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Overlap of laccases/cellobiose dehydrogenase activities during the decolourisation of anthraquinonic dyes with close chemical structures by Pycnoporus strains.

机译:碧萝op菌株对具有紧密化学结构的蒽醌染料进行脱色时,漆酶/纤维二糖脱氢酶活性重叠。

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摘要

Pycnoporus strains were used as model to understand the role of laccases in the in vivo decolourisation of three anthraquinonic dyes. The decolourisation capability of Pycnoporus sanguineus MUCL 41582 (PS7), which produces laccases as the main oxidative enzyme, was assayed and compared with the decolourisation capability of a control strain, Pycnoporus cinnabarinus MUCL 39533 (PC330) described as laccase-deficient strain. In absence of dye, laccase activity was observed during the trophophase and the idiophase with PS7, while no laccase activity was observed with PC330. Acid Blue 62 (ABu62), Acid Blue 281 (ABu281) and Reactive Blue 19 (RBu19) caused an increase in laccase activity and surprisingly laccase activity was detected with PC330. In vitro, oxidation of all three anthraquinones by a laccase preparation was obtained to a lesser extent than the whole cell process; suggesting that other factor(s) could be required for a complete decolourisation. As the time space of laccase production in the tested fungi was not perfectly coincidental with the decolourisation process, the activity of cellobiose dehydrogenase (CDH) was monitored. Present early in the broth during the growth of the fungi, CDH displayed in vitro a synergism with laccases in the decolourisation of ABu62, and an antagonism with laccases in the decolourisation of ABu281 and RBu19..
机译:使用碧萝op菌株作为模型来了解漆酶在三种蒽醌染料体内脱色中的作用。测定了产生漆酶作为主要氧化酶的血红比目鱼MUCL 41582(PS7)的脱色能力,并将其与描述为漆酶缺陷型的对照株朱砂比纳斯MUCL 39533(PC330)的脱色能力进行了比较。在不存在染料的情况下,在滋养期和特异期用PS7观察到漆酶活性,而用PC330观察不到漆酶活性。酸性蓝62(ABu62),酸性蓝281(ABu281)和活性蓝19(RBu19)导致漆酶活性增加,令人惊讶的是,用PC330检测到漆酶活性。在体外,漆酶制剂对所有三种蒽醌的氧化程度均小于整个细胞过程。提示完全脱色可能还需要其他因素。由于测试真菌中漆酶产生的时间空间与脱色过程并不完全一致,因此需要监测纤维二糖脱氢酶(CDH)的活性。 CDH存在于真菌生长过程中的肉汤早期,在体外对ABu62脱色表现出与漆酶的协同作用,对ABu281和RBu19脱色表现出与漆酶的拮抗作用。

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