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首页> 外文期刊>Biodegradation >Contribution to the Detection and Identification of Oxidation Metabolites of Nonylphenol in Sphingomonas sp. strain TTNP3
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Contribution to the Detection and Identification of Oxidation Metabolites of Nonylphenol in Sphingomonas sp. strain TTNP3

机译:有助于检测和鉴定鞘氨醇单胞菌中壬基酚氧化代谢产物。 TTNP3株

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摘要

Sphingomonas sp. strain TTNP3 has been previously described as a bacterium that is capable of degrading the technical mixture of nonylphenol (NP) isomers and also the 4(3',5'-dimethyl-3'-heptyl)-phenol single isomer of NP. Until recently, 3,5-dimethyl-3-heptanol was the only reported metabolite of 4(3',5'-dimethyl-3'-heptyl)-phenol. A short time ago, the detection of an intracellular metabolite resulting from the oxidation of 4(3',5'-dimethyl-3'-heptyl)-phenol which was identified as 2(3,5-dimethyl-3-heptyl)-benzenediol has been reported. A decisive element for this identification was the occurrence of some slight differences with the two most probable metabolites i.e. 4(3',5'-dimethyl-3'-heptyl)-resorcinol and 4(3',5'-dimethyl-3'-heptyl)-catechol. These facts led us to hypothesise some NIH shift mechanisms explaining the formation of 2(3',5'-dimethyl-3'-heptyl)-benzenediol. In the present work, we describe the steps that led to the detection of these metabolites in the intracellular fraction of Sphingomonas sp. strain TTNP3. The formation of analogous intracellular metabolites resulting from the degradation of the technical mixture of NP is reported. To further elucidate these degradation products, studies were carried out with cells grown with 4(3',5'-dimethyl-3'-heptyl)-phenol as sole carbon source. The description of the syntheses of reference compounds, i.e. 4(3',5'-dimethyl-3'-heptyl)-resorcinol and 4(3',5'-dimethyl-3'-heptyl)-catechol and their comparative analyses with the intermediates of the degradation of 4(3',5'-dimethyl-3'-heptyl)-phenol are presented.
机译:鞘氨醇单胞菌先前已经将TTNP3菌株描述为能够降解壬基酚(NP)异构体的技术混合物以及NP的4(3',5'-二甲基-3'庚基)-酚单异构体的细菌。直到最近,3,5-二甲基-3-庚醇是唯一报道的4(3',5'-二甲基-3'-庚基)-苯酚的代谢产物。不久前,检测到由4(3',5'-二甲基-3'-庚基)-苯酚氧化产生的细胞内代谢物,被鉴定为2(3,5-二甲基-3-庚基)-苯二醇已有报道。此鉴定的决定性因素是与两种最可能的代谢物即4(3',5'-二甲基-3'-庚基)-间苯二酚和4(3',5'-二甲基-3' -庚基)-邻苯二酚。这些事实使我们假设某些NIH移位机制解释了2(3',5'-二甲基-3'-庚基)-苯二醇的形成。在目前的工作中,我们描述了导致鞘氨醇单胞菌属物种的细胞内部分中这些代谢物的检测的步骤。菌株TTNP3。据报道,由于NP技术混合物的降解,形成了类似的细胞内代谢产物。为了进一步阐明这些降解产物,对以4(3',5'-二甲基-3'-庚基)-苯酚作为唯一碳源生长的细胞进行了研究。参考化合物即4(3',5'-二甲基-3'-庚基)-间苯二酚和4(3',5'-二甲基-3'-庚基)-邻苯二酚的合成描述及其比较分析介绍了降解4(3',5'-二甲基-3'-庚基)-苯酚的中间体。

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