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Thermotolerant and mesophylic fungi from sugarcane bagasse and theirprospection for biomass-degrading enzyme production

机译:甘蔗渣中的耐热和中性真菌及其生物质降解酶生产的前景

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摘要

Nineteen fungi and seven yeast strains were isolated from sugarcane bagasse piles from an alcohol plant located at Brazilian Cerrado and identified up to species level on the basis of the gene sequencing of 5.8S-ITS and 26S ribosomal DNA regions. Four species were identified: Kluyveromyces marxianus, Aspergillus niger, Aspergillus sydowii and Aspergillus fumigatus, and the isolates were screened for the production of key enzymes in the saccharification of lignocellulosic material. Among them, three strains were selected as good producers of hemicellulolitic enzymes: A. niger (SBCM3), A. sydowii (SBCM7) and A. fumigatus (SBC4). The best β-xylosidase producer was A. niger SBCM3 strain. This crude enzyme presented optimal activity at pH 3.5 and 55 °C (141 U/g). For β-glucosidase and xylanase the best producer was A. fumigatus SBC4 strain, whose enzymes presented maximum activity at 60 °C and pH 3.5 (54 U/g) and 4.0 (573 U/g), respectively. All these crude enzymes presented stability around pH 3.0–8.0 and up to 60 °C, which can be very useful in industrial processes that work at high temperatures and low pHs. These enzymes also exhibited moderate tolerance to ethanol and the sugars glucose and xylose. Thesesimilar characteristics among these fungal crude enzymes suggest that they can beused synergistically in cocktails in future studies of biomass conversion withpotential application in several biotechnological sectors.
机译:从位于巴西Cerrado的一家酒精厂的甘蔗渣堆中分离出19种真菌和7种酵母菌株,并根据5.8S-ITS和26S核糖体DNA区域的基因测序,鉴定出高达种的水平。鉴定了四个物种:马克斯克鲁维酵母,黑曲霉,sydowii sydowii和烟曲霉,并筛选了分离出的木质纤维素材料糖化过程中关键酶的产生。其中,选择了三种菌株作为半纤维素酶的良好生产者:黑曲霉(SBCM3),sydowii曲霉(SBCM7)和烟曲霉(SBC4)。最好的β-木糖苷酶生产者是黑曲霉SBCM3菌株。该粗酶在pH 3.5和55°C(141 U / g)下表现出最佳活性。对于β-葡萄糖苷酶和木聚糖酶,最佳生产者是烟曲霉SBC4菌株,其酶分别在60°C和pH 3.5(54 U / g)和4.0(573 U / g)时表现出最大活性。所有这些粗酶在pH 3.0-8.0以及高达60°C的温度下都表现出稳定性,这在高温和低pH值的工业过程中非常有用。这些酶还显示出对乙醇和糖,葡萄糖和木糖的中等耐受性。这些这些真菌粗酶之间的相似特征表明它们可以在未来的生物质转化研究中协同使用于鸡尾酒中在多个生物技术领域的潜在应用。

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