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Biodegradation of phenol by a filamentous fungi isolated from industrial effluents―identification and degradation potential

机译:从工业废水中分离出来的丝状真菌对苯酚的生物降解作用-鉴定和降解潜力

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Thirty filamentous fungal strains were isolated from effluents of a stainless steel industry (Minas Gerais, Brazil) and tested for phenol tolerance. Fifteen strains of the genera Fusarium sp., Aspergillus sp., Penicillium sp. and Graphium sp. tolerants up to 10 mM of phenol were selected and tested for their ability to degrade phenol. Phenol degradation was a function of strain, time of incubation and initial phenol concentration. FIB4, LEA5 and AE2 strains of Graphium sp. and FE1 1 of Fusarium sp. presented the highest percentage phenol degradation, with 75% degradation of 10 mM phenol in 168 h for FIB4. A higher starting cell density of Graphium sp. FIB4 lead to a decrease in the time needed for full phenol degradation and increased the phenol degradation rate. All strains exhibited activity of catechol 1,2-dioxygenase and phenol hy-droxylase in free cell extracts obtained from cells grown on phenol, suggesting that catechol was oxidized by the ortho type of ring fission. These data reported demonstrate the prospect after the application of filamentous fungal strains in protecting the environment from phenol pollution.
机译:从不锈钢工业(巴西米纳斯吉拉斯州)的废水中分离出三十种丝状真菌菌株,并进行了苯酚耐受性测试。镰刀菌属,曲霉属,青霉属的15个菌株。和Graphium sp。选择耐受量高达10 mM的苯酚,并测试其降解苯酚的能力。苯酚降解是菌株,孵育时间和初始苯酚浓度的函数。 Graphium sp。的FIB4,LEA5和AE2菌株和Fusarium sp。的FE1 1。的苯酚降解百分比最高,对于FIB4,在168小时内10 mM苯酚降解率为75%。 Graphium sp。的较高起始细胞密度。 FIB4导致完全苯酚降解所需的时间减少,并增加了苯酚降解速率。所有菌株在从苯酚上生长的细胞获得的游离细胞提取物中均表现出邻苯二酚1,2-二加氧酶和苯酚羟化酶的活性,表明邻苯二酚型环裂变可氧化邻苯二酚。报道的这些数据证明了在应用丝状真菌菌株保护环境免受酚污染后的前景。

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