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首页> 外文期刊>Journal of applied microbiology >Elucidation of fungal dye-decolourizing peroxidase (DyP) and ligninolytic enzyme activities in decolourization and mineralization of azo dyes
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Elucidation of fungal dye-decolourizing peroxidase (DyP) and ligninolytic enzyme activities in decolourization and mineralization of azo dyes

机译:酶脱氧液中的真菌染料 - 脱色过氧化物酶(DYP)和木质素溶解酶的脱盐和铝染料的矿化

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Aim The aim of the study is to investigate the efficiency ofGeotrichum candidumin the decolourization and mineralization of synthetic azo dyes. Methods and Results It includes screening of enzymes fromG. candidumand its optimization, followed by decolourization and mineralization studies. Decolourization was observed to be maximum in methyl orange (94 center dot 6%) followed by Congo red (85%), trypan blue (70 center dot 4%) and Eriochrome Black T (55 center dot 6%) in 48 h, suggesting the plausible degradation of the azo dyes byG. candidum. The enzyme activity study showed that DyP-type peroxidase has highest activity of 900 mU ml(-1)compared to that of laccase (405 mU ml(-1)) and lignin peroxidase (LiP) (324 mU ml(-1)) at optimized pH (6) and temperature (35 degrees C). Moreover, the rate of decolourization was found to be directly proportional to the production of laccase and LiP, unlike DyP-type peroxidase. Furthermore, mineralization study demonstrated reduction in aromatic amines, showing 20% mineralization of methyl orange. Conclusion Geotrichum candidumwith its enzyme system is able to efficiently decolourize and mineralize the experimental azo dyes. Significance and Impact of the Study The efficient decolourization and mineralization of azo dyes makesG. candiduma promising alternative in the treatment of textile effluent contaminated with azo dyes.
机译:目的该研究的目的是探讨茄子的效率念珠菌的脱色和矿化的合成偶氮染料。方法和结果它包括筛选酶的筛选。 Candidumand其优化,其次是脱色和矿化研究。观察到脱色在甲基橙(94中心点6%)中最大值,然后是刚果红色(85%),锥虫蓝(70中心点4%)和Eriochrome Black T(55中心点6%)在48小时内,提示偶氮染料的可粘性降解越来越多。 Candidum。酶活性研究表明,与漆酶(405μmL(-1))和木质素过氧化物酶(唇)(324μml(-1))(324μml(-1))相比,DYP型过氧化物酶具有900μml(-1)的最高活性。(324μml(-1))优化pH(6)和温度(35℃)。此外,与二嵌段型过氧化物酶不同,发现脱色速率与漆酶和唇缘的产生成比例。此外,矿化研究证明了芳香胺的还原,显示出20%的甲基橙色化。结论其酶系统的地理素念珠菌能够有效地脱色和矿化实验性偶氮染料。研究的意义和影响奥唑染料的有效脱色和矿化效果。 Candiduma有前途的替代替代偶氮染料污染的纺织品流出物。

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