Camargo F A O, Bento F M, Okeke B C, Frankenberger W T
Department of Environmental Science, Univ. of California, Riverside, CA 92521, USA.
J Environ Qual. 2003 Jul-Aug;32(4):1228-33. doi: 10.2134/jeq2003.1228.
Extensive use of hexavalent chromium [Cr(VI)] in various industrial applications has caused substantial environmental contamination. Chromium-resistant bacteria isolated from soils can be used to remove toxic Cr(VI) from contaminated environments. This study was conducted to isolate chromium-resistant bacteria from soils contaminated with dichromate and describes the effects of some environmental factors such as pH, temperature, and time on Cr(VI) reduction and resistance. We found that chromium-resistant bacteria can tolerate 2500 mg L(-1) Cr(VI), but most of the isolates tolerated and reduced Cr(VI) at concentrations lower than 1500 mg L(-1). Chromate reduction activity of whole cells was detected in five isolates. Most of these isolates belong to the genus Bacillus as identified by the 16S rRNA gene sequencing. Maximal Cr(VI) reduction was observed at the optimum pH (7.0-9.0) and temperature (30 degrees C) of growth. One bacterial isolate (Bacillus sp. ES 29) was able to aerobically reduce 90% of Cr(VI) in six hours. The Cr(VI) reduction activity of the whole cells of five isolates had a K(M) of 0.271 (2.61 mM) to 1.51 mg L(-1) (14.50 mM) and a V(max) of 88.4 (14.17 nmol min(-1)) to 489 mg L9-1) h(-1) (78.36 nmol min(-1)). Our consortia and monocultures of these isolates can be useful for Cr(VI) detoxification at low and high concentrations in Cr(VI)-contaminated environments and under a wide range of environmental conditions.
六价铬[Cr(VI)]在各种工业应用中的广泛使用已造成严重的环境污染。从土壤中分离出的耐铬细菌可用于从受污染环境中去除有毒的Cr(VI)。本研究旨在从被重铬酸盐污染的土壤中分离耐铬细菌,并描述一些环境因素(如pH值、温度和时间)对Cr(VI)还原和抗性的影响。我们发现耐铬细菌能够耐受2500 mg L(-1)的Cr(VI),但大多数分离株在低于1500 mg L(-1)的浓度下耐受并还原Cr(VI)。在五个分离株中检测到全细胞的铬酸盐还原活性。通过16S rRNA基因测序鉴定,这些分离株大多属于芽孢杆菌属。在生长的最佳pH值(7.0 - 9.0)和温度(30摄氏度)下观察到最大的Cr(VI)还原。一种细菌分离株(芽孢杆菌属ES 29)能够在六小时内好氧还原90%的Cr(VI)。五个分离株全细胞的Cr(VI)还原活性的米氏常数(K(M))为0.271(2.61 mM)至1.51 mg L(-1)(14.50 mM),最大反应速率(V(max))为88.4(14.17 nmol min(-1))至489 mg L9-1) h(-1)(78.36 nmol min(-1))。我们的这些分离株的混合培养物和单一培养物可用于在Cr(VI)污染环境中的低浓度和高浓度Cr(VI)解毒以及在广泛的环境条件下。