首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Biodegradation of the gasoline oxygenates methyl tert-butyl ether ethyl tert-butyl ether and tert-amyl methyl ether by propane-oxidizing bacteria.
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Biodegradation of the gasoline oxygenates methyl tert-butyl ether ethyl tert-butyl ether and tert-amyl methyl ether by propane-oxidizing bacteria.

机译:汽油可通过丙烷氧化细菌氧化降解甲基叔丁基醚乙基叔丁基醚和叔戊基甲基醚。

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摘要

Several propane-oxidizing bacteria were tested for their ability to degrade gasoline oxygenates, including methyl tert-butyl ether (MTBE), ethyl tert-butyl ether (ETBE), and tert-amyl methyl ether (TAME). Both a laboratory strain and natural isolates were able to degrade each compound after growth on propane. When propane-grown strain ENV425 was incubated with 20 mg of uniformly labeled [14C]MTBE per liter, the strain converted > 60% of the added MTBE to 14CO2 in < 30 h. The initial oxidation of MTBE and ETBE resulted in the production of nearly stoichiometric amounts of tert-butyl alcohol (TBA), while the initial oxidation of TAME resulted in the production of tert-amyl alcohol. The methoxy methyl group of MTBE was oxidized to formaldehyde and ultimately to CO2. TBA was further oxidized to 2-methyl-2-hydroxy-1-propanol and then 2-hydroxy isobutyric acid; however, neither of these degradation products was an effective growth substrate for the propane oxidizers. Analysis of cell extracts of ENV425 and experiments with enzyme inhibitors implicated a soluble P-450 enzyme in the oxidation of both MTBE and TBA. MTBE was oxidized to TBA by camphor-grown Pseudomonas putida CAM, which produces the well-characterized P-450cam, but not by Rhodococcus rhodochrous 116, which produces two P-450 enzymes. Rates of MTBE degradation by propane-oxidizing strains ranged from 3.9 to 9.2 nmol/min/mg of cell protein at 28 degrees C, whereas TBA was oxidized at a rate of only 1.8 to 2.4 nmol/min/mg of cell protein at the same temperature.
机译:测试了几种丙烷氧化细菌降解汽油中含氧化合物的能力,包括甲基叔丁基醚(MTBE),乙基叔丁基醚(ETBE)和叔戊基甲基醚(TAME)。在丙烷上生长后,实验室菌株和天然分离株均能够降解每种化合物。当丙烷生长的菌株ENV425与每升20 mg均匀标记的[14C] MTBE孵育时,该菌株在不到30小时的时间内将添加的MTBE的60%以上转化为14CO2。 MTBE和ETBE的初始氧化导致产生近化学计量的叔丁醇(TBA),而TAME的初始氧化导致产生叔戊醇。 MTBE的甲氧基甲基被氧化为甲醛,最终氧化为CO2。将TBA进一步氧化成2-甲基-2-羟基-1-丙醇,然后氧化成2-羟基异丁酸;然而,这些降解产物都不是丙烷氧化剂的有效生长底物。 ENV425细胞提取物的分析和酶抑制剂的实验表明,MTBE和TBA的氧化过程中都含有可溶性P-450酶。 MTBE被樟脑种植的恶臭假单胞菌CAM氧化为TBA,可生产出特性良好的P-450cam,但未被杜鹃红球菌116生成两种P-450酶。在28摄氏度下,丙烷氧化菌株对MTBE的降解速率为3.9至9.2 nmol / min / mg细胞蛋白,而在同一温度下,TBA的氧化速度仅为1.8至2.4 nmol / min / mg细胞蛋白。温度。

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