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Harnessing the Lipogenic Potential of Δ6-Desaturase for Simultaneous Hyperaccumulation of Lipids and Polyunsaturated Fatty Acids in Nannochloropsis oceanica

机译:利用δ6-去饱和酶的脂质潜力同时脂质脂质的超腹积和Nannchloropsis Oceanica的多不饱和脂肪酸

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Burgeoning demand for long-chain polyunsaturated fatty acids (LC-PUFA) due to their established pharmacological and economic significances along with the declining sources of fish urge to explore the sustainable sources of LC-PUFA. Being the predominant LC-PUFA source for marine fishes at the base of the aquatic food web, microalgae has been hailed as a promising natural source for LC-PUFA. However, the potential of algal systems to overproduce LC-PUFA via metabolic engineering is warranted to meet the ever-increasing demand. In this study, we identified and overexpressed Δ6-desaturase, the key enzyme involved in fatty acid desaturation and exemplified its potential on elevating PUFA and lipid content in Nannochloropsis oceanica. Δ6-desaturase overexpression enhanced growth and photosynthetic efficiency. Transgenic cells exhibited a remarkable increase in EPA content and reached up to 652.35 mg/g DW, , the highest EPA production in transgenic N. oceanica by expressing a single key enzyme without impeding growthin a transgenic heterokontgreen alga. Total lipid content was significantly increased by 1.7-fold in the transgenic cell than WT. Together, these findings exemplify a potential candidate for LC-PUFA overproduction and also open a new avenue for sustainable production of microalgal PUFAs.
机译:由于其熟悉的药理和经济意义,促进了探索LC-PUFA可持续来源的药理学和经济意义,对长链多不饱和脂肪酸(LC-PUFA)对长链多不饱和脂肪酸(LC-PUFA)的需求。作为水生食品网底部的海洋鱼类的主要LC-PUFA来源,Microalgae被称为LC-PUFA的有希望的自然来源。然而,有必要通过代谢工程过度提高LC-PUFA的藻类系统的潜力,以满足不断增长的需求。在该研究中,我们鉴定和过表达Δ6去饱和酶,其关键酶参与脂肪酸去剩的关键酶,并举例说明其对Nannchloropsis Oceanica中的Pufa和脂质含量的潜力。 Δ6-去饱和酶过表达增强的生长和光合效率。转基因细胞表现出对EPA含量显着增加,并且达到652.35mg / g DW,通过表达单一关键酶而不妨碍转基因象核藻类,在转基因N. Oceanica中的最高EPA产生。总脂质含量显着增加1.7倍的转基因细胞比wt。这些发现在一起,举例说明了LC-PUFA过量生产的潜在候选者,并开辟了用于可持续生产的微藻PUFA的新途径。

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