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首页> 外文期刊>Archives of microbiology >Phenyl methyl ethers: novel electron donors for respiratory growth of Desulfitobacterium hafniense and Desulfitobacterium sp. strain PCE-S.
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Phenyl methyl ethers: novel electron donors for respiratory growth of Desulfitobacterium hafniense and Desulfitobacterium sp. strain PCE-S.

机译:苯甲基醚:Hafniense和Desulfitobacterium sp。呼吸生长的新型电子供体。 PCE-S株。

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Desulfitobacterium hafniense and Desulfitobacterium sp. strain PCE-S grew under anoxic conditions with a variety of phenyl methyl ethers as electron donors in combination with fumarate as electron acceptor. The phenyl methyl ethers were O-demethylated to the corresponding phenol compounds. O-demethylation was strictly dependent on the presence of fumarate; no O-demethylation occurred with CO2 as electron acceptor. One mol phenyl methyl ether R-O-CH3 was O-demethylated to R-OH per 3 mol fumarate reduced to succinate. The growth yields with vanillate or syringate plus fumarate were approximately 15 g cells (dry weight) per mol methyl moiety converted. D. hafniense utilized vanillate or syringate as an electron donor for reductive dehalogenation of 3-Cl-4-hydroxyphenylacetate, whereas strain PCE-S was not able to dechlorinate tetrachloroethene with phenyl methyl ethers. Crude extracts of both organisms showed O-demethylase activity in the O-demethylase assay with vanillate or syringate as substrates when the organism was grown on syringate plus fumarate. Besides the homoacetogenic bacteria, only growing cells of Desulfitobacterium frappieri PCP-1 have thus far been reported to be capable of phenyl methyl ether O-demethylation. This present study is the first report of Desulfitobacteria utilizing phenyl methyl ethers as electron donors for fumarate reduction and for growth.
机译:Hafniense脱硫杆菌和Sp。 PCE-S菌株在缺氧条件下以各种苯基甲基醚作为电子供体,并结合富马酸酯作为电子受体生长。将苯基甲基醚O-去甲基化为相应的酚化合物。 O-去甲基化严格取决于富马酸酯的存在。以CO 2为电子受体时,没有发生O-脱甲基。每3mol富马酸酯还原为琥珀酸酯,将1mol苯基甲基醚R-O-CH 3 O-去甲基化为R-OH。香草醛或丁香酸酯加富马酸酯的生长产量为每mol转化的甲基部分约15 g细胞(干重)。哈弗氏梭菌利用香草酸酯或丁香酸酯作为电子供体,用于3-Cl-4-羟基苯乙酸的还原脱卤,而菌株PCE-S不能用苯基甲基醚对四氯乙烯进行脱氯。当该生物体在丁香酸酯和富马酸酯上生长时,两种生物的粗提物在O-脱甲基酶测定中均以香草酸酯或丁香酸酯为底物显示O-脱甲基酶活性。除同型产乙酸菌外,迄今仅报道了frappieri frappieri PCP-1的生长细胞能够进行苯基甲基醚O-去甲基化。这项研究是脱硫细菌利用苯甲基醚作为富马酸盐还原和增长的电子供体的第一个报告。

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