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Prickly palm cactus husk as a raw material for production of ligninolytic enzymes by Aspergillus niger

机译:花椒仙人掌果壳作为黑曲霉生产木质素分解酶的原料

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摘要

Prickly palm cactus husk was used as a solid-state fermentation support-substrate for production of the ligninolytic enzymes laccase, peroxide manganese, and lignin peroxidase by Aspergillus niger. Effects of water activity, temperature, and fermentation time on enzymatic production were evaluated using a central composite rotatable design. Response surface methodology revealed that maximum enzyme production was achieved at 73.38 h of fermentation, a water activity of 0.87 Aw, at 28.74°C for laccase, at 65.33 h, 0.89 Aw, and 28.96°C for lignin peroxidase, and at 70.44 h, 0.91 Aw, and 28.84°C for manganese peroxidase. Optimized enzyme production was 9,023.67 UI/L for laccase, 2,234.75 UI/L for lignin peroxidase, and 8,534.81 UI/L for manganese peroxidase. Thermostability and pH stability were observed for all enzymes. Enzymatic deactivation kinetic experiments indicated that enzymes remained active after freezing of crude extracts.
机译:花椒仙人掌果皮被用作固态发酵支持物底物,用于由黑曲霉生产木质素分解酶漆酶,过氧化物锰和木质素过氧化物酶。使用中央复合可旋转设计评估了水分活度,温度和发酵时间对酶促生产的影响。响应面分析法显示,在73.38 h发酵,漆酶在28.74°C,65.33 h,0.89 Aw和28.96°C在木质素过氧化物酶,70.44 h在水活度为0.87 Aw,水活度达到最大的条件下,锰过氧化物酶为0.91 Aw,28.84°C。漆酶的最佳酶产生量为9,023.67 UI / L,木质素过氧化物酶为2,234.75 UI / L,锰过氧化物酶为8,534.81 UI / L。观察到所有酶的热稳定性和pH稳定性。酶失活动力学实验表明,冷冻粗提物后酶仍保持活性。

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