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首页> 外文期刊>Applied Microbiology and Biotechnology >The ability of white-rot fungi to degrade the endocrine-disrupting compound nonylphenol
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The ability of white-rot fungi to degrade the endocrine-disrupting compound nonylphenol

机译:白腐真菌降解破坏内分泌的化合物壬基酚的能力

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Phanerochaete chrysosporium, Pleurotus ostreatus, Trametes versicolor and Bjerkandera sp. BOL13 were tested for their ability to degrade the endocrine-disrupting compound nonylphenol at an initial concentration of 100 mg l−1. The highest removals were achieved with T. versicolor and Bjerkandera sp. BOL13, which were able to degrade 97 mg l−1 and 99 mg l−1 of nonylphenol in 25 days of incubation, respectively. Nonylphenol removal was associated with the production of laccase by T. versicolor, but the levels of laccase, manganese peroxidase and lignin peroxidase produced by Bjerkandera sp. BOL13 were very low. At 14°C, T. versicolor and Bjerkandera sp. BOL13 sustained the removal of 88 mg l−1 and 79 mg l−1 of nonylphenol, respectively. No pollutant removal was recorded at 4°C, although both fungi could grow at this temperature in the absence of nonylphenol. A microtoxicity assay showed that the fungi produced compounds that were toxic to Vibrio fischerii; and thus a reduction in toxicity could not be correlated with nonylphenol metabolism. T. versicolor and Bjerkandera sp. BOL13 were capable of colonizing soil artificially contaminated with 430 mg kg−1 of nonylphenol. Only 1.3±0.1% of nonylphenol remained in the soil after 5 weeks of incubation.
机译:Phanerochaete chrysosporium,Pleurotus ostreatus,Trametes versicolor和Bjerkandera sp.。测试了BOL13在初始浓度为100 mg l-1 时降解内分泌干扰物壬基酚的能力。杂色猪笼草和Bjerkandera sp。的去除率最高。在孵育25天后,BOL13分别能够降解97 mg l-1 和99 mg l-1 壬基酚。壬基酚的去除与杂色丁香生产漆酶有关,但Bjerkandera sp。产生的漆酶,锰过氧化物酶和木质素过氧化物酶的水平。 BOL13非常低。在14°C下,杂色丁香和Bjerkandera sp。 BOL13分别持续去除88 mg l-1 和79 mg l-1 壬基酚。在4°C下没有记录到污染物去除,尽管在没有壬基酚的情况下,两种真菌都可以在此温度下生长。微毒性试验表明,该真菌产生的化合物对费氏弧菌有毒。因此毒性的降低与壬基酚的代谢无关。 T. versicolor和Bjerkandera sp。 BOL13能够在被430 mg kg-1壬基酚人工污染的土壤上定殖。孵育5周后,仅1.3±0.1%的壬基酚残留在土壤中。

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