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利用香菇漆酶对瑞马唑亮蓝R进行脱色处理,该香菇在农业工业副产品中生长。

Decolorization of remazol brilliant blue R with laccase from Lentinus crinitus grown in agro-industrial by-products.

作者信息

Almeida Patrícia H, Oliveira Ana Carolina C DE, Souza Genyfer P N DE, Friedrich Juliana C, Linde Giani A, Colauto Nelson B, Valle Juliana S DO

机构信息

Programa de Pós-Graduação em Biotecnologia Aplicada à Agricultura, Universidade Paranaense, Praça Mascarenhas de Moraes, 4282, 87502-210 Umuarama, PR, Brazil.

出版信息

An Acad Bras Cienc. 2018 Oct-Dec;90(4):3463-3473. doi: 10.1590/0001-3765201820170458. Epub 2018 Jun 25.

Abstract

Lentinus crinitus is a white-rot fungus that produces laccase, an enzyme used for dye decolorization. Enzyme production depends on cultivation conditions, mainly agro-industrial by-products. We aimed to produce laccase from Lentinus crinitus with agro-industrial by-products for dye decolorization. Culture medium had coffee husk (CH) or citric pulp pellet (CP) and different nitrogen sources (urea, yeast extract, ammonium sulfate and sodium nitrate) at concentrations of 0, 0.7, 1.4, 2.8, 5.6 and 11.2 g/L. Enzymatic extract was used in the decolorization of remazol brilliant blue R. CH medium promoted greater laccase production than CP in all evaluated conditions. Urea provided the greatest laccase production for CH (37280 U/L) as well as for CP (34107 U/L). In CH medium, laccase activity was suppressed when carbon-to-nitrogen ratio changed from 4.5 to 1.56, but the other nitrogen concentrations did not affect laccase activity. For CP medium, reduction in carbon-to-nitrogen ratio from 6 to 1.76 increased laccase activity in 17%. The peak of laccase activity in CH medium occurred on the 11th day (41246 U/L) and in CP medium on the 12th day (32660 U/L). The maximum decolorization within 24 h was observed with CP enzymatic extract (74%) and with CH extract (76%).

摘要

毛革盖菌是一种能产生漆酶的白腐真菌,漆酶是一种用于染料脱色的酶。酶的产生取决于培养条件,主要是农用工业副产品。我们旨在利用农用工业副产品从毛革盖菌中生产漆酶用于染料脱色。培养基含有咖啡壳(CH)或柠檬酸果肉颗粒(CP)以及不同浓度(0、0.7、1.4、2.8、5.6和11.2 g/L)的氮源(尿素、酵母提取物、硫酸铵和硝酸钠)。酶提取物用于活性艳蓝R的脱色。在所有评估条件下,CH培养基比CP培养基促进了更高的漆酶产量。尿素使CH(37280 U/L)和CP(34107 U/L)的漆酶产量最高。在CH培养基中,当碳氮比从4.5变为1.56时,漆酶活性受到抑制,但其他氮浓度不影响漆酶活性。对于CP培养基,碳氮比从6降至1.76使漆酶活性提高了17%。CH培养基中漆酶活性的峰值出现在第11天(41246 U/L),CP培养基中出现在第12天(32660 U/L)。24小时内观察到CP酶提取物的最大脱色率为74%,CH提取物为76%。

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