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首页> 外文期刊>Applied and Environmental Microbiology >Isolation and Metabolic Characterization of a Pseudomonas stutzeri Mutant Able To Grow on the Three Isomers of Xylene.
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Isolation and Metabolic Characterization of a Pseudomonas stutzeri Mutant Able To Grow on the Three Isomers of Xylene.

机译:能够在二甲苯的三种异构体上生长的斯氏假单胞菌突变体的分离和代谢特征。

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From an o-xylene-degrading Pseudomonas stutzeri strain (OX1), we previously isolated mutant M1, which had acquired the ability to grow on m-xylene and p-xylene but lost the ability to utilize the ortho isomer. From M1 cultures we have now isolated a revertant strain (R1) which grows on o-xylene and retains the ability to grow with the meta and para isomers regardless of the selective pressure applied. In P. stutzeri R1, o-xylene is degraded through two successive monooxygenations of the aromatic ring, while m-xylene and p-xylene catabolism proceeds through the progressive oxidation of a methyl substituent, although unquantifiable amounts of these two substrates are transformed into the corresponding dimethylphenols, which are not utilized for further growth. The two catabolic pathways are inducible by all three xylene isomers.
机译:我们从降解邻二甲苯的斯氏假单胞菌菌株(OX1)中分离了突变体M1,该突变体具有在间二甲苯和对二甲苯上生长的能力,但失去了利用邻位异构体的能力。现在,从M1培养物中分离出了可在邻二甲苯上生长的回复菌株(R1),无论使用何种选择性压力,该菌株都保持了与间位和对位异构体一起生长的能力。在Stutzeri R1中,邻二甲苯通过芳香环的两次连续单加氧反应而降解,而间二甲苯和对二甲苯的分解代谢通过甲基取代基的逐步氧化而进行,尽管这两种底物的数量无法定量地转化为相应的二甲基苯酚,不用于进一步生长。所有三种二甲苯异构体均可诱导这两种分解代谢途径。

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