首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Contrasting Effects of a Nonionic Surfactant on the Biotransformation of Polycyclic Aromatic Hydrocarbons to cis-Dihydrodiols by Soil Bacteria
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Contrasting Effects of a Nonionic Surfactant on the Biotransformation of Polycyclic Aromatic Hydrocarbons to cis-Dihydrodiols by Soil Bacteria

机译:非离子表面活性剂对土壤细菌将多环芳烃生物转化为顺式二氢二醇的对比作用

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摘要

The biotransformation of the polycyclic aromatic hydrocarbons (PAHs) naphthalene and phenanthrene was investigated by using two dioxygenase-expressing bacteria, Pseudomonas sp. strain 9816/11 and Sphingomonas yanoikuyae B8/36, under conditions which facilitate mass-transfer limited substrate oxidation. Both of these strains are mutants that accumulate cis-dihydrodiol metabolites under the reaction conditions used. The effects of the nonpolar solvent 2,2,4,4,6,8,8-heptamethylnonane (HMN) and the nonionic surfactant Triton X-100 on the rate of accumulation of these metabolites were determined. HMN increased the rate of accumulation of metabolites for both microorganisms, with both substrates. The enhancement effect was most noticeable with phenanthrene, which has a lower aqueous solubility than naphthalene. Triton X-100 increased the rate of oxidation of the PAHs with strain 9816/11 with the effect being most noticeable when phenanthrene was used as a substrate. However, the surfactant inhibited the biotransformation of both naphthalene and phenanthrene with strain B8/36 under the same conditions. The observation that a nonionic surfactant could have such contrasting effects on PAH oxidation by different bacteria, which are known to be important for the degradation of these compounds in the environment, may explain why previous research on the application of the surfactants to PAH bioremediation has yielded inconclusive results. The surfactant inhibited growth of the wild-type strain S. yanoikuyae B1 on aromatic compounds but did not inhibit B8/36 dioxygenase enzyme activity in vitro.
机译:通过使用两种表达双加氧酶的细菌假单胞菌(Pseudomonas sp。)研究了多环芳烃(PAHs)萘和菲的生物转化。菌株9816/11和Sphingomonas yanoikuyae B8 / 36,在有利于传质的条件下限制了底物的氧化。这两个菌株都是在所用反应条件下积累顺式-二氢二醇代谢物的突变体。确定了非极性溶剂2,2,4,4,6,8,8-七甲基壬烷(HMN)和非离子表面活性剂Triton X-100对这些代谢物积累速率的影响。 HMN增加了两种底物对两种微生物的代谢产物积累速率。菲的增强作用最为明显,菲的水溶性比萘低。 Triton X-100以9816/11菌株提高了PAHs的氧化速率,当使用菲作为底物时,效果最为明显。然而,在相同条件下,表面活性剂抑制了菌株B8 / 36对萘和菲的生物转化。非离子表面活性剂可能对不同细菌对PAH的氧化具有相反的影响(已知对环境中这些化合物的降解很重要)的观察结果,可以解释为什么先前有关将表面活性剂应用于PAH生物修复的研究产生了结果尚无定论。表面活性剂抑制了野生型菌株S. yanoikuyae B1在芳香族化合物上的生长,但在体外没有抑制B8 / 36双加氧酶的活性。

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