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Characterization of Extracellular Thermophilic Amylase from Geobacillus sp. Isolated from Tattapani Hot Spring of Himachal Pradesh, India

机译:芽孢杆菌胞外嗜热淀粉酶的表征与印度喜马al尔邦的塔塔帕尼温泉隔离

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Geobacillus kaustrophilus PW11, Geobacillus thermoleovorans PW13 and Geobacillus toebii PS4 were isolated form Tattapani hotspring of Himachal Pradesh, India and characterized for extracellular amylase activity. All the three Geobacillus spp. exhibited thermophilic amylase activity, which was predominantly extracellular. The activity was optimum at 90°C and pH 7.0. Interestingly, no amylase activity was observed at temperature less than 40°C, indicating its thermophilic nature. Moreover, pre incubation of enzyme at 100°C enhanced the amylase activity. The specific activity of amylase ofPW1 1, PW13 and PS4 was 3898, 3597 and 3289 U mg~(-1), respectively at 90。C and pH 7.0. Starch, amylopectin and dextrin were observed to be the best substrates for amylase activity. Further, amylase activity of PW13 and PS4 remained unaffected in the presence of Triton X 100 (0.5%), but decreased by 40% in case of PW11 isolate. Among the metal ions tested, Mn~(2+),Co~92+) and Fe~(2+) enhanced the amylase activity ot PW11,PW13 and PS4 by 2-5 folds. While Hg~(2+) (lmM) strongly inhibited enzyme activity of PW13 and PS4, Cd~(2+) completely inhibited amylase activity of PW11. Amylase activity of PW13 and PS4 was enhanced by 2-2.5 folds in the presence of EDTA (5 mM). The thermophilic amylase activities of PW11,PW13 and PS4 are highly advantageous for downstream industrial applications.
机译:从印度喜马al尔邦的塔塔帕尼温泉中分离出嗜酸土芽孢杆菌PW11,嗜热地芽孢杆菌PW13和Toebii芽孢杆菌PS4,并对其胞外淀粉酶活性进行了表征。所有三个地芽孢杆菌属。表现出嗜热淀粉酶活性,主要是细胞外的。在90℃和pH 7.0下活性最佳。有趣的是,在低于40℃的温度下未观察到淀粉酶活性,表明其具有嗜热性。此外,将酶在100°C下预温育可增强淀粉酶活性。在90℃和pH 7.0下,PW1,PW13和PS4的淀粉酶的比活分别为3898、3597和3289 U mg·(-1)。淀粉,支链淀粉和糊精是淀粉酶活性的最佳底物。此外,在存在Triton X 100(0.5%)的情况下,PW13和PS4的淀粉酶活性保持不变,但在分离PW11的情况下降低了40%。在测试的金属离子中,Mn〜(2 +),Co〜92 +)和Fe〜(2+)使PW11,PW13和PS4的淀粉酶活性提高了2-5倍。 Hg〜(2+)(lmM)强烈抑制PW13和PS4的酶活性,而Cd〜(2+)完全抑制PW11的淀粉酶活性。在EDTA(5 mM)存在下,PW13和PS4的淀粉酶活性提高了2-2.5倍。 PW11,PW13和PS4的嗜热淀粉酶活性对于下游工业应用非常有利。

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