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Cell dispersion culture for the effective growth of Humicola insolens and efficient enzyme production

机译:细胞分散培养可有效培养腐质霉和有效产生酶

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We have developed a method for the effective growth of Humicola insolens conducive to efficient enzyme production using a medium containing glucose as a carbon source and extruded soybean meal (ExSBM) as a nitrogen source. Enzymes from Humicola sp. hold promise for biomass degradation, especially of lignocellulosic materials such as rice straw, wood chips, and corn stover. The strain, however, is hard to disperse, so an aggregated form of the fungus in a liquid culture media is generally used, resulting in poor control of the growth process and low enzyme production. This has greatly limited the utilization of this strain, in spite of its potential as an enzyme producer. Surprisingly, the addition of ExSBM improves mycelium dispersion and enzyme production of H. insolens, and the dispersive effect is applicable to other fungi such as Trichoderma and Aspergillus sp. In contrast, defatted soybean meal not treated with an extrusion process has little effect on mycelium cohesion. It therefore appears that the specific three-dimensional structure of ExSBM arising from the extrusion process provides a favorable environment for cell growth, since the composition of ExSBM and soybean meal is essentially identical. The optimum medium for cell dispersion culture essentially consisted of 5% glucose and 0.3% ExSBM.
机译:我们已经开发了一种有效生长腐殖质的方法,该方法利用含有葡萄糖作为碳源和膨化豆粕(ExSBM)作为氮源的培养基有效促进酶的高效生产。腐质霉属的酶。为生物质的降解,特别是木质纤维素材料(如稻草,木片和玉米秸秆)的降解提供了希望。然而,该菌株难以分散,因此通常在液体培养基中使用真菌的聚集形式,导致对生长过程的不良控制和低酶的产生。尽管它有潜力作为酶的生产者,但这极大地限制了该菌株的利用。出人意料的是,添加ExSBM改善了H.insolens的菌丝体分散和酶产生,并且该分散作用适用于其他真菌,例如木霉属和曲霉属。相反,未经挤压处理的脱脂豆粕对菌丝体凝聚力影响很小。因此,由于ExSBM和豆粕的组成基本相同,因此挤出工艺产生的ExSBM的特定三维结构似乎为细胞生长提供了有利的环境。细胞分散培养的最佳培养基主要由5%葡萄糖和0.3%ExSBM组成。

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