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Application of the Response Surface Methodology to Optimize the Fermentation Parameters for Enhanced Docosahexaenoic Acid (DHA) Production by Thraustochytrium sp. ATCC 26185

机译:响应面法在优化破囊壶菌产增强二十二碳六烯酸(DHA)发酵参数中的应用。 ATCC 26185

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The aim of this study was to determine the cumulative effect of fermentation parameters and enhance the production of docosahexaenoic acid (DHA) by Thraustochytrium sp. ATCC 26185 using response surface methodology (RSM). Among the eight variables screened for effects of fermentation parameters on DHA production by Plackett-Burman design (PBD), the initial pH, inoculum volume, and fermentation volume were found to be most significant. The Box-Behnken design was applied to derive a statistical model for optimizing these three fermentation parameters for DHA production. The optimal parameters for maximum DHA production were initial pH: 6.89, inoculum volume: 4.16%, and fermentation volume: 140.47 mL, respectively. The maximum yield of DHA production was 1.68 g/L, which was in agreement with predicted values. An increase in DHA production was achieved by optimizing the initial pH, fermentation, and inoculum volume parameters. This optimization strategy led to a significant increase in the amount of DHA produced, from 1.16 g/L to 1.68 g/L. Thraustochytrium sp. ATCC 26185 is a promising resource for microbial DHA production due to the high-level yield of DHA that it produces, and the capacity for large-scale fermentation of this organism. View Full-Text.
机译:这项研究的目的是确定发酵参数的累积效应,并增强破囊壶菌属物种产生二十二碳六烯酸(DHA)的能力。使用响应面方法(RSM)的ATCC 26185。通过Plackett-Burman设计(PBD)筛选出的发酵参数对DHA产生的影响的八个变量中,初始pH,接种量和发酵量最为重要。 Box-Behnken设计用于推导用于优化这三个发酵参数以生产DHA的统计模型。产生最大DHA的最佳参数分别是初始pH:6.89,接种量:4.16%和发酵量:140.47 mL。 DHA生产的最大产量为1.68 g / L,与预测值一致。通过优化初始pH,发酵和接种量参数,实现了DHA产量的增加。这种优化策略导致DHA生成量从1.16 g / L显着增加到1.68 g / L。破囊壶菌ATCC 26185是微生物DHA生产的有前途的资源,因为它可产生高水平的DHA,并且具有该生物的大规模发酵能力。查看全文。

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