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A Novel Non-Cumbersome Approach Towards Biosynthesis of Pectic-Oligosaccharides by Non-Aflatoxigenic Aspergillus sp. Section Flavi Strain EGY1 DSM 101520 through Citrus Pectin Fermentation

机译:一种非黄曲霉菌属曲霉生物合成果胶寡糖的新型非繁琐方法。柑橘果胶发酵法制备黄病毒菌株EGY1 DSM 101520

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摘要

Pectic-Oligosaccharides (POS) have a growing potential in food and feed industries. To satisfy the demand of worldwide markets from POS and avoid the shortcomings of currently applied methodologies encountered in their preparation, the present study highlights a novel robust approach for POS biosynthesis. In the current approach, Aspergillus sp.section Flavi strain EGY1 DSM 101520 was grown on citrus pectin-based medium as a core POS production medium. POS' levels accumulated in the fungal fermentation broth were optimized through a three step sequential statistical mathematical methodology; Plackett-Burman design (PBD), Box-Behnken design (BBD) and canonical analysis. Three key determinants namely citrus pectin, peptone and NaH2PO4 were pointed out by PBD to impose significant consequences (P<0.05) on the process outcome (POS' levels). Optimal levels of these key determinants along with maximal of POS' levels were set by BBD and canonical analysis to be 2.28% (w/v) citrus pectin, 0.026% (w/v) peptone and 0.28% (w/v) NaH2PO4 to achieve a net amount of 1.3 g POS /2.28 g citrus pectin. Through this approach, a yield of 57% (w/w) POS of the total citrus pectin was obtained after 24 h of fungal growth on optimized citrus pectin–based medium. A fold enhancement of 13 times in POS' levels released in the fermentation fungal broth was realized by the end of the optimization strategy. This novel robust approach is considered a new insight towards POS biosynthesis via efficient, rapid and non-cumbersome procedure. To the best of authors' knowledge, the present work is the first article underlining detailed POS production from the fermentation broth of a fungus growing on citrus pectin-based medium.
机译:果胶寡糖(POS)在食品和饲料工业中具有不断增长的潜力。为了满足POS的全球市场需求并避免在准备过程中遇到的当前应用方法的不足,本研究着重介绍了一种新颖的,健壮的POS生物合成方法。在当前方法中,曲霉属部分黄病毒菌株EGY1 DSM 101520在作为主要POS生产培养基的基于柑橘果胶的培养基上生长。通过三步顺序统计数学方法优化了真菌发酵液中积累的POS水平。 Plackett-Burman设计(PBD),Box-Behnken设计(BBD)和规范分析。 PBD指出了柑橘果胶,蛋白p和NaH2PO4这三个关键决定因素对加工结果(POS'水平)产生了显着影响(P <0.05)。通过BBD和规范分析将这些关键决定因素的最佳水平以及POS的最高水平确定为2.28%(w / v)柑橘果胶,0.026%(w / v)蛋白ept和0.28%(w / v)NaH2PO4。净含量为1.3克POS /2.28克柑橘果胶。通过这种方法,在基于优化的基于柑桔果胶的培养基上生长24小时后,可得到柑桔果胶总POS的57%(w / w)。优化策略结束后,已将发酵真菌肉汤中释放的POS'水平提高了13倍。通过有效,快速且不麻烦的程序,这种新颖而强大的方法被认为是POS生物合成的新见解。就作者所知,本研究是第一篇文章,着重介绍了在基于柑橘果胶的培养基上生长的真菌的发酵液产生的POS的详细信息。

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