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首页> 外文期刊>Folia microbiologica >Degradation of benzene, toluene, and xylene isomers by a bacterial consortium obtained from rhizosphere soil of Cyperus sp grown in a petroleum-contaminated area
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Degradation of benzene, toluene, and xylene isomers by a bacterial consortium obtained from rhizosphere soil of Cyperus sp grown in a petroleum-contaminated area

机译:细菌财团对苯,甲苯和二甲苯异构体的降解,该财团从生长在石油污染区的莎草属的根际土壤中获得

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摘要

Increasing contamination of soil and groundwater with benzene, toluene, and xylene (BTX) due to activities of the chemical and oil refinery industry has caused serious environmental damage. Efficient methods are required to isolate and degrade them. Microorganisms associated with rhizosphere soil are considered efficient agents to remediate hydrocarbon contamination. In this study, we obtained a stabilized bacterial consortium from the rhizosphere soil of Cyperus sp. grown in a petroleum-contaminated field in Southern Mexico. This consortium was able to completely degrade BTX in 14 days. Bacteria isolated from the consortium were identified by 16S rRNA gene sequence analysis as Ralstonia insidiosa, Cellulomonas hominis, Burkholderia kururiensis, and Serratia marcescens. The BTX-degradation capacity of the bacterial consortium was confirmed by the detection of genes pheA, todC1, and xylM, which encoded phenol hydroxylase, toluene 1,2-dioxygenase, and xylene monooxygenase, respectively. Our results demonstrate feasibility of BTX biodegradation by indigenous bacteria that might be used for soil remediation in Southern Mexico.
机译:由于化学和炼油业的活动,苯,甲苯和二甲苯(BTX)对土壤和地下水的污染日益增加,已经对环境造成了严重破坏。需要有效的方法来分离和降解它们。与根际土壤相关的微生物被认为是补救烃污染的有效剂。在这项研究中,我们从莎草属的根际土壤中获得了稳定的细菌聚生体。种植在墨西哥南部受石油污染的田地里。该财团能够在14天内完全降解BTX。通过16S rRNA基因序列分析,从该财团中分离出的细菌被鉴定为Ralstonia insidiosa,Cellulomonas hominis,Burkholderia kururiensis和Serratia marcescens。通过检测分别编码苯酚羟化酶,甲苯1,2-二加氧酶和二甲苯单加氧酶的pheA,todC1和xylM基因,证实了细菌财团的BTX降解能力。我们的结果证明了由本地细菌进行BTX生物降解的可行性,该细菌可能用于墨西哥南部的土壤修复。

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