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Deproteinated Potato Wastewater as a Sustainable Nitrogen Source in Trichosporon domesticum Yeast Lipids Biosynthesis-a Concept of Valorization of Wastewater from Starch Industry

机译:剥夺的马铃薯废水作为Trichosporon Diversitum酵母脂质生物合成的可持续氮源 - 来自淀粉工业废水的算法概念

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摘要

This study determines the ability of an isolated Trichosporon domesticum yeast strain to accumulate intracellular lipids in media with deproteinated potato wastewater (DPW) containing various carbon sources. The yeast strain was isolated from kefir and identified by internal transcribed spacer (ITS) region sequence analysis. The sequence was deposited in GenBank under accession number MH094668, and the strain was deposited in Polish Collection of Microorganisms as T. domesticum PCM 2960. DPW is an inexpensive and valuable source of nitrogen, potassium, phosphorus, and other elements in yeast cultures. DPW supplemented with glucose medium was most effective at stimulating lipid biosynthesis by T. domesticum PCM 2960 and bioreactor incubation resulted in a final lipid yield of 4.8 g L-1. The lipids of the T. domesticum PCM 2960 biomass were characterized by high contents of linoleic acid ((Delta 9,12)C18:2), oleic acid ((Delta 9)C18:1), palmitic acid (C16:0), and alpha-linolenic acid ((Delta 9,12,15)C18:3). Theoretical calculations for biodiesel properties showed that the methylated esters of lipids from T. domesticum PCM 2960 biomass cannot be used as a biodiesel in diesel engines. Additionally, the ability to produce biofilm as one criterion for pathogenicity was tested. The ability for biofilm formation by the isolated strain was low. This study provides a promising solution for the more economical production of microbial lipids with DPW.
机译:本研究决定了分离的Trichosporon患者酵母菌菌株在含有各种碳源的脱蛋白盐废水(DPW)中培养基中细胞内脂质的能力。从Kefir中分离酵母菌株,并通过内转录的间隔物(其)区域序列分析鉴定。在加入号MH094668下沉积在Genbank中的序列,并且沉积在抛光剂的微生物收集中作为T.Inderationum PCM 2960.DPW是酵母培养物中的廉价且有价值的氮气,钾,磷等元素。补充有葡萄糖培养基的DPW最有效地刺激脂质生物合成的T. Diversitumum PCM 2960和生物反应器孵育导致了4.8g L-1的最终脂质产率。 T.umericum PCM 2960生物量的脂质的特征在于亚油酸((Delta 9,12)C18:2),油酸((Delta 9)C18:1),棕榈酸(C16:0),和α-亚麻酸((delta 9,12,15)c18:3)。生物柴油属性的理论计算表明,来自T.Taiventum PCM 2960生物量的脂质的甲基化酯不能用作柴油发动机的生物柴油。另外,测试生物膜作为一种致病性标准的能力。分离菌株生物膜形成的能力低。本研究提供了具有更经济的微生物脂质与DPW产生的有希望的解决方案。

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