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首页> 外文期刊>Indian Journal of Biotechnology >Factorial design for optimization of laccase production from Pleurotus ostreatus IMI 395545 and laccase mediated synthetic dye decolorization.
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Factorial design for optimization of laccase production from Pleurotus ostreatus IMI 395545 and laccase mediated synthetic dye decolorization.

机译:优化平菇IMI 395545漆酶生产和漆酶介导的合成染料脱色的析因设计。

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摘要

In the present study, Plackett-Burman design (PBD) followed by response surface methodology (RSM) was used to optimize the culture medium composition for laccase production from Pleurotus ostreatus IMI 395545. Influence of carbon, nitrogen (sources) and inducer were evaluated by Plackett-Burman design. The factors that induce positive effect on enzyme production were further optimized using central composite design of RSM. The multiple regression equation was used to optimize the values of carbon, nitrogen and inducer for maximum enzyme production. The optimized values were found to be 1.8 g L-1, 0.76 g L-1 and 164.95 micro M for glucose, ammonium nitrate and copper sulphate, respectively. The maximum enzyme activity of 2.7 U mL-1 obtained experimentally was very close to the predicted response, 2.5 U mL-1. Furthermore, optimized laccase was used for decolorization of synthetic dyes, such as, reactive blue 172 and reactive red 22, which are routinely used in textile industries. Fourier transform infrared spectroscopy was performed to confirm the decolorization of the studied dyes by laccase. Allium cepa toxicity test was performed, which indicated that root growth inhibition was dependent upon the concentration of dye.
机译:在本研究中,采用Plackett-Burman设计(PBD)和响应表面方法(RSM)来优化平菇IMI 395545生产漆酶的培养基组成。碳,氮(源)和诱导剂的影响通过Plackett-Burman设计。使用RSM的中心复合设计进一步优化了诱导酶产生积极作用的因素。多元回归方程用于优化碳,氮和诱导剂的值,以最大程度地产生酶。葡萄糖,硝酸铵和硫酸铜的最佳值分别为1.8 g L -1 ,0.76 g L -1 和164.95 microM。实验获得的最大酶活性为2.7 U mL -1 与预期的响应非常接近,即2.5 U mL -1 。此外,优化的漆酶用于合成染料的脱色,例如纺织工业中常规使用的活性蓝172和活性红22。进行傅里叶变换红外光谱以确认所研究的染料被漆酶脱色。进行了洋葱头皮毒性试验,该试验表明根的生长抑制取决于染料的浓度。

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