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Coupling occurs before breakdown during biotransformation of Acid Blue 62 by white rot fungi

机译:白腐真菌在酸性蓝62的生物转化过程中发生分解之前发生偶联

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摘要

Only few data exist on the metabolites produced during the biotransformation of anthraquinonic dyes by white rot fungi (WRF). During the biotransformation of an anthraquinonic dye Acid Blue 62 (ABu62) using Pycnoporus sanguineus MUCL 41582 strain, it was previously demonstrated that the blue colour of the medium turned to red before complete dye decolourisation. To better understand the phenomenon, this study carried out ABu62 biotransformation with five different WRF strains {Coriolopsis polyzona MUCL 38443, Perenniporia ochroleuca MUCL 41114, Perenniporia tephropora MUCL 41562, P. sanguineus MUCL 38531 and Trametes versi-color MUCL 38412) and compared with P. sanguineus MUCL 41582 previously described. A multi-methodological approach (using capillary electrophoresis, mass spectrometry, HPLC, UV, NMR and IR spectroscopies) was developed to characterise the metabolites involved and monitor their apparition. Seven metabolites were commonly found with all strains, suggesting a common metabolic pathway for ABu62 biotransformation. During the first days, dimer and oligomers of the initial ABu62 molecule were observed: the main one absorbed in the 500 nm region, explaining the red colour appearance of the medium. This main metabolite was made up of two molecules of ABu62 linked by an azo bond, minus a cyclohexyl moiety. After a longer incubation time, breakdown products were observed. Based on these products characterizations, a bioconversion pathway was proposed.
机译:关于白腐真菌(WRF)在蒽醌染料生物转化过程中产生的代谢物的数据很少。以前已经证明,在使用碧萝y(Pycnoporus sanguineus)MUCL 41582菌株对蒽醌染料酸性蓝62(ABu62)进行生物转化的过程中,介质的蓝色在完全脱色之前就变成了红色。为了更好地理解这一现象,本研究对五种不同的WRF菌株(Coriolopsis polyzona MUCL 38443,ochenleia ochroleuca MUCL 41114,tenperpororia tephropora MUCL 41562,P。sanguineus MUCL 38531和Trametes versi-color MUCL 38412)进行了ABu62生物转化。先前描述的sanguineus MUCL 41582。开发了一种多方法学方法(使用毛细管电泳,质谱,HPLC,UV,NMR和IR光谱法)来表征所涉及的代谢物并监测其代谢。在所有菌株中普遍发现7种代谢物,表明ABu62生物转化的共同代谢途径。在开始的第一天,观察到了最初的ABu62分子的二聚体和低聚物:主要的吸收在500 nm区域,这说明了介质呈红色。该主要代谢物由通过偶氮键(减去环己基部分)连接的两个ABu62分子组成。较长的孵育时间后,观察到分解产物。基于这些产物的特征,提出了生物转化途径。

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