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首页> 外文期刊>Applied and Environmental Microbiology >Hydroxylation and biodegradation of 6-methylquinoline by pseudomonads in aqueous and nonaqueous immobilized-cell bioreactors.
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Hydroxylation and biodegradation of 6-methylquinoline by pseudomonads in aqueous and nonaqueous immobilized-cell bioreactors.

机译:假单胞菌在水性和非水性固定细胞生物反应器中对6-甲基喹啉进行羟基化和生物降解。

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摘要

Selective culturing of pseudomonads that could degrade quinoline led to enrichment cultures and pure cultures with expanded substrate utilization and transformation capabilities for substituted quinolines in immobilized and batch cultures. Immobilized cells of the pseudomonad cultures rapidly transformed quinolines to hydroxyquinolines in bioreactors and were able to tolerate higher substrate concentrations compared with batch cultures. After prolonged incubation on a mixture of quinoline and 6-methylquinoline, a quinoline-degrading culture of Pseudomonas putida developed the ability to biodegrade 6-methylquinoline, which initially was resistant to microbial attack, as a sole source of carbon and energy. 6-Methylquinoline was also degraded in a nonaqueous solution by this strain of P. putida when a solution of 6-methylquinoline in decane was flowed through an immobilized-cell fixed-bed bioreactor.
机译:可以降解喹啉的假单胞菌的选择性培养导致固定培养和分批培养中富集培养物和纯培养物具有扩大的底物利用率和对取代喹啉的转化能力。与分批培养相比,假单胞菌培养物的固定化细胞在生物反应器中迅速将喹啉转化为羟基喹啉,并且能够耐受更高的底物浓度。在喹啉和6-甲基喹啉的混合物上长时间温育后,恶臭假单胞菌的喹啉降解培养物开发了生物降解6-甲基喹啉的能力,该微生物最初是抗微生物攻击的,是唯一的碳和能量来源。当6-甲基喹啉在癸烷中的溶液流过固定细胞固定床生物反应器时,这种恶臭假单胞菌菌株在非水溶液中也降解了6-甲基喹啉。

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