首页> 外文期刊>Indian Journal of Experimental Biology >Formulation of medium constituents by multiresponse analysis of central composite design to enhance chitinase production in Pantoea dispersa
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Formulation of medium constituents by multiresponse analysis of central composite design to enhance chitinase production in Pantoea dispersa

机译:通过中央复合设计的多响应分析来配制培养基成分,以提高泛菌中几丁质酶的产量

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In the present study, a high chitinase producing strain Pantoea dispersa was isolated from the sea dumps at Bhavnagar, India. Chitin, urea, CaCl2 and MgSO4 7H2O were variables used in central composite design for chitinase production. Chitinase, biomass and pH were the responses used in different models to evaluate individually fit ones. Quadratic model was found to be fit for chitinase response whereas in the case of biomass and pH, linear model was found to be fit without the effect of others. Chitinase production was optimized with respect to other responses such as biomass and pH in multiresponse analysis of response surface design by using desirability approach. In multiresponse analysis, following medium formulation (g/l), chitin, 15; urea, 0.32; CaCl2, 0.10 and MgSO4.7H2O, 0.08 was found to predict optimum chitinase production of 482.77 units/ml with overall highest desirability of 0.854 as compared to other formulations. The selection of model was done on the basis of high Adjusted R-squared value and lowered p-value for each model in individual analysis of each response. In multiresponse experiment, it was found that for response chitinase quadratic model and for responses pH, and biomass linear models were well fit. Through desirability analysis, it was found that in the chitinase production, pH was essential as compared to biomass in P. dispersa. Endochitinase and chitobiase actvities were also studied.
机译:在本研究中,从印度Bhavnagar的海堆中分离出了高产几丁质酶的菌株Pantoea dispersa。几丁质,尿素,CaCl2和MgSO4 7H2O是用于几丁质酶生产的中心复合设计中使用的变量。几丁质酶,生物量和pH值是在不同模型中用于评估单独拟合的响应。发现二次模型适合几丁质酶反应,而在生物量和pH的情况下,线性模型适合而不受到其他因素的影响。通过使用合意性方法,针对响应表面设计的多响应分析,针对其他响应(例如生物量和pH)优化了几丁质酶的生产。在多反应分析中,按照培养基配方(g / l),几丁质为15;尿素0.32;与其他配方相比,发现CaCl2(0.10)和MgSO4.7H2O(0.08)预测最佳几丁质酶产量为482.77单位/ ml,总体最高期望值为0.854。在对每个响应进行单独分析时,根据每个模型的高调整R平方值和降低的p值进行模型选择。在多响应实验中,发现对于响应几丁质酶的二次模型和对于响应pH的模型,生物量线性模型都非常合适。通过合意性分析,发现在几丁质酶的生产中,与分散体假单胞菌中的生物质相比,pH是必需的。内切酶和壳聚糖酶的活动也进行了研究。

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