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在非织造材料中对产纤维素酶的固定化生长真菌嗜纤维芽生菌进行定期分批培养。

Periodical batch culture of the immobilized growing fungi Sporotrichum cellulophilum producing cellulase in the nonwoven materials.

作者信息

Tamada M, Kasai N, Kumakura M, Kaetsu I

机构信息

Takasaki Radiation Chemistry Research Establishment, Japan Atomic Energy Research Institute, Takasaki, Gunma 370-12, Japan.

出版信息

Biotechnol Bioeng. 1986 Aug;28(8):1227-32. doi: 10.1002/bit.260280814.

Abstract

The thermophilic fungus Sporotrichum cellulophilum was immobilized with nonwoven materials for cellulase production. The cellulose powder concentration in the medium was an important factor controlling cellulase production. When the cellulose powder concentration in the nonwoven materials was more than 4%, cellulase production was suppressed. The growth of the immobilized fungi depended on the spaces in the nonwoven materials. Immobilized growing fungi were retained by the non-woven materials, and the supernatant medium did not contain mycelia. The heat stability of the immobilized growing fungus was higher than that of the free fungus. The immobilized fungus gave the same FPA as the free mycelium, but the lag time for cellulase production in the immobilized fungus was longer. It was necessary for the only medium to be changed in order to get the immobilized growing fungus to continue producing cellulase. In this instance there was no difference of lag time in comparison with the free cells, and the supply of cellulose powder and polypepton was reduced to two-thirds. After 23 exchanges of the medium (2.6 mg cellulose powder/1 cm(3) nonwoven materials) FPA value was maintained. The periodic batch culture was continued for 69 days.

摘要

嗜热真菌嗜纤维分枝孢子菌被固定在非织造材料上用于生产纤维素酶。培养基中纤维素粉的浓度是控制纤维素酶产生的一个重要因素。当非织造材料中纤维素粉的浓度超过4%时,纤维素酶的产生受到抑制。固定化真菌的生长取决于非织造材料中的空隙。固定化生长的真菌被非织造材料保留,上清液培养基中不含菌丝体。固定化生长真菌的热稳定性高于游离真菌。固定化真菌产生的滤纸酶活性与游离菌丝体相同,但固定化真菌产生纤维素酶的延迟时间更长。为了使固定化生长真菌继续产生纤维素酶,唯一的方法是更换培养基。在这种情况下,与游离细胞相比,延迟时间没有差异,纤维素粉和蛋白胨的供应量减少到三分之二。经过23次培养基更换(2.6毫克纤维素粉/1立方厘米非织造材料)后,滤纸酶活性值得以维持。分批培养持续了69天。

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