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Screening of Oleaginous Yeasts and Optimization for Lipid Production Using Crude Glycerol as a Carbon Source

机译:用粗甘油作为碳源筛选油脂酵母的筛选和优化脂质生产

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Eight hundreds and eighty nine yeast strains were isolated from soils and wastes of palm oil mill and biodiesel plant in southern region of Thailand using glucose or glycerol as carbon source and at acidic condition (pH 4.0) or neutral condition (pH 6.0) with 0.0001% chloramphenicol. By applying Sudan Black B tests, 23 strains were identified as potential lipid producer or oleaginous yeast. The lipid contents of these 23 strains were compared in crude glycerol based medium. It was found that BY4-523 accumulated highest lipid content up to 53.28% while JU4-57 grew fastest and gave comparable high lipid content 41.50%. They were identified as Kodamaea ohmeri and Trichosporonoides spathulata, respectively. Among organic nitrogen sources tested, a mixture of yeast extract and peptone (1:1) gave the best biomass (17.05 g/L for T. spathulata and 11.1 g/L for K. ohmeri) and the maximum lipid production (10.43 g/L for T. spathulata and 4.53 g/L for K. ohmeri). In the view point of economic strategy, the cheaper inorganic nitrogen sources were also tested. Among inorganic nitrogen sources tested, ammonium sulfate was selected as a suitable nitrogen source. It gave the best biomass (9.17 g/L for T. spathulata and 10.45 g/L for K. ohmeri) and the maximum lipid production (3.85 g/L for T. spathulata and 3.17 g/L for K. ohmeri). The results showed that the newly isolated yeasts could grow and accumulate high lipid content in crude glycerol based medium supplemented with only ammonium sulfate. The optimal medium composition for both strains was 0.5% ammonium sulfate and 10% crude glycerol (C/N ratio of 17). Under this condition, the maximum biomass of 10.40 g/L and lipid production of 4.45 g/L were achieved for T. spathulata. Similarly, K. ohmeri also reached the maximum biomass of 10.50 g/L and lipid production of 3.22 g/L.
机译:八百和八十九个酵母菌株从泰国南部地区的棕榈油厂和生物柴油厂的土壤和生物柴油植物中分离出来,使用葡萄糖或甘油作为碳源和酸性条件(pH 4.0)或中性条件(pH6.0),0.0001%氯霉素。通过施加苏丹黑B试验,将23个菌株鉴定为潜在的脂质生产者或含油​​酵母。将这些23株的脂质含量与粗甘油基于甘油基于甘油的培养基进行比较。发现BYT4-523累积最高脂质含量高达53.28%,而JU4-57增长最快,并具有相当的高脂质含量41.50%。它们分别被鉴定为Kodamaea Ohmeri和TrichosporoNoides Spathulata。测试的有机氮源中,酵母提取物和蛋白胨(1:1)的混合物给出了最佳生物量(用于尖头的17.05g / l,11.1g / L对于K.Hmmeri)和最大脂质生产(10.43克/ l对于尖头和4.53克/ l的K. Ohmeri)。在经济策略的观点中,还测试了更便宜的无机氮源。在测试的无机氮源中,选择硫酸铵作为合适的氮源。它给出了最好的生物量(用于尖头的9.17g / l,适用于10.45克/克的K. Ohmeri)和最大的脂质生产(3.85克/升Spathulata和3.17g / L的K. Ohmmeri)。结果表明,新隔离的酵母可以在补充有硫酸铵的粗甘油基培养基中生长和积累高脂质含量。两种菌株的最佳培养基组合物为0.5%硫酸铵和10%粗甘油(C / N比为17)。在这种情况下,对于Spathulata实现了10.40g / L和4.45g / L的最大生物量。类似地,K. Ohmeri还达到了10.50克/升的最大生物质和3.22克/升的脂质生产。

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