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Transcriptional response of lignin‐degrading enzymes to 17α‐ethinyloestradiol in two white rots

机译:木质素降解酶对两种白腐病中17α-炔雌醇的转录反应

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SummaryFungal, ligninolytic enzymes have attracted a great attention for their bioremediation capabilities. A deficient knowledge of regulation of enzyme production, however, hinders the use of ligninolytic fungi in bioremediation applications. In this work, a transcriptional analyses of laccase and manganese peroxidase (MnP) production by two white rots was combined with determination of pI of the enzymes and the evaluation of 17α-ethinyloestradiol (EE2) degradation to study regulation mechanisms used by fungi during EE2 degradation. In the cultures of Trametes versicolor the addition of EE2 caused an increase in laccase activity with a maximum of 34.2 ± 6.7 U g−1 of dry mycelia that was observed after 2 days of cultivation. It corresponded to a 4.9 times higher transcription levels of a laccase-encoding gene (lacB) that were detected in the cultures at the same time. Simultaneously, pI values of the fungal laccases were altered in response to the EE2 treatment. Like T. versicolor, Irpex lacteus was also able to remove 10 mg l−1 EE2 within 3 days of cultivation. While an increase to I. lacteus MnP activity and MnP gene transcription levels was observed at the later phase of the cultivation. It suggests another metabolic role of MnP but EE2 degradation.
机译:总结真菌,木质素分解酶的生物修复能力引起了人们的极大关注。然而,对酶产生调控的了解不足,阻碍了木质素分解真菌在生物修复应用中的使用。在这项工作中,将两种白腐产生的漆酶和锰过氧化物酶(MnP)的转录分析与酶pI的测定以及17α-乙炔雌二醇(EE2)降解的评估相结合,以研究真菌在EE2降解过程中使用的调控机制。 。在Trametes versicolor的培养物中,添加EE2导致漆酶活性增加,培养2天后观察到最大34.2±6.7 U g -1 干燥菌丝体。它对应于在培养物中同时检测到的漆酶编码基因(lacB)的4.9倍更高的转录水平。同时,响应于EE2处理,真菌漆酶的pI值改变。像T.versicolor一样,Irpex lacteus也能够在培养的三天内去除10 mg l -1 EE2。在培养的后期观察到乳酸杆菌的MnP活性和MnP基因转录水平的增加。它提示了MnP的另一种代谢作用,但EE2降解。

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