下降,即2,4,5-三氯苯酚消失。另一方面,DPD2511,DPD2540和TV1061的生物发光响应随着降解的进行而增加,这很可能是由于形成了导致氧化,膜和蛋白质损坏的副产物。总之,该毒性生物监测方法可用于评估其他环境过程中降解副产物的毒性,以提供有关副产物毒性模式的更多信息。

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