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Screening and optimization of γ-aminobutyric acid production from Monascus sanguineus under solid-state fermentation

机译:固态发酵红曲霉的γ-氨基丁酸生产的筛选与优化

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The aim of this study was to screen and optimize γ-aminobutyric acid (GABA) production from Monascus sanguineus . Different agro-waste residues were screened for GABA production. The GABA yield was confirmed by thin-layer chromatography and mass spectrometry. GABA was quantified using the simple ninhydrin protocol. Plackett–Burman and response surface methodology (RSM) as statistical tools were applied for screening and optimization of GABA yield. The accuracy of the RSM model was demonstrated by generating a non-statistical model using artificial neural network methodology. Coconut oil cake was the best substrate for GABA yield of all the tested substrates. Monosodium glutamate (MSG), pH and incubation period were found to favour GABA production. Maximum yield predicted from the RSM model was 15.53?mg/gds with an MSG concentration of 0.05?g at pH 7.5 and an incubation period of 20 days. This study considered an unexplored Monascus sp., M. sanguineus , which has primarily been used for pigment production. The capability of producing GABA from M. sanguineus using coconut oil cake as a substrate is an economical method with potential industrial use. The convincing results from this work could be considered as a benchmark for exploiting the Monascus strain to obtain GABA-enriched functional food for human consumption.
机译:这项研究的目的是筛选和优化红曲霉产γ-氨基丁酸(GABA)的生产。筛选了不同的农业废物残留物以生产GABA。通过薄层色谱法和质谱法确认了GABA的产率。使用简单的茚三酮方案定量GABA。使用Plackett–Burman和响应面方法(RSM)作为统计工具来筛选和优化GABA产量。通过使用人工神经网络方法生成非统计模型来证明RSM模型的准确性。椰子油饼是所有测试底物中GABA收率的最佳底物。谷氨酸钠(MSG),pH和潜伏期有利于GABA的产生。从RSM模型预测的最大产量为15.53?mg / gds,在pH 7.5时的味精浓度为0.05?g,孵育期为20天。该研究认为未开发的红曲菌M. sanguineus已主要用于颜料生产。使用椰子油饼作为底物由红褐毛藻生产GABA的能力是一种经济的方法,具有潜在的工业用途。这项工作令人信服的结果可以被认为是利用红曲菌菌株获得供人食用的富含GABA的功能性食品的基准。

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