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石油烃污染土壤的原位生物修复:红球菌菌株的分离与应用

In situ bioremediation of petroleum hydrocarbon-contaminated soil: isolation and application of a Rhodococcus strain.

作者信息

Chen Xin, Shan Guangbo, Shen Jiamin, Zhang Feng, Liu Yongdi, Cui Changzheng

机构信息

State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control On Chemical Process, School of Resources and Environmental Engineering, East China University of Science and Technology, Shanghai, 200237, China.

Dalian Research Institute of Petroleum and Petrochemicals, SINOPEC, Dalian, 116041, China.

出版信息

Int Microbiol. 2023 May;26(2):411-421. doi: 10.1007/s10123-022-00305-1. Epub 2022 Dec 9.

Abstract

Due to low consumption and high efficiency, in situ microbial remediation of petroleum hydrocarbons (PHs)-contaminated sites in in-service petrochemical enterprises has attracted more and more attention. In this study, a degrading strain was isolated from oil depot-contaminated soil with soil extract (PHs) as the sole carbon source, identified and named Rhodococcus sp. OBD-3. Strain OBD-3 exhibited wide adaptability and degradability over a wide range of temperatures (15-37 °C), pH (6.0-9.0), and salinities (1-7% NaCl) to degrade 60.6-86.6% of PHs. Under extreme conditions (15 °C and 3-7% salinity), PHs were degraded by 60.6 ± 8.2% and more than 82.1% respectively. In OBD-3, the alkane monooxygenase genes alkB1 and alkB2 (GenBank accession numbers: MZ688386 and MZ688387) were found, which belonged to Rhodococcus by sequence alignment. Moreover, strain OBD-3 was used in lab scale remediation in which the contaminated soil with OBD-3 was isolated as the remediation object. The PHs were removed at 2,809 ± 597 mg/kg within 2 months, and the relative abundances of Sphingobium and Pseudomonas in soil increased more than fivefold. This study not only established a system for the isolation and identification of indigenous degrading strains that could efficiently degrade pollutants in the isolated environment but also enabled the isolated degrading strains to have potential application prospects in the in situ bioremediation of PHs-contaminated soils.

摘要

由于消耗低、效率高,在职石化企业中石油烃污染场地的原位微生物修复越来越受到关注。在本研究中,以土壤提取物(石油烃)作为唯一碳源,从油库污染土壤中分离出一株降解菌,经鉴定命名为红球菌属OBD-3。菌株OBD-3在较宽的温度范围(15-37℃)、pH范围(6.0-9.0)和盐度范围(1-7%NaCl)内表现出广泛的适应性和降解能力,可降解60.6-86.6%的石油烃。在极端条件下(15℃和3-7%盐度),石油烃的降解率分别为60.6±8.2%和超过82.1%。在OBD-3中,发现了烷烃单加氧酶基因alkB1和alkB2(GenBank登录号:MZ688386和MZ688387),经序列比对属于红球菌属。此外,将菌株OBD-3用于实验室规模的修复,以受污染土壤与OBD-3的混合物作为修复对象。2个月内石油烃去除量为2809±597mg/kg,土壤中鞘氨醇单胞菌属和假单胞菌属的相对丰度增加了五倍多。本研究不仅建立了一个在隔离环境中高效降解污染物的本土降解菌株的分离鉴定体系,还使分离出的降解菌株在石油烃污染土壤的原位生物修复中具有潜在的应用前景。

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