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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhanced lipid productivity in AGP knockout marine microalga Tetraselmis sp. using a DNA-free CRISPR-Cas9 RNP method
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Enhanced lipid productivity in AGP knockout marine microalga Tetraselmis sp. using a DNA-free CRISPR-Cas9 RNP method

机译:AGP敲除海洋Microalga Tetraselmis SP中增强了脂质生产率。 使用无DNA的CRISPR-CAS9 RNP方法

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摘要

A marine green microalga, Tetraselmis sp., has been studied for the production of biomass and lipids in seawater culture. Since carbohydrate and lipid biosynthesis are competitive metabolic pathways, we attempted to increase lipid synthesis in Tetraselmis by inhibiting carbohydrate synthesis. The main regulatory enzyme in the starch synthesis pathway is ADP-glucose pyrophosphorylase (AGP). AGP loss-of-function mutants were developed using the CRISPR-Cas9 ribonucleoprotein (RNP) delivery system. AGP mutants showed a slight decrease in growth. However, the lipid content in two AGP mutants was significantly enhanced by 2.7 and 3.1 fold (21.1% and 24.1% of DCW), respectively, compared to that in the wild type (7.68% of DCW) under nitrogen starvation. This study is an example of metabolic engineering by genetic editing using the CRISPR-Cas9 RNP method in marine green microalgae. Consequently, starchless Tetraselmis mutants might be considered potential producers of lipids in seawater cultures.
机译:海洋绿色微藻,Tetraselmis sp。已研究海水文化中生物质和脂质的生产。由于碳水化合物和脂质生物合成是具有竞争力的代谢途径,我们试图通过抑制碳水化合物合成来增加四轴上的脂质合成。淀粉合成途径中的主要调节酶是ADP-葡萄糖焦磷酸化酶(AGP)。使用CRISPR-CAS9核糖核蛋白(RNP)输送系统开发了AGP函数突变体。 AGP突变体表现出略微降低的生长。然而,与在氮饥饿下的野生型(DCW的7.68%)中,两种AGP突变体中的脂质含量分别显着增强2.7和3.1倍(21.1%和21.1%和21.1%和21.1%)。该研究是通过在海洋绿色微藻中使用CRISPR-CAS9 RNP方法的遗传编辑来代谢工程的一个例子。因此,淀粉鳞状突变体突变体可能被认为是海水文化中脂质的潜在生产者。

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