Department of Biochemical Engineering, Dongyang Mirae University, 62-160 Gocheok Guro Seoul 152-714, Republic of Korea.
Talanta. 2011 Sep 30;85(4):1778-82. doi: 10.1016/j.talanta.2011.07.002. Epub 2011 Jul 7.
Trichloroethylene (TCE) is a toxic, recalcitrant groundwater pollutant. TCE-degrading microorganisms were isolated from various environments. The aerobic bacteria isolated from toluene- and tryptophan-containing media were Pseudomonas sp. strain ASA86 and Burkholderia sp. strain TAM17, respectively; these are necessary for inducing TCE biodegradation in a selective medium. The half-degradation time of TCE to a concentration of 1mg/L was 18 h for strain ASA86 and 7 days for strain TAM17. While identifying toluene/TCE degradation genes, we found that in strain ASA86, the gene was the same as the todC1 gene product encoding toluene dioxygenase identified in Pseudomonas putida F1, and that in strain TAM17, the gene was similar to the tecA1 gene product encoding chlorobenzene dioxygenase identified in Burkholderia sp. PS12. A novel TCE biosensor was developed using strain ASA86 as the inducer of toluene under aerobic conditions. The TCE biosensor exhibited a linear relationship below 3 ppm TCE. Detection limit of the biosensor was 0.05 ppm TCE. The response time of the biosensor was less than 10 min. The biosensor response displayed a constant level during a 2 day period. The TCE biosensor displayed sufficient sensitivity for monitoring TCE in environmental systems.
三氯乙烯(TCE)是一种有毒、难降解的地下水污染物。已从各种环境中分离出可降解 TCE 的微生物。从甲苯和色氨酸培养基中分离出的需氧细菌分别为假单胞菌(Pseudomonas sp.)菌株 ASA86 和伯克霍尔德菌(Burkholderia sp.)菌株 TAM17;它们是在选择性培养基中诱导 TCE 生物降解所必需的。TCE 浓度从 1mg/L 降解到半量所需的时间,菌株 ASA86 为 18h,菌株 TAM17 为 7 天。在鉴定甲苯/TCE 降解基因时,我们发现,在菌株 ASA86 中,该基因与在恶臭假单胞菌 F1 中鉴定的编码甲苯双加氧酶的 todC1 基因产物相同,而在菌株 TAM17 中,该基因与在伯克霍尔德菌 PS12 中鉴定的编码氯苯双加氧酶的 tecA1 基因产物相似。利用菌株 ASA86 在需氧条件下作为甲苯的诱导剂,开发了一种新型 TCE 生物传感器。该 TCE 生物传感器在低于 3ppmTCE 时呈现线性关系。生物传感器的检测限为 0.05ppmTCE。生物传感器的响应时间小于 10min。在 2 天的时间内,生物传感器的响应呈稳定水平。该 TCE 生物传感器对环境系统中的 TCE 具有足够的灵敏度。