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Improvement of xylanase production by Aspergillus niger XY-1 using response surface methodology for optimizing the medium composition*

机译:使用响应面方法优化培养基成分,改善黑曲霉XY-1产生的木聚糖酶产量*

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摘要

Objective: To study the optimal medium composition for xylanase production by Aspergillus niger XY-1 in solid-state fermentation (SSF). Methods: Statistical methodology including the Plackett-Burman design (PBD) and the central composite design (CCD) was employed to investigate the individual crucial component of the medium that significantly affected the enzyme yield. Results: Firstly, NaNO3, yeast extract, urea, Na2CO3, MgSO4, peptone and (NH4)2SO4 were screened as the significant factors positively affecting the xylanase production by PBD. Secondly, by valuating the nitrogen sources effect, urea was proved to be the most effective and economic nitrogen source for xylanase production and used for further optimization. Finally, the CCD and response surface methodology (RSM) were applied to determine the optimal concentration of each significant variable, which included urea, Na2CO3 and MgSO4. Subsequently a second-order polynomial was determined by multiple regression analysis. The optimum values of the critical components for maximum xylanase production were obtained as follows: x 1 (urea)=0.163 (41.63 g/L), x 2 (Na2CO3)=−1.68 (2.64 g/L), x 3 (MgSO4)=1.338 (10.68 g/L) and the predicted xylanase value was 14374.6 U/g dry substrate. Using the optimized condition, xylanase production by Aspergillus niger XY-1 after 48 h fermentation reached 14637 U/g dry substrate with wheat bran in the shake flask. Conclusion: By using PBD and CCD, we obtained the optimal composition for xylanase production by Aspergillus niger XY-1 in SSF, and the results of no additional expensive medium and shortened fermentation time for higher xylanase production show the potential for industrial utilization.
机译:目的:研究黑曲霉XY-1在固态发酵(SSF)中生产木聚糖酶的最佳培养基组成。方法:采用包括Plackett-Burman设计(PBD)和中央复合设计(CCD)在内的统计方法来研究显着影响酶产率的培养基的各个关键成分。结果:首先,筛选了NaNO3,酵母提取物,尿素,Na2CO3,MgSO4,蛋白ept和(NH4)2SO4作为积极影响PBD木聚糖酶生产的重要因素。其次,通过评估氮源效应,尿素被证明是生产木聚糖酶最有效,最经济的氮源,并被用于进一步优化。最后,使用CCD和响应表面方法(RSM)确定每个显着变量的最佳浓度,其中包括尿素,Na2CO3和MgSO4。随后通过多元回归分析确定二阶多项式。获得最大木聚糖酶产量的关键成分的最佳值如下:x 1(脲)= 0.163(41.63 g / L),x 2(Na2CO3)=-1.68(2.64 g / L),x 3(MgSO4) = 1.338(10.68 g / L),木聚糖酶的预测值为14374.6 U / g干底物。在最佳条件下,黑曲霉XY-1在发酵48小时后产生的木聚糖酶达到14637 U / g干燥底物,并在摇瓶中加麦麸。结论:通过使用PBD和CCD,我们获得了黑曲霉XY-1在SSF中生产木聚糖酶的最佳组成,并且无需额外的昂贵培养基和缩短发酵时间即可获得更高木聚糖酶产量的结果表明具有工业利用潜力。

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