首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Candida utilis assimilates oligomeric sugars in rice straw hydrolysate via the Calcium-Capturing-by-Carbonation (CaCCO) process for glutathione- and cell-biomass production
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Candida utilis assimilates oligomeric sugars in rice straw hydrolysate via the Calcium-Capturing-by-Carbonation (CaCCO) process for glutathione- and cell-biomass production

机译:米假丝酵母通过钙的碳捕获法(CaCCO)吸收稻草水解产物中的低聚糖,用于生产谷胱甘肽和细胞生物质

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摘要

Rice-straw hydrolysate (RSH) prepared via the CaCCO (Calcium Capturing by Carbonation) process contains not only monosaccharides but also significant amounts of oligosaccharides. In this study, a glutathione-producing yeast, Candida utilis NBRC 0626, was found to assimilate those oligosaccharides. The yields of reduced glutathione (GSH) and dry cell weight (DCW) per consumed sugars in a medium with RSH after 72 h incubation were 10.1 mg/g-sugars and 0.49 g/g-sugars, respectively. The yields were comparative to those in a medium containing a model monosaccharide mix, suggesting that the assimilated oligosaccharides contribute to additional GSH and DCW production. Glycosyl linkage analysis indicated that the yeast could cleave xylose-, galactose-, and arabinose residues as well as glucose residues at the non-reducing ends. After 72 h incubation, 99.1% of the total glucose residues and 84.2% of the total xylose residues in RSH were depleted. Thus the yeast could be applied for efficient utilization of lignocellulosic hydrolysates.
机译:通过CaCCO(碳酸捕获钙)工艺制备的稻草水解物(RSH)不仅包含单糖,而且还包含大量的寡糖。在这项研究中,发现了一种生产谷胱甘肽的酵母,念珠菌NBRC 0626,可以同化这些寡糖。孵育72小时后,带有RSH的培养基中每消耗的糖的还原型谷胱甘肽(GSH)和干细胞重量(DCW)的产量分别为10.1 mg / g糖和0.49 g / g糖。产量与含有模型单糖混合物的培养基的产量相比,表明同化的寡糖有助于增加GSH和DCW的产量。糖基键合分析表明,该酵母可以在非还原端切割木糖,半乳糖和阿拉伯糖残基以及葡萄糖残基。温育72小时后,RSH中的99.1%的总葡萄糖残基和84.2%的总木糖残基被耗尽。因此,该酵母可用于有效利用木质纤维素水解产物。

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