Chen Ru, Yang Miao, Li Mengjie, Zhang Hao, Lu Han, Dou Xiaotan, Feng Shiqi, Xue Song, Zhu Chenba, Chi Zhanyou, Kong Fantao
School of Bioengineering, Dalian University of Technology, Dalian, 116024, China.
School of Life Science, Ganjingzi District, Liaoning Normal University, No. 1, Liushu South Street, Dalian, 116081, China.
Biotechnol Biofuels Bioprod. 2022 May 20;15(1):54. doi: 10.1186/s13068-022-02154-6.
Chloroplast and endoplasmic reticulum (ER)-localized fatty acid (FA) transporters have been reported to play important roles in oil (mainly triacylglycerols, TAG) biosynthesis. However, whether these FA transporters synergistically contribute to lipid accumulation, and their effect on lipid metabolism in microalgae are unknown.
Here, we co-overexpressed two chloroplast-localized FA exporters (FAX1 and FAX2) and one ER-localized FA transporter (ABCA2) in Chlamydomonas. Under standard growth conditions, FAX1/FAX2/ABCA2 over-expression lines (OE) accumulated up to twofold more TAG than the parental strain UVM4, and the total amounts of major polyunsaturated FAs (PUFA) in TAG increased by 4.7-fold. In parallel, the total FA contents and major membrane lipids in FAX1/FAX2/ABCA2-OE also significantly increased compared with those in the control lines. Additionally, the total accumulation contribution ratio of PUFA, to total FA and TAG synthesis in FAX1/FAX2/ABCA2-OE, was 54% and 40% higher than that in UVM4, respectively. Consistently, the expression levels of genes directly involved in TAG synthesis, such as type-II diacylglycerol acyltransferases (DGTT1, DGTT3 and DGTT5), and phospholipid:diacylglycerol acyltransferase 1 (PDAT1), significantly increased, and the expression of PGD1 (MGDG-specific lipase) was upregulated in FAX1/FAX2/ABCA2-OE compared to UVM4.
These results indicate that the increased expression of FAX1/FAX2/ABCA2 has an additive effect on enhancing TAG, total FA and membrane lipid accumulation and accelerates the PUFA remobilization from membrane lipids to TAG by fine-tuning the key genes involved in lipid metabolism under standard growth conditions. Overall, FAX1/FAX2/ABCA2-OE shows better traits for lipid accumulation than the parental line and previously reported individual FA transporter-OE. Our study provides a potential useful strategy to increase the production of FA-derived energy-rich and value-added compounds in microalgae.
据报道,定位于叶绿体和内质网(ER)的脂肪酸(FA)转运蛋白在油脂(主要是三酰甘油,TAG)生物合成中发挥重要作用。然而,这些FA转运蛋白是否协同促进脂质积累,以及它们对微藻脂质代谢的影响尚不清楚。
在此,我们在衣藻中共同过表达了两种定位于叶绿体的FA输出蛋白(FAX1和FAX2)和一种定位于内质网的FA转运蛋白(ABCA2)。在标准生长条件下,FAX1/FAX2/ABCA2过表达系(OE)积累的TAG比亲本菌株UVM4多两倍,TAG中主要多不饱和脂肪酸(PUFA)的总量增加了4.7倍。同时,与对照系相比,FAX1/FAX2/ABCA2-OE中的总FA含量和主要膜脂也显著增加。此外,FAX1/FAX2/ABCA2-OE中PUFA对总FA和TAG合成的总积累贡献率分别比UVM4高54%和40%。一致地,直接参与TAG合成的基因,如II型二酰甘油酰基转移酶(DGTT1、DGTT3和DGTT5)以及磷脂:二酰甘油酰基转移酶1(PDAT1)的表达水平显著增加,与UVM4相比,FAX1/FAX2/ABCA2-OE中PGD1(MGDG特异性脂肪酶)的表达上调。
这些结果表明,FAX1/FAX2/ABCA2表达的增加对增强TAG、总FA和膜脂积累具有累加效应,并通过在标准生长条件下微调参与脂质代谢的关键基因,加速PUFA从膜脂向TAG的重新分配。总体而言,FAX1/FAX2/ABCA2-OE显示出比亲本系和先前报道的单个FA转运蛋白过表达系更好的脂质积累特性。我们的研究为提高微藻中FA衍生的富含能量和高附加值化合物的产量提供了一种潜在的有用策略。