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Isolation and characterization of a fungus Aspergillus sp. strain F-3 capable of degrading alkali lignin

机译:真菌曲霉菌的分离和鉴定。能够降解碱性木质素的菌株F-3

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摘要

A fungus strain F-3 was selected from fungal strains isolated from forest soil in Dalian of China. It was identified as one Aspergillus sp. stain F-3 with its morphologic, cultural characteristics and high homology to the genus of rDNA sequence. The budges or thickened node-like structures are peculiar structures of hyphae of the strain. The fungus degraded 65% of alkali lignin (2,000 mg l−1) after day 8 of incubation at 30°C at pH 7. The removal of colority was up to 100% at 8 days. The biodegradation of lignin by Aspergillus sp. F-3 favored initial pH 7.0. Excess acid or alkali conditions were not propitious to lignin decomposing. Addition of ammonium l-tartrate or glucose delayed or repressed biodegradation activities. During lignin degradation, manganese peroxidase (28.2 U l−1) and laccase (3.5 U l−1)activities were detected after day 7 of incubation. GC-MS analysis of biodegraded products showed strain F-3 could convert alkali lignin into small molecules or other utilizable products. Strain F-3 may co-culture with white rot fungus and decompose alkali lignin effectively.
机译:从中国大连市森林土壤中分离得到的真菌菌株F-3。被鉴定为一种曲霉。染色剂F-3,具有形态,培养特性和与rDNA序列属高度同源性。芽或增厚的节状结构是菌株的菌丝的特殊结构。在pH值为7的30°C下孵育第8天后,该真菌降解了65%的碱性木质素(2,000 mg lssup-1 supup)。在8天时,色度的去除率高达100%。曲霉菌对木质素的生物降解作用。 F-3支持初始pH 7.0。过量的酸或碱条件不利于木质素分解。酒石酸铵或葡萄糖的添加延迟或抑制了生物降解活性。木质素降解期间,孵育第7天后检测到锰过氧化物酶(28.2 U l -1 )和漆酶(3.5 U lssup-1 -s )活性。 GC-MS对生物降解产物的分析表明,菌株F-3可以将碱性木质素转化为小分子或其他可利用的产物。 F-3菌株可与白腐真菌共培养,并有效分解碱性木质素。

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