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以废烹调油为生物工厂生产生物柴油的解脂耶氏酵母 NCIM 3589 突变株。

Mutants of Yarrowia lipolytica NCIM 3589 grown on waste cooking oil as a biofactory for biodiesel production.

机构信息

Institute of Bioinformatics and Biotechnology, Savitribai Phule Pune University, Pune, 411 007, India.

Department of Biotechnology, Savitribai Phule Pune University, Pune, 411 007, India.

出版信息

Microb Cell Fact. 2017 Oct 24;16(1):176. doi: 10.1186/s12934-017-0790-x.

Abstract

BACKGROUND

Oleaginous yeasts are fast emerging as a possible feedstock for biodiesel production. Yarrowia lipolytica, a model oleaginous yeast is known to utilize a variety of hydrophobic substrates for lipid accumulation including waste cooking oil (WCO). Approaches to increase lipid content in this yeast include metabolic engineering which requires manipulation of multiple genes in the lipid biosynthesis pathway. A classical and cost-effective approach, namely, random chemical mutagenesis on the yeast can lead to increased production of biodiesel as is explored here.

RESULTS

In this study, chemical mutagenesis using the alkylating agent, N- methyl-N'-nitro-N-nitrosoguanidine (MNNG) as well as an additional treatment with cerulenin, a fatty acid synthase inhibitor generated 800 mutants of Y. lipolytica NCIM 3589 (761 MNNG treated and 39 MNNG + cerulenin treated). A three-stage screening using Sudan Black B plate technique, Nile red fluorimetry and total lipid extraction using solvent was performed, which enabled selection of ten high lipid yielding mutants. Time course studies of all the ten mutants were further undertaken in terms of biomass, lipid yield and lipid content to select three stable mutants (YlB6, YlC7 and YlE1) capable of growing and accumulating lipid on WCO, with lipid contents of 55, 60 and 67% as compared to 45% for the wild type. The mutants demonstrated increased volumetric lipid productivities (0.062, 0.044 and 0.041 g L h) as compared to the wild type (0.033 g L h). The fatty acid profile of the three mutants consisted of a high content of C16 and C18 saturated and monounsaturated fatty acids and was found to be suitable for biodiesel production. The fuel properties, namely, density, kinematic viscosity, total acid number, iodine value of the three mutants were evaluated and found to lie within the limits specified by internationally accepted standards. Additionally, it was noted that the mutants demonstrated better cetane numbers and higher heating values than the wild type strain.

CONCLUSION

The chemical mutagenesis strategy adopted in this study resulted in the successful isolation of three stable high SCO yielding mutants. The mutants, namely, YlB6, YlC7 and YlE1 exhibited a 1.22, 1.33 and 1.49-fold increase in lipid contents when grown on 100 g L waste cooking oil than the parental yeast strain. The fatty acid methyl ester (FAME) profiles of all the three mutants was determined to be suitable for biodiesel suggesting their potential applicability while simultaneously addressing the management of waste cooking oil.

摘要

背景

油脂酵母作为生物柴油生产的潜在原料正迅速崭露头角。产油酵母假丝酵母(Yarrowia lipolytica)已知可利用多种疏水性底物积累脂质,包括废弃食用油(WCO)。提高该酵母中脂质含量的方法包括代谢工程,这需要对脂质生物合成途径中的多个基因进行操作。一种经典且具有成本效益的方法是对酵母进行随机化学诱变,正如这里所探索的那样,这可以导致生物柴油产量的增加。

结果

在这项研究中,使用烷化剂 N-甲基-N'-硝基-N-亚硝基胍(MNNG)进行化学诱变以及使用脂肪酸合酶抑制剂 Cerulenin 进行额外处理,生成了 800 个产油酵母假丝酵母 NCIM 3589 的突变体(761 个 MNNG 处理和 39 个 MNNG+Cerulenin 处理)。使用苏丹黑 B 平板技术、尼罗红荧光法和溶剂提取总脂质进行了三阶段筛选,从而选择了 10 个产脂量高的突变体。对所有 10 个突变体进行了生物质、脂质产量和脂质含量的时程研究,以选择能够在 WCO 上生长和积累脂质的三个稳定突变体(YlB6、YlC7 和 YlE1),其脂质含量分别为 55%、60%和 67%,而野生型为 45%。与野生型(0.033 g L h)相比,突变体表现出更高的比体积脂质产率(0.062、0.044 和 0.041 g L h)。三个突变体的脂肪酸谱由高含量的 C16 和 C18 饱和和单不饱和脂肪酸组成,适合生物柴油生产。对三个突变体的燃料特性,即密度、运动粘度、总酸值、碘值进行了评估,发现它们均在国际公认标准规定的范围内。此外,还注意到突变体的十六烷值和高热值均高于野生型菌株。

结论

本研究采用的化学诱变策略成功分离出三个稳定的高产油脂突变体。突变体 YlB6、YlC7 和 YlE1 在 100 g L 废弃食用油上生长时,脂质含量比亲本酵母菌株分别增加了 1.22、1.33 和 1.49 倍。所有三个突变体的脂肪酸甲酯(FAME)谱均适合生物柴油,表明它们具有潜在的适用性,同时解决了废弃食用油的管理问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cb8/5655982/753e1c4bd958/12934_2017_790_Fig1_HTML.jpg

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