首页> 外文期刊>Turkish journal of biology >Lipase from new isolate Bacillus cereus ATA179: optimization of production conditions, partial purification, characterization and its potential in the detergent industry
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Lipase from new isolate Bacillus cereus ATA179: optimization of production conditions, partial purification, characterization and its potential in the detergent industry

机译:来自新孤立芽孢杆菌的脂肪酶ATA179:在洗涤剂行业的生产条件,部分纯化,表征及其潜力的优化

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In this study, 341 Bacillus sp. strains were isolated from agricultural soils of Turkey. The potent extracellular lipase producer was selected. It was identified by 16S rRNA, named as Bacillus cereus ATA179. Optimal nutritional and physical parameters for lipase production were determined. Sucrose as the carbon source, (NH 4 ) 2 HPO 4 as the nitrogen source, CaCl 2 as the metal ion were obtained. The best results of physical parameters were stated at 45°C, pH 7.0, shaking rate 50 rpm, inoculation amount 7% and inoculum age 24 h. ATA179 strain showed a 51% increase in enzyme production in the modified medium created by optimizing nutritional and physical conditions. Optimum pH value and temperature were found as 6.0 and 55 °C, respectively. CaCl 2 , Tween 20, Triton X-100 had an activating effect on enzyme activity. V max and K m kinetic values were found as 18.28 U/mL and 0.11 mM, respectively. The molecular weight was determined as 47 kDa. Lipase was found to be stable up to 75 days at -20 oC. The potential of the enzyme in detergent industry was also investigated. It was not affected by detergent additives, but was found to be effective in removing oils from contaminated fabrics. This new lipase may have potential to be used in detergent industry.
机译:在本研究中,341个杆菌SP。从土耳其农业土壤中分离出菌株。选择有效的细胞外脂肪酶生产商。它被16S rRNA鉴定为芽孢杆菌ATA179。确定了脂肪酶生产的最佳营养和物理参数。蔗糖作为碳源,(NH 4)2 HPO 4作为氮源,得到CaCl 2作为金属离子。物理参数的最佳结果在45°C,pH 7.0,摇头率50rpm,接种量7%和接种龄24小时。 ATA179菌株显示通过优化营养和物理条件产生的改性介质中的酶产生增加51%。最佳pH值和温度分别为6.0和55℃。 CaCl 2,Tween 20,Triton X-100对酶活性具有激活作用。 v Max和K m动力学值分别为18.28 u / ml和0.11mm。分子量确定为47kDa。发现脂肪酶在-20℃下稳定至75天。还研究了洗涤剂工业中酶的潜力。它不受洗涤剂添加剂的影响,但发现有效地去除来自污染的织物的油。这种新的脂肪酶可能​​有可能用于洗涤剂行业。

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