首页> 外文期刊>Bioprocess and Biosystems Engineering >Use Of Response Surface Methodology For Optimizing Process Parameters For High Inulinase Production By The Marine Yeast Cryptococcus Aureus G7a In Solid-state Fermentation And Hydrolysis Of Inulin
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Use Of Response Surface Methodology For Optimizing Process Parameters For High Inulinase Production By The Marine Yeast Cryptococcus Aureus G7a In Solid-state Fermentation And Hydrolysis Of Inulin

机译:响应面方法在优化固态发酵和水解菊粉中海洋金黄色隐球菌G7a生产菊粉的工艺参数中的应用

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The optimization of process parameters for high inulinase production by the marine yeast strain Cryptococcus aureus G7a in solid-state fermentation (SSF) was carried out using central composite design (CCD), one of the response surface methodologies (RSMs). We found that moisture, inoculation size, the amount ratio of wheat bran to rice husk, temperature and pH had great influence on inulinase production by strain G7a. Therefore, the CCD was used to evaluate the influence of the five factors on the inulinase production by strain G7a. Then, five levels of the five factors above were further optimized using the CCD. Finally, the optimal parameters obtained with the RSM were the initial moisture 61.5%, inoculum 2.75%, the amount ratio of wheat bran to rice husk 0.42, temperature 29 ℃, pH 5.5. Under the optimized conditions, 420.9 U g~(-1) of dry substrate of inulinase activity was reached in the solid-state fermentation culture of strain G7a within 120 h whereas the predicted maximum inulinase activity of 436.2 U g~(-1) of inulinase activity of 436.2 U g~(-1) of dry weight was derived from the RSM regression. This is the highest inulinase activity produced by the yeast strain reported so far. A large amount of monosaccharides and oligosaccha-rides were detected after inulin hydrolysis by the crude inulinase.
机译:使用中央复合设计(CCD),一种响应面方法(RSM)对海洋酵母菌株金黄色隐球菌G7a在固态发酵(SSF)中高菊粉酶生产的工艺参数进行了优化。我们发现,水分,接种量,麦麸与稻壳的比例,温度和pH值对菌株G7a的菊粉酶生产有很大影响。因此,使用CCD来评估这五个因素对菌株G7a的菊粉酶生产的影响。然后,使用CCD进一步优化了以上五个因素中的五个层次。最后,用RSM得到的最佳参数是初始水分61.5%,接种量2.75%,麦麸与稻壳的比例为0.42,温度为29℃,pH为5.5。在最佳条件下,菌株G7a的固态发酵培养物中在120 h内达到菊粉酶活性的干底物420.9 U g〜(-1),而预测的菊糖酶的最大菊粉酶活性为436.2 U g〜(-1)。从RSM回归得到436.2 U g〜(-1)干重的菊粉酶活性。这是迄今为止报道的酵母菌株产生的最高菊粉酶活性。粗菊粉酶水解菊粉后,检测到大量单糖和寡糖。

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