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首页> 外文期刊>Enzyme and Microbial Technology >Bioremediase a unique protein from a novel bacterium BKH1, ushering a new hope in concrete technology
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Bioremediase a unique protein from a novel bacterium BKH1, ushering a new hope in concrete technology

机译:生物修复新型细菌BKH1中的独特蛋白质,为混凝土技术带来了新希望

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摘要

A novel hot spring bacterial strain was isolated and characterized from Bakreshwar, West Bengal, India. Phylogenetic analysis of partial 16 S-rRNA gene sequence (697 nucleotides) suggested that the isolate was affiliated with the family 'Firmicutes' and 99.8% homologous with Thermoanaerobactor thermohydro-sulfuricus. A unique thermostable and high pH tolerant protein (28 kDa) secreted by the bacterium was isolated whose N-terminal partial sequence (25 AA) suggested that the protein was similar to mammalian carbonic anhydrase-II. This bacterium or its unique protein both increase the compressive (>25%) and tensile (>20%) strengths, hardness and elastic modulus of cementitious material when incorporated to the cement/cement-sand mixture. The protein (named as bioremediase) possesses silica leaching activity, which is increased by calcium ions. No esterase and/or proteolytic activities are present in the protein. The use of such isolated bacterium or its protein in concrete technology develops new construction material that may be used for self-healing concrete in future.
机译:从印度西孟加拉邦的巴克雷什瓦尔分离并鉴定了一种新型的温泉细菌菌株。对16个S-rRNA部分基因序列(697个核苷酸)的系统进化分析表明,该分离物与'Firmicutes'家族有亲缘关系,并且与嗜热厌氧菌thermohydrobaculfurtherhydrohydro-sulpuricus具有99.8%同源性。分离了由细菌分泌的独特的热稳定和高pH耐受蛋白(28 kDa),其N端部分序列(25 AA)表明该蛋白与哺乳动物碳酸酐酶II类似。当掺入水泥/水泥-砂混合物中时,这种细菌或其独特的蛋白质都可以提高水泥材料的抗压强度(> 25%)和抗张强度(> 20%),硬度和弹性模量。该蛋白质(称为生物修复酶)具有二氧化硅浸出活性,钙离子会增加该浸出活性。该蛋白质中不存在酯酶和/或蛋白水解活性。这种分离的细菌或其蛋白质在混凝土技术中的使用开发了新的建筑材料,将来可用于自愈混凝土。

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