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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Sweetpotato vines hydrolysate induces glycerol to be an effective substrate for lipid production of Trichosporon fermentans
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Sweetpotato vines hydrolysate induces glycerol to be an effective substrate for lipid production of Trichosporon fermentans

机译:甘薯藤水解物诱导甘油成为发酵曲霉菌脂质的有效底物

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By co-fermented with sweetpotato vines hydrolysate (SVH), glycerol can be used as an effective substrate for Trichosporon fermentans to produce lipids. Submerged fermentation results showed that T. fermentans exhibited a maximum lipid yield of 7.45gl~(-1) with a biomass of 17.95gl~(-1) on 10% SVH added glycerol mineral medium (Glycerol MM-10% SVH), which was 4.34-fold higher than that on glycerol mineral medium. Lipids produced on glycerol based media exhibited a significantly different fatty acid composition profile from that produced on sugar based media accompanying by a sharp increase in polyunsaturated fatty acids content. Biochemical behaviors characterization further demonstrated that SVH has a remarkable promoting effect on the biomass formation and glycerol uptake. The extremely high lipid yield on Glycerol MM-10% SVH was mainly attributed to the enhancement of SVH on biomass, although SVH is an excellent nutrient supplier for lipid accumulation due to its low nitrogen availability.
机译:通过与甘薯葡萄藤水解产物(SVH)共同发酵,甘油可以用作发酵曲霉产脂蛋白的有效底物。淹没发酵结果表明,发酵酵母在10%SVH添加甘油矿物培养基(甘油MM-10%SVH)上的最大脂质产量为7.45gl〜(-1),生物量为17.95gl〜(-1)。比甘​​油矿物培养基高4.34倍。在甘油基培养基上产生的脂质显示出与在糖基培养基上产生的明显不同的脂肪酸组成特征,同时多不饱和脂肪酸含量急剧增加。生化行为表征进一步证明,SVH对生物量形成和甘油摄取具有显着的促进作用。甘油MM-10%SVH的极高脂质产量主要归因于SVH对生物质的增强,尽管SVH由于氮的利用率低而是脂质积累的极佳营养素供应商。

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