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Cellulase Production by a Thermophilic Clostridium Species

机译:嗜热梭菌属物种产生的纤维素酶

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Strain M7, a thermophilic, anaerobic, terminally sporing bacterium (0.6 by 4.0 μm) was isolated from manure. It degraded filter paper in 1 to 2 days at 60 C in a minimal cellulose medium but was stimulated by yeast extract. It fermented a wide variety of sugars but produced cellulase only in cellulose or carboxymethyl-cellulose media. Cellulase synthesis not only was probably repressed by 0.4% glucose and 0.3% cellobiose, but also cellulase activity appeared to be inhibited by these sugars at these concentrations. Both C1 cellulase (degrades native cellulose) and Cx cellulase (β-1,4-glucanase) activities in strain M7 cultures were assayed by measuring the liberation of reducing sugars with dinitrosalicylic acid. Both activities had optima at pH 6.5 and 67 C. One milliliter of a 48-h culture of strain M7 hydrolyzed 0.044-meq of glucose per min from cotton fibers. The cellulase(s) from strain M7 was extracellular, produced during exponential growth, but was not free in the growth medium until approximately 30% of the cellulose was hydrolyzed. Glucose and cellobiose were the major soluble products liberated from cellulose by the cellulase. ZnCl2 precipitation appeared initially to be a good method for the concentration of cellulase activity, but subsequent purification was not successful. Isoelectric focusing indicated the presence of four Cx cellulases (pI 4.5, 6.3, 6.8, and 8.7). The rapid production and high activity of cellulases from this organism strongly support the basic premise that increased hydrolysis of native cellulose is possible at elevated temperature.
机译:从粪便中分离出菌株M7,一种嗜热,厌氧,末端孢子形成的细菌(0.6 x 4.0μm)。在最少量的纤维素培养基中,它在60°C下于1-2天使滤纸降解,但被酵母提取物刺激。它发酵各种各样的糖,但仅在纤维素或羧甲基纤维素培养基中产生纤维素酶。纤维素酶的合成不仅可能受到0.4%的葡萄糖和0.3%的纤维二糖的抑制,而且在这些浓度下这些糖似乎也抑制了纤维素酶的活性。通过测量二硝基水杨酸还原糖的释放来测定M7菌株培养物中的C1纤维素酶(降解天然纤维素)和Cx纤维素酶(β-1,4-葡聚糖酶)活性。两种活性在pH 6.5和67℃均达到最佳。一毫升M7菌株48小时培养物每分钟从棉纤维中水解0.044meq的葡萄糖。来自菌株M7的一种或多种纤维素酶是细胞外的,在指数生长期间产生,但是直到约30%的纤维素被水解才在生长培养基中游离。葡萄糖和纤维二糖是纤维素酶从纤维素释放的主要可溶性产物。最初沉淀ZnCl2似乎是浓缩纤维素酶活性的一种好方法,但随后的纯化并不成功。等电聚焦表明存在四个Cx纤维素酶(pI 4.5、6.3、6.8和8.7)。这种生物的纤维素酶的快速生产和高活性强烈支持以下基本前提:在升高的温度下,天然纤维素的水解可能增加。

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