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Isolation of fungi from dung of wild herbivores for application in bioethanol production

机译:从野生草食动物粪便中分离真菌用于生物乙醇生产

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摘要

Producing biofuels such as ethanol from non-food plant material has the potential to meet transportation fuel requirements in many African countries without impacting directly on food security. The current shortcomings in biomass processing are inefficient fermentation of plant sugars, such as xylose, especially at high temperatures, lack of fermenting microbes that are able to resist inhibitors associated with pre-treated plant material and lack of effective lignocellulolytic enzymes for complete hydrolysis of plant polysaccharides. Due to the presence of residual partially degraded lignocellulose in the gut, the dung of herbivores can be considered as a natural source of pre-treated lignocellulose. A total of 101 fungi were isolated (36 yeast and 65 mould isolates). Six yeast isolates produced ethanol during growth on xylose while three were able to grow at 42 °C. This is a desirable growth temperature as it is closer to that which is used during the cellulose hydrolysis process. From the yeast isolates, six isolates were able to tolerate 2 g/L acetic acid and one tolerated 2 g/L furfural in the growth media. These inhibitors are normally generated during the pre-treatment step. When grown on pre-treated thatch grass, Aspergillus species were dominant in secretion of endo-glucanase, xylanase and mannanase.
机译:用非食用植物材料生产生物燃料,例如乙醇,有潜力满足许多非洲国家的运输燃料需求,而不会直接影响粮食安全。当前生物质加工中的缺点是植物糖如木糖的发酵效率低下,尤其是在高温下,缺乏能够抵抗与预处理植物材料相关的抑制剂的发酵微生物,以及缺乏有效的木质纤维素分解酶来使植物完全水解多糖。由于肠道中残留有部分降解的木质纤维素,因此草食动物的粪便可被视为经过预处理的木质纤维素的天然来源。总共分离出101种真菌(36种酵母和65种霉菌分离株)。六个酵母分离株在木糖上生长期间产生乙醇,而三个能够在42°C下生长。这是理想的生长温度,因为它接近纤维素水解过程中使用的温度。从酵母分离物中,六种分离物能够耐受2 g / L的乙酸,一种耐受2 g / L的糠醛。这些抑制剂通常在预处理步骤中产生。当在经过预处理的茅草上生长时,曲霉菌种在内切葡聚糖酶,木聚糖酶和甘露聚糖酶的分泌中占主导地位。

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