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首页> 外文期刊>Journal of Applied Phycology >Enhancing LC-PUFA production in Thalassiosira pseudonana by overexpressing the endogenous fatty acid elongase genes
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Enhancing LC-PUFA production in Thalassiosira pseudonana by overexpressing the endogenous fatty acid elongase genes

机译:通过过度表达内源性脂肪酸延伸酶基因来增强拟南芥中LC-PUFA的生产

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The health beneficial omega-3 long-chain polyunsaturated fatty acids (LC-PUFAs), eicosapentaenoic acid (EPA), and docosahexaenoic acid (DHA) are naturally synthesized by diatoms through consecutive steps of fatty acid elongase and desaturase enzymes. In Thalassiosira pseudonana, these fatty acids constitute about 10-20 % of the total fatty acids, with EPA accumulation being five to ten times higher than DHA. In order to identify the subcellular localization of enzymes in the pathway of LC-PUFA biosynthesis in T. pseudonana and to manipulate the production of EPA and DHA, we generated constructs for overexpressing each of the T. pseudonana long-chain fatty acid elongase genes. Full-length proteins were fused to GFP, and transgenic lines were generated. In addition, overexpressed native proteins with no GFP fusion were tested. The subcellular localization of each elongase protein was determined. We then examined the total amount of lipids and analyzed the fatty acid profile in each of the transgenic lines compared to wild type. Lines with overexpressed elongases showed an increase of up to 1.4-fold in EPA and up to 4.5-fold in DHA, and the type of fatty acid that was increased (EPA vs. DHA) depended on the type of elongase that was overexpressed. This data informs future metabolic engineering approaches to further improve EPA and DHA content in diatoms.
机译:有益健康的omega-3长链多不饱和脂肪酸(LC-PUFAs),二十碳五烯酸(EPA)和二十二碳六烯酸(DHA)由硅藻通过脂肪酸延伸酶和去饱和酶的连续步骤天然合成。在Thalassiosira pseudonana中,这些脂肪酸约占总脂肪酸的10-20%,而EPA的蓄积量比DHA高五到十倍。为了鉴定假单胞菌LC-PUFA生物合成途径中酶的亚细胞定位,并操纵EPA和DHA的产生,我们生成了过量表达每个假单胞菌长链脂肪酸延长酶基因的构建体。将全长蛋白融合至GFP,并产生转基因品系。另外,测试了没有GFP融合的过表达的天然蛋白。确定每个延伸酶蛋白的亚细胞定位。然后,我们检查了脂质的总量,并分析了与野生型相比每个转基因品系中的脂肪酸谱。延伸酶过表达的品系显示EPA的增加高达1.4倍,DHA的增加高达4.5倍,增加的脂肪酸类型(EPA与DHA)取决于过度表达的延长酶的类型。该数据为将来进一步改善硅藻中EPA和DHA含量的代谢工程方法提供了依据。

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