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首页> 外文期刊>International Scholarly Research Notices >Purification and Characterization of Haloalkaline, Organic Solvent Stable Xylanase from Newly Isolated Halophilic Bacterium-OKH
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Purification and Characterization of Haloalkaline, Organic Solvent Stable Xylanase from Newly Isolated Halophilic Bacterium-OKH

机译:从新分离的嗜盐细菌-OKH中纯化碱性有机溶剂稳定的木聚糖酶的碱性盐

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A novel, alkali-tolerant halophilic bacterium-OKH with an ability to produce extracellular halophilic, alkali-tolerant, organic solvent stable, and moderately thermostable xylanase was isolated from salt salterns of Mithapur region, Gujarat, India. Identification of the bacterium was done based upon biochemical tests and 16S rRNA sequence. Maximum xylanase production was achieved at pH 9.0 and 37°C temperature in the medium containing 15% NaCl and 1% (w/v) corn cobs. Sugarcane bagasse and wheat straw also induce xylanase production when used as carbon source. The enzyme was active over a range of 0–25% sodium chloride examined in culture broth. The optimum xylanase activity was observed at 5% sodium chloride. Xylanase was purified with 25.81%-fold purification and 17.1% yield. Kinetic properties such asKmandVmax were 4.2 mg/mL and 0.31 μmol/min/mL, respectively. The enzyme was stable at pH 6.0 and 50°C with 60% activity after 8 hours of incubation. Enzyme activity was enhanced by Ca2+, Mn2+, and Mg2+but strongly inhibited by heavy metals such as Hg2+, Fe3+, Ni2+, and Zn2+. Xylanase was found to be stable in organic solvents like glutaraldehyde and isopropanol. The purified enzyme hydrolysed lignocellulosic substrates. Xylanase, purified from the halophilic bacterium-OKH, has potential biotechnological applications.
机译:从印度古吉拉特邦米萨普尔地区的盐制盐厂中分离出一种新型的耐碱嗜盐细菌-OKH,该细菌具有产生细胞外嗜盐,耐碱,有机溶剂稳定和中度热稳定性的木聚糖酶的能力。细菌的鉴定是根据生化测试和16S rRNA序列进行的。在含有15%NaCl和1%in(w / v)玉米芯的培养基中,在pH 9.0和37°C的温度下,木聚糖酶的产量最高。当用作碳源时,甘蔗渣和麦草也会诱导木聚糖酶的产生。在培养液中检测到的该酶在0-25%氯化钠范围内具有活性。在5%氯化钠下观察到最佳的木聚糖酶活性。木聚糖酶以25.81%倍的纯化和17.1%的收率纯化。动力学性能,如KmandVmax分别为4.2μg/ mL和0.31μμmol/ min / mL。孵育8小时后,该酶在pH 6.0和50°C稳定,活性为60%。 Ca2 +,Mn2 +和Mg2 +增强了酶的活性,但Hg2 +,Fe3 +,Ni2 +和Zn2 +等重金属强烈抑制了酶的活性。发现木聚糖酶在有机溶剂如戊二醛和异丙醇中稳定。纯化的酶水解木质纤维素底物。从嗜盐细菌OKH纯化的木聚糖酶具有潜在的生物技术应用。

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