首页> 外文期刊>Microbiology >Degradation of trichloroethene by a linear-plasmid-encoded alkene monooxygenase in Rhodococcus corallinus (Nocardia corallina) B-276
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Degradation of trichloroethene by a linear-plasmid-encoded alkene monooxygenase in Rhodococcus corallinus (Nocardia corallina) B-276

机译:rhodococcus corallinus(Nocardia corallina)B-276中的直链质粒编码烯烃单氧化酶降解三氯乙烯

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Rhodococcus corallinus (formerly Nocardia corallina) B-276, isolated with propene as sole carbon and energy source, is able to oxidize trichloroethene (TCE). Glucose- or propene-grown R. corallinus B-276 cells exhibited no difference in TCE degradation efficiency. TCE degradation was found to be growth-phase-dependent and maximum rates were monitored with stationary-phase cells. Km and Vmax values for TCE degradation of R. corallinus B-276 grown in nutrient broth medium in the presence of glucose were 187 μM and 2·4 nmol min-1 (mg protein)-1, respectively. Escherichia coli recombinants harbouring and expressing the alkene monooxygenase genes of R. corallinus B-276 exhibited the ability to degrade TCE. This result provides clear evidence that the alkene monooxygenase of R. corallinus B-276 catalyses TCE oxidation. R. corallinus B-276 was shown to contain four linear plasmids, pNC10 (70 kb), pNC20 (85 kb), pNC30 (185 kb) and pNC40 (235 kb). The observation that pNC30-deficient strains had lost the ability to grow on propene suggested that the genes of the propene degradation pathway are encoded by the linear plasmid pNC30. Southern blot analysis with cloned alkene monooxygenase genes from R. corallinus B-276 revealed a positive hybridization signal with the linear plasmid pNC30. This result clearly shows that the alkene monooxygenase is encoded by the linear plasmid pNC30. Eleven short-chain-alkene-oxidizing strains were screened for the presence of linear plasmids. Among these, four propene-oxidizing Rhodococcus strains and one ethene-oxidizing Mycobacterium strain were found to contain linear megaplasmids. Southern blot analysis with the alkene monooxygenase revealed positive signals with linear plasmids of two propene-oxidizing Rhodococcus ruber strains. These results indicate that homologous alkene monooxygenases are encoded by linear plasmids in R. ruber strains.
机译:rhodococcus corallinus(以前是Nocardia corallina)B-276,用丙烯作为唯一碳和能源分离,能够氧化三氯乙烯(TCE)。葡萄糖或丙烯生长的R.Corallinus B-276细胞在TCE降解效率上表现出没有差异。发现TCE降解是生长相位依赖性的,并用固定相细胞监测最大速率。在葡萄糖存在下,在营养肉汤中生长的R. Corallinus B-276的TCE降解的KM和VMAX值分别为187μm和2·4nmol min-1(mg蛋白)-1。窝窝和表达R. Corallinus B-276的烯烃单氧基酶基因的大肠杆菌重组表现出降解TCE的能力。该结果提供了明确的证据表明R.Corallinus B-276催化TCE氧化的烯烃单氧基酶。显示R. Corallinus B-276含有四种直链质粒,PNC10(70kb),PNC20(85kb),PNC30(185kb)和PNC40(235kb)。观察到PNC30缺陷型菌株在丙烯上生长的能力表明,丙烯降解途径的基因由线性质粒PNC30编码。来自R.Corallinus B-276的克隆烯烃单氧化酶基因的Southern印迹分析显示,具有线性质粒PNC30的正杂交信号。该结果清楚地表明,烯烃单氧化酶由线性质粒PNC30编码。筛选11个短链 - 烯烃氧化菌株用于线性质粒的存在。其中,发现四种促进的氧化rhodococcus菌株和一种氧化氧化分枝杆菌菌株含有线性凸蛋白。与烯烃单氧化酶的南部印迹分析显示出两种丙烯氧化rhodococcus ruber菌株的线性质粒的正信号。这些结果表明,同源烯烃单氧基酶通过R.Ruber菌株中的线性质粒编码。

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