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Extraction of peroxidase from various plant sources and its biodegradation studies on phenolic compounds

机译:多种植物来源过氧化物酶的提取及其对酚类化合物的生物降解研究

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The enzymatic approach for bio remediation process has gained attraction because of its significant action on pollutants and high catalytic action compared to that of the chemical catalyst. This study focuses on the action of peroxidase enzyme on phenolic compounds present in industrial wastes. Crude Peroxidase enzyme was extracted from vegetable sourcesradish, tomato, turnip and cabbage. The enzyme was found to be stable at an optimumtemperature range of 55-65° C and at an optimum pH of 6-6.5. Using Ammonium sulphate precipitation, the crude extract was purified and maximum yield was obtained when the salt concentration was 80%. Aqueous Two phase extraction was also carried out and peroxidise was separated from top phase. Gel permeation chromatography was also performed and it showed up to 9.43 fold purificationwithmaximumspecific activity of 10.94U/mg. The effect of inhibitor, Sodiumazide, on the enzyme was studied and it clearly indicated that the activity of the enzyme decreased with increase in concentration of the inhibitor. Phenol degradation by the enzyme peroxidase showed that increase in the degradation of phenol was observed at high concentration of enzyme. Maximum degradation was obtained by the enzyme from turnip. Thus peroxidase can be used for phenol degradation in near future.
机译:与化学催化剂相比,酶修复方法在生物修复过程中获得了广泛的关注,因为它对污染物的有效作用和高催化作用。这项研究的重点是过氧化物酶对工业废物中酚类化合物的作用。粗过氧化物酶是从萝卜,番茄,萝卜和白菜等蔬菜中提取的。发现该酶在55-65℃的最佳温度范围和6-6.5的最佳pH下是稳定的。使用硫酸铵沉淀,将粗提取物纯化,并且当盐浓度为80%时获得最大产率。还进行水两相萃取并将过氧化物与顶层分离。还进行了凝胶渗透色谱法,其显示出高达9.43倍的纯化,最大比活性为10.94U / mg。研究了抑制剂叠氮化钠对酶的影响,清楚地表明,酶的活性随抑制剂浓度的增加而降低。过氧化物酶对苯酚的降解表明,在高浓度的酶下,苯酚的降解增加。来自萝卜的酶获得最大的降解。因此,过氧化物酶可在不久的将来用于苯酚的降解。

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