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首页> 外文期刊>Journal of Bioscience and Bioengineering >Isolation and Quantitative Detection of Tetrachloroethene(PCE)-Dechlorinating Bacteria in Unsaturated Subsurface Soils Contaminated with Chloroethenes
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Isolation and Quantitative Detection of Tetrachloroethene(PCE)-Dechlorinating Bacteria in Unsaturated Subsurface Soils Contaminated with Chloroethenes

机译:四氯乙烯(PCE)脱氯细菌污染的不饱和地下土壤中的分离和定量检测

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摘要

The estimation of tetrachloethene(PCE)dechlorinating-activity and identification of PCE-dechlorinating bacteria were performed in 65 unsaturated subsurface soils(at a depth 30-60 cm)that were collected from 21 noncontaminated soils and 44 chloroethene-contaminated soils including four soils that dechlorinated PCE to 1,2-cis-dichloroethene(cisDCE)in situ.Sixteen out of the 44 PCE-contaminated soils and three out of the 21 noncontaminated soils dechlorinated PCE to trichloroethene and cisDCE but not vinyl chloride or ethene after a month of incubation with 0.1% yeast extract at 30 deg C.Desuljitobacterium sp.strain B31e3 that can dechlorinate PCE to cisDCE was isolated from a soil that dechlorinated PCE to cisDCE in situ.16S rRNA gene of this strain showed the closest similarity of 99.1% with that of Desuljitobacterium hafniense(formally frappieri)strain DP7.Real-time PCR using specific primer sets targeted to the 16S rRNA genes of the representative PCE-dechlorinating bacteria,Dehalococcoides spp.,Desuljitobacterium spp.,and Dehalobacter spp.were performed using five unsaturated subsurface soils that dechlorinated PCE and three that did not dechlorinate PCE.In two out of the five soils that dechlorinated PCE,Desuljitobacterium spp.(0.12,0.38% of total bacteria)and Dehalobacter spp.(0.0045,0.0061% of total bacteria)were detected,and in one of the five soils,only Desuljitobacterium spp.(0.042% of total bacteria)was detected.None of these representative PCE-dechlorinating bacteria were detected in two out of the five soils that dechlorinated PCE and in all of the three soils that did not dechlorinate PCE.Dehalococcoides spp.were not detected in any unsaturated subsurface soils used in this study.These results suggested the involvement of Desuljitobacterium spp.and probably Dehalobacter spp.rather than Dehalococcoides spp.in the dechlorination of PCE to cisDCE in unsaturated subsurface soils.
机译:在从21个未污染的土壤和44个氯乙烯污染的土壤中收集了65种不饱和的地下土壤(深度30-60 cm),对四氯乙烯(PCE)的脱氯活性进行了估计并鉴定了PCE脱氯细菌。孵育一个月后,在44种被PCE污染的土壤中,有十六种被PCE脱氯为1,2-顺式二氯乙烯(cisDCE)。在经过一个月的培养后,有44种PCE污染的土壤中有十六种被PCE脱除为三氯乙烯和cisDCE,但没有氯乙烯或乙烯。在30°C下用0.1%酵母提取物分离能将PCE脱氯为cisDCE的土壤脱硫芽孢杆菌B31e3菌株。该菌株的16S rRNA基因与BSC的16S rRNA基因最相似,为99.1%。 Hafniense(正式为frappieri)菌株DP7。使用特异引物组的实时PCR,该引物针对代表性的PCE脱氯细菌Dehalococ的16S rRNA基因使用五个对PCE进行了脱氯的不饱和地下土壤和三个未对PCE进行脱氯的不饱和土壤进行了Coides,Desuljitobacterium spp。和Dehalobacter spp。在五个对PCE进行脱氯的土壤中,其中两个对Desuljitobacterium spp。(0.12,0.38%检出的细菌总数为Dealobacter spp。(占细菌总数的0.0045,0.0061%),在五种土壤之一中,仅检出Desuljitobacter spp。(占细菌总数的0.042%)。这些代表性的PCE脱氯细菌均未检出。在五种对PCE进行脱氯的土壤中以及在所有三种未对PCE进行脱氯的土壤中都检测到了Dehalococcoides spp。,在本研究中使用的任何不饱和地下土壤中均未检测到Dehalococcoides spp。这些结果表明Desuljitobacterium spp.and可能是在不饱和地下土壤中PCE脱氯为cisDCE时用Dehalobacter spp。而不是Dehalococcoides spp.。

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