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瘤胃厌氧真菌奥皮诺霉和普通腔囊霉的纤维素分解酶

Cellulolytic enzymes of rumen anaerobic fungi Orpinomyces joyonii and Caecomyces communis.

作者信息

Hodrová B, Kopecný J, Kás J

机构信息

Institute of Animal Physiology and Genetics, Czech Academy of Sciences, Prague, Czech Republic.

出版信息

Res Microbiol. 1998 Jun;149(6):417-27. doi: 10.1016/s0923-2508(98)80324-0.

Abstract

The rumen anaerobic fungi Orpinomyces joyonii A4 and Caecomyces communis JB1 were grown on microcrystalline cellulose (MC) and alfalfa hay. The cellular distribution of cellulases produced by these organisms was monitored. Fungal cultures were separated into extracellular, intracellular and cell wall fractions and assayed for endoglucanase (EG) and beta-glucosidase activity. In both fungal isolates, EG activity was the highest in the extracellular fraction regardless of the substrate used. The beta-glucosidase activity produced by O. joyonii was mainly found in the cell wall fraction. On the contrary, the same enzyme activity in C. communis predominated in the extracellular fraction. The polycentric isolate A4 more efficiently utilized both substrates, produced more short chain fatty acids (up to 31 mmol/l) and showed higher total levels of EG (2744 nmol glucose/h/ml) than the monocentric strain JB1. On the other hand, beta-glucosidase (9033 nmol glucose/h/ml) activity was the highest in cultures of C. communis grown on cellulose. In cultures of O. joyonii grown on MC, the production of yellow affinity substance (YAS) with similar properties compared with yellow substance from Clostridium thermocellum was observed. This compound increased the adsorption of fungal cellulases to MC the temperature and pH range tested.

摘要

瘤胃厌氧真菌约氏奥尔平霉A4和普通腔囊霉JB1在微晶纤维素(MC)和苜蓿干草上生长。监测了这些微生物产生的纤维素酶的细胞分布。将真菌培养物分为细胞外、细胞内和细胞壁部分,并测定内切葡聚糖酶(EG)和β-葡萄糖苷酶活性。在这两种真菌分离物中,无论使用何种底物,EG活性在细胞外部分最高。约氏奥尔平霉产生的β-葡萄糖苷酶活性主要存在于细胞壁部分。相反,普通腔囊霉中的相同酶活性在细胞外部分占主导。多中心分离物A4比单中心菌株JB1更有效地利用两种底物,产生更多的短链脂肪酸(高达31 mmol/l),并显示出更高的EG总水平(2744 nmol葡萄糖/h/ml)。另一方面,在以纤维素为生长底物的普通腔囊霉培养物中,β-葡萄糖苷酶(9033 nmol葡萄糖/h/ml)活性最高。在以MC为生长底物的约氏奥尔平霉培养物中,观察到产生了与嗜热栖热菌的黄色物质性质相似的黄色亲和物质(YAS)。在测试的温度和pH范围内,该化合物增加了真菌纤维素酶对MC的吸附。

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