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Ligninases production by Basidiomycetes strains on lignocellulosic agricultural residues and their application in the decolorization of synthetic dyes

机译:担子菌菌株在木质纤维素农残上生产木质素酶及其在合成染料脱色中的应用

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摘要

Wood rotting Basidiomycetes collected in the “Estação Ecológica do Noroeste Paulista”, São José do Rio Preto, São Paulo State, Brazil, concerning Aphyllophorales order and identified as Coriolopsis byrsina SXS16, Lentinus strigellus SXS355, Lentinus sp SXS48, Picnoporus sanguineus SXS 43 and Phellinus rimosus SXS47 were tested for ligninases production by solid state fermentation (SSF) using wheat bran or rice straw as culture media. C. byrsina produced the highest laccase (200 U mL-1) and Lentinus sp produced the highest activities of manganese peroxidase (MnP) and lignin peroxidase (LiP) (7 and 8 U mL-1, respectively), when cultivated on wheat bran. The effect of N addition on enzyme production was studied in medium containing rice straw and the data showed an increase of 3 up to 4-fold in the laccase production compared to that obtained in SSF on wheat bran. The laccases presented optimum pH at 3.0-3.5 and were stable at neutral pH values. Optimum pH for MnP and LiP activities was at 3.5 and between 4.5 and 6.0, respectively. All the strains produced laccase with optimum activities between 55-60ºC while the peroxidases presented maximum activity at temperatures of 30 to 55ºC. The crude enzymes promoted decolorization of chemically different dyes with around 70% of decolorization of RBBR and cybacron blue 3GA in 6h of treatment. The data indicated that enzymes from these basidiomycetes strains are able to decolorize synthetic dyes.
机译:在巴西圣保罗州圣若泽杜里奥普雷图的“EstaçãoEcológicado Noroeste Paulista”中收集到的腐烂担子菌,涉及无齿目目,被鉴定为Coriolopsis byrsina SXS16,Lentinus strigellus SXS355,Lentinus sp SXSinin 43和Picno使用麦麸或稻草作为培养基,通过固态发酵(SSF)测试了rimosus SXS47产生的木质素酶。 C. byrsina产生最高的漆酶(200 U mL -1 ),而Lentinus sp产生的活性最高的是锰过氧化物酶(MnP)和木质素过氧化物酶(LiP)(7和8 U mL - 1 ),当在麦麸上种植时。在含稻草的培养基中研究了氮添加对酶生产的影响,数据显示,与在小麦麸皮中SSF中获得的相比,漆酶生产增加了3倍至4倍。漆酶在3.0-3.5的最佳pH值,并在中性pH值稳定。 MnP和LiP活性的最佳pH分别为3.5和4.5至6.0。所有菌株产生的漆酶在55-60ºC之间具有最佳活性,而过氧化物酶在30至55ºC的温度下表现出最大的活性。在处理6小时后,粗酶促进了化学不同染料的脱色,其中RBBR和cybacron blue 3GA的脱色率约为70%。数据表明来自这些担子菌菌株的酶能够使合成染料脱色。

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