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Endoglucanase and Total Cellulase from Newly Isolated Rhizopus oryzae and Trichoderma reesei: Production, Characterization, and Thermal Stability

机译:新分离的Rhizopus oryzae和Trichoderma Reesei的内切葡聚糖酶和总纤维素酶:生产,表征和热稳定性

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摘要

A multienzymatic complex production was evaluated, as well as endoglucanaseand total cellulase characterization, during solid-state fermentation of rice industry wasteswith Rhizopus oryzae CCT 7560 (newly isolated microorganism) and Trichoderma reesei QM 9414 (control). R. oryzae produced enzymes with higher activity at 15 h of fermentation (5.1 and 2.3 U g−1 to endoglucanase and total cellulase), while T. reesei produced them at 55 h (15.3 and 2.8 U g−1 to endoglucanase and total cellulase). The optimum temperature for total cellulase and endoglucanase was 60 °C. For Trichoderma and Rhizopus, the optimum pH was 5.0 and 6.0 for total cellulase and 6.0 and 5.0 for endoglucanase, respectively. The enzymes produced by Rhizopus presented higher stability at the temperature range evaluated (25–100 °C); the endoglucanase KM value was 20 times lower than the one found for Trichoderma. The characterization of the cellulolytic enzymes from the fungal species native of rice husk revealed that they can be more efficient than the genetically modified enzymes when rice husk and rice bran are used as substrates.
机译:在水稻工业瓦斯斯的固态发酵期间,评估了多酶复合物的总纤维素酶表征,以及Rhizopus Oryzae CCT 7560(新分离的微生物)和Trichoderma Reesei QM 9414(对照)。 R. oryzae在15小时发酵(5.1和2.3u g-1至内切葡聚糖酶和总纤维素酶)中产生酶的酶,而T.Reesei在55小时(15.3和2.8ug-1至内切葡聚糖酶和全纤维素酶中产生它们)。总纤维素酶和内切葡聚糖酶的最佳温度为60℃。对于Trichoderma和Rhizopus,总纤维素酶的最佳pH为5.0和6.0,分别用于内切葡聚糖酶的6.0和5.0。通过Rhizopus产生的酶在评估的温度范围内呈现更高的稳定性(25-100℃);内切葡聚糖酶Km值比为richoderma发现的km值低20倍。来自水稻稻壳的真菌物种的纤维素分解酶的表征显示,当稻壳和米糠用作基材时,它们可以比遗传改性酶更有效。

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