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首页> 外文期刊>Applied and Environmental Microbiology >Anaerobic Degradation of Benzene, Toluene, Ethylbenzene, and Xylene Compounds by Dechloromonas Strain RCB
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Anaerobic Degradation of Benzene, Toluene, Ethylbenzene, and Xylene Compounds by Dechloromonas Strain RCB

机译:脱氯单胞菌RCB厌氧降解苯,甲苯,乙苯和二甲苯化合物

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Dechloromonas strain RCB has been shown to be capable of anaerobic degradation of benzene coupled to nitrate reduction. As a continuation of these studies, the metabolic versatility and hydrocarbon biodegradative capability of this organism were investigated. The results of these revealed that in addition to nitrate, strain RCB could alternatively degrade benzene both aerobically and anaerobically with perchlorate or chlorate [(per)chlorate] as a suitable electron acceptor. Furthermore, with nitrate as the electron acceptor, strain RCB could also utilize toluene, ethylbenzene, and all three isomers of xylene (ortho-, meta-, and para-) as electron donors. While toluene and ethylbenzene were completely mineralized to CO2, strain RCB did not completely mineralize para-xylene but rather transformed it to some as-yet-unidentified metabolite. Interestingly, with nitrate as the electron acceptor, strain RCB degraded benzene and toluene concurrently when the hydrocarbons were added as a mixture and almost 92 μM total hydrocarbons were oxidized within 15 days. The results of these studies emphasize the unique metabolic versatility of this organism, highlighting its potential applicability to bioremediative technologies.
机译:已证明脱氯莫纳斯菌RCB能够对苯进行厌氧降解并降低硝酸盐的含量。作为这些研究的继续,研究了该生物的代谢多功能性和碳氢化合物的生物降解能力。这些结果表明,除了硝酸盐外,RCB菌株还可以用高氯酸盐或氯酸盐((全)氯酸盐)作为合适的电子受体,在好氧和厌氧条件下降解苯。此外,使用硝酸盐作为电子受体,RCB菌株还可以利用甲苯,乙苯和二甲苯的所有三种异构体(邻位,间位和对位)作为电子供体。尽管甲苯和乙苯已完全矿化为CO2,但RCB菌株并未将对二甲苯完全矿化,而是将其转化为某些尚未鉴定的代谢物。有趣的是,当硝酸盐作为电子受体时,RCB菌株在混合物中加入烃并在15天内将近92μM的总烃氧化时,RCB会同时降解苯和甲苯。这些研究的结果强调了该生物体独特的代谢多功能性,强调了其对生物修复技术的潜在适用性。

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