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首页> 外文期刊>Current Microbiology: An International Journal >Effect of Ferric Iron on Siderophore Production and Pyrene Degradation by Pseudomonas fluorescens 29L
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Effect of Ferric Iron on Siderophore Production and Pyrene Degradation by Pseudomonas fluorescens 29L

机译:三价铁对荧光假单胞菌29L铁载体生成和P降解的影响

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The effect of ferric iron [Fe(III)] on pyrene degradation and siderophore production was studied in Pseudomonas fluorescens 29L. In the presence of 0.5 oM of Fe(III) and 50 mg of pyrene per liter of medium as a carbon source, 2.2 mg of pyrene was degraded per liter of medium per day and 25.3 oM of 2,3-DHBA (2,3-dihydroxybenzoic acid) equivalent of siderophores was produced per day. However, the pyrene degradation rate was 1.3 times higher and no siderophores were produced with the addition of 1 oM of Fe(III). Similar trends were seen with 50 mg of succinate per liter of medium as a carbon source, although the growth of strain 29L and the succinate degradation rate were higher. In the absence of siderophore production, pyrene and succinate continued to be biodegraded. This indicates that Fe(III) and not siderophore production affects the hydrocarbon degradation rate. Only 18% of strain 29L mutants capable of growth on pyrene produced siderophores, while among the mutants capable of growth on succinate, only 10% produced siderophores. This indicates that siderophores are not required for pyrene biodegradation. Fe(III) enhances pyrene degradation in Pseudomonas fluorescens 29L but it may be utilized by mechanisms other than siderophores.
机译:在荧光假单胞菌29L中研究了三价铁[Fe(III)]对pyr降解和铁载体产生的影响。在存在0.5 oM Fe(III)和50 mg per /升培养基作为碳源的情况下,每天每升培养基降解2.2 mg and和25.3 oM的2,3-DHBA(2,3每天产生等价的铁载体(-二羟基苯甲酸)。但是,the的降解速率高1.3倍,并且添加1 oM的Fe(III)不会产生铁载体。尽管菌株29L的生长和琥珀酸盐的降解率较高,但每升培养基中含50毫克的琥珀酸盐作为碳源时,也观察到了类似的趋势。在不产生铁载体的情况下,pyr和琥珀酸酯继续被生物降解。这表明Fe(III)而不是铁载体的生成会影响烃的降解速率。能够在pyr上生长的菌株29L突变体中只有18%产生了铁载体,而在能够通过琥珀酸酯生长的突变体中,只有10%产生了铁载体。这表明side生物降解不需要铁载体。 Fe(III)增强了荧光假单胞菌29L中的pyr降解,但除铁载体外,它还可以用于其他机制。

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