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Oleaginous yeasts from Ethiopia

机译:埃塞俄比亚的含油酵母

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摘要

Oleaginous microorganisms can produce high amounts of oil (>20 % of their biomass) under suitable cultivation conditions. In this research work 200 samples were collected from soil, plant surfaces (leaves, flowers and fruits), waste oils from traditional oil milling houses and dairy products (cheese, milk and yoghurt) in Ethiopia. Three hundred and forty yeast colonies were isolated from these samples. By applying Sudan III staining tests, 18 strains were selected as possible oleaginous yeasts. The 18 strains were identified and characterized for their lipid production as a feedstock for biodiesel production in the future. They were identified using morphological and physiological methods as well as sequencing the 3′end of the small-subunit rRNA gene, the internal transcribed spacer regions (ITS; ITS 1, ITS 2 and the intervening 5.8S rRNA gene), and the D1/D2 domain of the 26S rRNA gene. The 18 yeasts were identified as Cutaneotrichosporon curvatus (syn, Cryptococcus curvatus) (PY39), Rhodotorula kratochvilovae (syn, Rhodosporidium kratochvilovae) (SY89), Rhodotorula dairenensis (SY94) and Rhodotourula mucilaginosa (SY09, SY18, SY20, PY21, PY23, PY25, SY30, PY32, SY43, PY44, SY52, PY55, PY61, SY75 and PY86). Under nitrogen-limited cultivation conditions, R. mucilaginosa PY44 produced the highest biomass (15.10 ± 0.54 g/L), while R. mucilaginosa PY32 produced the lowest biomass (10.32 ± 0.18 g/L). The highest lipid yield of 6.87 ± 0.62 g/L and lipid content of 46.51 ± 0.70 % were attained by C. curvatus (syn, C. curvatus) PY39. On the other hand, R. mucilaginosa PY61 gave the lowest lipid yield (2.06 ± 0.52 g/L) and R. mucilaginosa SY52 gave the lowest lipid content of 16.99 ± 0.85 %. The results in this research work suggest that much more oleaginous yeasts can be isolated from Ethiopian environment. On the basis of their substantial lipid production abilities, the three oleaginous yeast strains PY39, SY89 and SY18 were selected and recommended for further optimization processes.
机译:在适当的培养条件下,油生微生物可以产生大量的油(占生物质的20%以上)。在这项研究工作中,从埃塞俄比亚的土壤,植物表面(叶子,花朵和水果),传统制油厂的废油和乳制品(奶酪,牛奶和酸奶)中收集了200个样品。从这些样品中分离出了340个酵母菌落。通过进行苏丹III染色测试,选择了18个菌株作为可能的含油酵母。确定了18个菌株并对其脂质生产进行了表征,以作为将来生物柴油生产的原料。使用形态学和生理学方法对它们进行鉴定,并对小亚基rRNA基因的3'端,内部转录的间隔区(ITS; ITS 1,ITS 2和中间的5.8S rRNA基因)和D1 / 26S rRNA基因的D2结构域。这18个酵母菌被鉴定为弯曲皮肤角s(Canetanotrichosporon curvatus(syn,Cryptococcus curvatus))(PY39),克拉多红酵母(Rhodotorula kratochvilovae)(SY89),黛氏红假丝酵母(SY94)和黏皮红假丝酵母Rhodotorula mucilaginosa(SY09,SY18,SY20,Y18,P20,P23) ,SY30,PY32,SY43,PY44,SY52,PY55,PY61,SY75和PY86)。在氮限制的栽培条件下,粘菌R.PY44产生最高的生物量(15.10±0.54 g / L),而粘菌R.Puc32产生最低的生物量(10.32±0.18 g / L)。弯曲梭菌(Syn,C. curvatus)PY39的最高脂质产量为6.87±0.62 g / L,脂质含量为46.51±0.70%。另一方面,黏液鼠R.PY61的脂质产量最低(2.06±0.52 g / L),黏液鼠SY52的脂质含量最低,为16.99±0.85%。这项研究工作的结果表明,可以从埃塞俄比亚环境中分离出更多的含油酵母。基于其实质性的脂质生产能力,选择了三种油质酵母菌株PY39,SY89和SY18,并推荐用于进一步的优化过程。

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