Most aerobic biodegradation pathways for hydrocarbons involve iron-containing oxygenases. In iron-limited environments, such as the rhizosphere, this may influence the rate of degradation of hydrocarbon pollutants. We investigated the effects of iron limitation on the degradation of toluene by Pseudomonas putida mt2 and the transconjugant rhizosphere bacterium P. putida WCS358(pWWO), both of which contain the pWWO (TOL) plasmid that harbors the genes for toluene degradation. The results of continuous-culture experiments showed that the activity of the upper-pathway toluene monooxygenase decreased but that the activity of benzyl alcohol dehydrogenase was not affected under iron-limited conditions. In contrast, the activities of three meta-pathway (lower-pathway) enzymes were all found to be reduced when iron concentrations were decreased. Additional experiments in which citrate was used as a growth substrate and the pathways were induced with the gratuitous inducer o-xylene showed that expression of the TOL genes increased the iron requirement in both strains. Growth yields were reduced and substrate affinities decreased under iron-limited conditions, suggesting that iron availability can be an important parameter in the oxidative breakdown of hydrocarbons.

译文

:碳氢化合物的大多数有氧生物降解途径都涉及含铁氧化酶。在铁限制的环境中,例如根际,这可能会影响碳氢化合物污染物的降解速度。我们调查了铁限制对恶臭假单胞菌mt2和转导结合体根际细菌恶臭假单胞菌WCS358(pWWO)的甲苯降解的影响,这两个都含有pWWO(TOL)质粒,该质粒带有甲苯降解的基因。连续培养实验的结果表明,上游途径的甲苯单加氧酶的活性降低,但在铁限制条件下苯甲醇脱氢酶的活性不受影响。相反,当铁浓度降低时,三种元途径(下途径)酶的活性均降低。使用柠檬酸盐作为生长底物并用免费的诱导物邻二甲苯诱导途径的其他实验表明,TOL基因的表达增加了这两种菌株中的铁需求。在铁受限的条件下,生长产量降低且底物亲和力降低,这表明铁的有效性可能是碳氢化合物氧化分解的重要参数。

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