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Efficient Plant Biomass Degradation by Thermophilic Fungus Myceliophthora heterothallica

机译:嗜热真菌Myceliophthora heterothallica的高效植物生物量降解

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摘要

Rapid and efficient enzymatic degradation of plant biomass into fermentable sugars is a major challenge for the sustainable production of biochemicals and biofuels. Enzymes that are more thermostable (up to 70°C) use shorter reaction times for the complete saccharification of plant polysaccharides compared to hydrolytic enzymes of mesophilic fungi such as Trichoderma and Aspergillus species. The genus Myceliophthora contains four thermophilic fungi producing industrially relevant thermostable enzymes. Within this genus, isolates belonging to M. heterothallica were recently separated from the well-described species M. thermophila. We evaluate here the potential of M. heterothallica isolates to produce efficient enzyme mixtures for biomass degradation. Compared to the other thermophilic Myceliophthora species, isolates belonging to M. heterothallica and M. thermophila grew faster on pretreated spruce, wheat straw, and giant reed. According to their protein profiles and in vitro assays after growth on wheat straw, (hemi-)cellulolytic activities differed strongly between M. thermophila and M. heterothallica isolates. Compared to M. thermophila, M. heterothallica isolates were better in releasing sugars from mildly pretreated wheat straw (with 5% HCl) with a high content of xylan. The high levels of residual xylobiose revealed that enzyme mixtures of Myceliophthora species lack sufficient β-xylosidase activity. Sexual crossing of two M. heterothallica showed that progenies had a large genetic and physiological diversity. In the future, this will allow further improvement of the plant biomass-degrading enzyme mixtures of M. heterothallica.
机译:将植物生物质快速有效地酶降解为可发酵糖是生物化学和生物燃料可持续生产的主要挑战。与中温真菌(如木霉属和曲霉属)的水解酶相比,更热稳定的酶(最高70°C)使用较短的反应时间来完全糖化植物多糖。 Myceliophthora属包含四种嗜热真菌,它们产生与工业相关的热稳定酶。在该属中,近来已从众所周知的嗜热毁丝霉菌种中分离出了嗜异色霉菌的分离株。我们在这里评估了M. heterothallica分离物生产生物质降解有效酶混合物的潜力。与其他嗜热毁丝霉菌种类相比,属于异嗜藻分枝杆菌和嗜热毁丝霉菌的菌株在经过预处理的云杉,小麦秸秆和巨型芦苇上生长更快。根据它们的蛋白谱和在麦草上生长后的体外测定,嗜热毁丝霉和异嗜藻丝霉分离株的(半)纤维素分解活性差异很大。与嗜热毁丝霉相比,异嗜藻丝霉在从木糖含量高的温和预处理的小麦秸秆(含5%HCl)中释放糖分方面表现更好。高水平的残留木二糖表明,Myceliophthora物种的酶混合物缺乏足够的β-木糖苷酶活性。两个异质分枝杆菌的性交表明子代具有较大的遗传和生理多样性。将来,这将进一步改善 M的植物生物质降解酶混合物。异种藻

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