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通过过量表达二酰甘油酰基转移酶2提高产油微藻富油新绿藻中三酰甘油的产量并改变脂肪酸组成

Accelerated triacylglycerol production and altered fatty acid composition in oleaginous microalga Neochloris oleoabundans by overexpression of diacylglycerol acyltransferase 2.

作者信息

Klaitong Paeka, Fa-Aroonsawat Sirirat, Chungjatupornchai Wipa

机构信息

Institute of Molecular Biosciences, Mahidol University, Salaya Campus, Nakhon Pathom, 73170, Thailand.

出版信息

Microb Cell Fact. 2017 Apr 12;16(1):61. doi: 10.1186/s12934-017-0677-x.

Abstract

BACKGROUND

Microalgae are promising sources of lipid triacylglycerol (TAG) for biodiesel production. However, to date, microalgal biodiesel is technically feasible, but not yet economically viable. Increasing TAG content and productivity are important to achieve economic viability of microalgal biodiesel. To increase TAG content, oleaginous microalga Neochloris oleoabundans was genetically engineered with an endogenous key enzyme diacylglycerol acyltransferase 2 (NeoDGAT2) responsible for TAG biosynthesis.

RESULTS

The integration of NeoDGAT2 expression cassettes in N. oleoabundans transformant was confirmed by PCR. The neutral lipid accumulation in the transformant detected by Nile red staining was accelerated and 1.9-fold higher than in wild type; the lipid bodies in the transformant visualized under fluorescence microscope were also larger. The NeoDGAT2 transcript was two-fold higher in the transformant than wild type. Remarkably higher lipid accumulation was found in the transformant than wild type: total lipid content increased 1.6-to 2.3-fold up to 74.5 ± 4.0% dry cell weight (DCW) and total lipid productivity increased 1.6- to 3.2-fold up to 14.6 ± 2.0 mg/L/day; while TAG content increased 1.8- to 3.2-fold up to 46.1 ± 1.6% DCW and TAG productivity increased 1.6- to 4.3-fold up to 8.9 ± 1.3 mg/L/day. A significantly altered fatty acid composition was detected in the transformant compared to wild type; the levels of saturated fatty acid C16:0 increased double to 49%, whereas C18:0 was reduced triple to 6%. Long-term stability was observed in the transformant continuously maintained in solid medium over 100 generations in a period of about 4 years.

CONCLUSIONS

Our results demonstrate the increased TAG content and productivity in N. oleoabundans by NeoDGAT2 overexpression that may offer the first step towards making microalgae an economically feasible source for biodiesel production. The strategy for genetically improved microalga presented in this study can be applied to other microalgal species possessing desired characteristics for industrial biofuel production.

摘要

背景

微藻是生产生物柴油的有前景的三酰甘油(TAG)来源。然而,迄今为止,微藻生物柴油在技术上可行,但在经济上尚不具备可行性。提高TAG含量和生产力对于实现微藻生物柴油的经济可行性很重要。为了提高TAG含量,对富含油脂的微藻新绿藻(Neochloris oleoabundans)进行了基因工程改造,使其带有负责TAG生物合成的内源性关键酶二酰甘油酰基转移酶2(NeoDGAT2)。

结果

通过PCR确认了NeoDGAT2表达盒在新绿藻转化体中的整合。尼罗红染色检测到转化体中的中性脂质积累加速,比野生型高1.9倍;荧光显微镜下观察到转化体中的脂质体也更大。转化体中NeoDGAT2转录本比野生型高两倍。在转化体中发现脂质积累显著高于野生型:总脂质含量增加了1.6至2.3倍,达到74.5±4.0%干细胞重量(DCW),总脂质生产力增加了1.6至3.2倍,达到14.6±2.0毫克/升/天;而TAG含量增加了1.8至3.2倍,达到46.1±1.6%DCW,TAG生产力增加了1.6至4.3倍,达到8.9±1.3毫克/升/天。与野生型相比,在转化体中检测到脂肪酸组成发生了显著变化;饱和脂肪酸C16:0的水平增加了一倍,达到49%,而C18:0减少了两倍,降至6%。在固体培养基中连续维持100代约4年的时间里,观察到转化体具有长期稳定性。

结论

我们的结果表明,通过NeoDGAT2过表达提高了新绿藻中的TAG含量和生产力,这可能是使微藻成为生物柴油生产经济可行来源的第一步。本研究中提出的基因改良微藻策略可应用于具有工业生物燃料生产所需特性的其他微藻物种。

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