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从嗜冷牛粪消化器中分离出的一种新型耐冷梭菌菌株PXYL1,其分泌不耐热木聚糖酶和纤维素酶。

A novel cold-tolerant Clostridium strain PXYL1 isolated from a psychrophilic cattle manure digester that secretes thermolabile xylanase and cellulase.

作者信息

Akila G, Chandra T S

机构信息

Department of Chemistry, Biochemistry Laboratory, Indian Institute of Technology, Madras, 600 036, Chennai, India.

出版信息

FEMS Microbiol Lett. 2003 Feb 14;219(1):63-7. doi: 10.1016/S0378-1097(02)01196-5.

Abstract

A Clostridium strain PXYL1 was isolated from a cold-adapted cattle manure biogas digester at 15 degrees C. It could grow at temperatures as low as 5 degrees C up to 50 degrees C with highest specific growth rate at 20 degrees C and is a psychrotroph. It produced extracellular hydrolytic enzymes namely xylanase, endoglucanase, beta-xylosidase, beta-glucosidase and filter paper cellulase, all of which had maximal activity at 20 degrees C. The induction of xylanase was highest on birch wood xylan (37 IU(mg protein)(-1)) compared with xylose (1.11 IU(mg protein)(-1)), cellobiose (1.43 IU(mg protein)(-1)) and glucose (no activity). The xylanase was thermolabile with a half-life of 30 min at 40 degrees C and 8 min at 50 degrees C but stable for over 2 h at 20 degrees C. The crude enzyme released reducing sugars (1.25 g l(-1)) from finger millet flour at 20 degrees C, while commercial food-grade xylanases showed no hydrolysis at this temperature. This is the first report of a Clostridium strain growing at 20 degrees C and producing an array of xylanolytic and cellulolytic enzymes, possessing low temperature optima of 20 degrees C, which may facilitate degradation of plant fibre under low-temperature conditions.

摘要

从一个15摄氏度的适应低温的牛粪沼气池分离出一株梭菌PXYL1。它能在低至5摄氏度到50摄氏度的温度下生长,在20摄氏度时比生长速率最高,是一种嗜冷菌。它产生胞外水解酶,即木聚糖酶、内切葡聚糖酶、β-木糖苷酶、β-葡萄糖苷酶和滤纸纤维素酶,所有这些酶在20摄氏度时活性最高。与木糖(1.11 IU(mg蛋白质)-1)、纤维二糖(1.43 IU(mg蛋白质)-1)和葡萄糖(无活性)相比,桦木木聚糖上木聚糖酶的诱导作用最高(37 IU(mg蛋白质)-1)。该木聚糖酶热不稳定,在40摄氏度下半衰期为30分钟,在50摄氏度下为8分钟,但在20摄氏度下稳定超过2小时。粗酶在20摄氏度时从龙爪稷粉中释放出还原糖(1.25 g l-1),而商业食品级木聚糖酶在该温度下无水解作用。这是关于一株梭菌在20摄氏度生长并产生一系列木聚糖分解酶和纤维素分解酶的首次报道,这些酶的最适温度为20摄氏度,这可能有助于在低温条件下植物纤维的降解。

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