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首页> 外文期刊>The Indian Journal of Agricultural Sciences >Genetic and metabolic profiling of pentachlorophenol utilizing bacteria from agricultural soil irrigated with pulp and paper mill effluent.
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Genetic and metabolic profiling of pentachlorophenol utilizing bacteria from agricultural soil irrigated with pulp and paper mill effluent.

机译:利用纸浆和造纸厂废水灌溉的农业土壤中的细菌对五氯苯酚进行遗传和代谢分析。

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摘要

Pulp and paper mill is a source of major environmental pollutants generating industries which include pentachlorophenol a highly chlorinated aromatic compound. PCP degrading bacterial isolates obtained from pulp and paper mill effluent contaminated site were characterised using amplified ribosomal DNA restriction analysis of 16S rRNA gene. Based on cluster analysis the representative 13 isolates were identified by partial 16S rRNA gene sequencing. These PCP degrading bacterial isolates were classified into four major bacterial lineages, alpha , beta , gamma -Proteobacteria and Firmicutes. The PCPmax and IC50 values of these isolates ranged from 100 to 300 mg PCP/l and 125 to 375 mg PCP/l respectively. Pseudomonas aeruginosa (PCP1) and Pseudomonas sp (PCP42) exhibited maximum PCPmax and IC50 value. Degradation of PCP by these isolates at their respective PCPmax ranged from 67.25% to 72.98% as analysed by the HPLC. Metabolic substrate usage of the isolates was evaluated using the BIOLOGTM ECO plates and unique carbon substrate usage profiles were observed. PCP degrading isolates, Azospirillum (PCP13 and PCP16) and Inquilinus limosus (PCP 27) were reported for the first time, these might represent new chlorophenol-degrading taxa.
机译:纸浆和造纸厂是主要的环境污染物产生工业的来源,其中包括五氯苯酚(一种高度氯化的芳族化合物)。从纸浆和造纸厂废水污染位点获得的降解PCP的细菌分离株,通过对16S rRNA基因进行的核糖体DNA限制性酶切分析来表征。基于聚类分析,通过部分16S rRNA基因测序鉴定了代表性的13个分离株。这些降解PCP的细菌分离株分为四个主要细菌谱系,α,β,γ-变形杆菌和Firmicutes。这些分离物的PCP max 和IC 50 值分别为100至300 mg PCP / l和125至375 mg PCP / l。铜绿假单胞菌(PCP1)和假单胞菌(PCP42)表现出最大的PCP max 和IC 50 值。通过HPLC分析,这些分离物在其各自的PCP max 下的PCP降解范围为67.25%至72.98%。使用BIOLOG TM ECO平板评估分离物的代谢底物使用情况,并观察到独特的碳底物使用情况。首次报道了降解五氯苯酚的分离株,拟螺螺旋菌(PCP13和PCP16)和In兰(Inquilinus limosus)(PCP 27),它们可能代表了新的降解氯酚的分类单元。

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