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Cellular and Molecular Responses of Dunaliella tertiolecta by Expression of a Plant Medium Chain Length Fatty Acid Specific Acyl-ACP Thioesterase

机译:植物中链长脂肪酸特异性酰基-ACP硫酯酶的表达对杜氏杜氏藻的细胞和分子响应

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摘要

Metabolic engineering of microalgae to accumulate high levels of medium chain length fatty acids (MCFAs) has met with limited success. Traditional approaches employ single introduction of MCFA specific acyl-ACP thioesterases (TEs), but our current research in transgenic Dunaliella tertiolecta line has highlighted that, there is no single rate-limiting approach that can effectively increase MCFA levels. Here, we explore the accumulation of MCFAs in D. tertiolecta after transgenic expression of myristic acid biased TE (C14TE). We observe that the MCFA levels were negatively correlated to the fatty acid (FA) synthesis genes, ketoacyl-ACP synthase II (KASII), stearoyl-CoA-9-desaturase (Δ9D), and oleoyl-CoA-12-desaturase (Δ12D). To further examine the molecular mechanism of MCFA accumulation in microalgae, we investigate the transcriptomic dynamics of the MCFA producing strain of D. tertiolecta. At the transcript level, enhanced MCFA accumulation primarily involved up-regulation of photosynthetic genes and down-regulation of genes from central carbon metabolic processes, resulting in an overall decrease in carbon precursors for FA synthesis. We additionally observe that MCFA specific peroxisomal β-oxidation gene (ACX3) was greatly enhanced to prevent excessive build-up of unusual MCFA levels. Besides, long chain acyl-CoA synthetase gene (LACS) was down-regulated, likely in attempt to control fatty acyl supply flux to FA synthesis cycle. This article provides a spatial regulation model of unusual FA accumulation in microalgae and a platform for additional metabolic engineering targeting pathways from FA synthesis, FA transport, and peroxisomal β-oxidation to achieve microalgae oils with higher levels of MCFAs.
机译:微藻类的代谢工程积累了高水平的中等链长脂肪酸(MCFA),但取得的成功有限。传统方法采用单一引入MCFA特异性酰基ACP硫酯酶(TEs)的方法,但是我们目前在转基因杜氏杜氏藻(Dunaliella tertiolecta)品系中的研究突出表明,没有单一的限速方法可以有效提高MCFA水平。在这里,我们探讨了豆蔻酸偏向TE(C14TE)的转基因表达后在D. tertiolecta中MCFA的积累。我们观察到MCFA水平与脂肪酸(FA)合成基因,酮酰基-ACP合酶II(KASII),硬脂酰-CoA-9-去饱和酶(Δ9D)和油酰基-CoA-12-去饱和酶(Δ12D)呈负相关。 。为了进一步研究微藻中MCFA积累的分子机制,我们研究了产MCFA的D. teriiolecta菌株的转录组动力学。在转录本水平上,增强的MCFA积累主要涉及光合作用基因的上调和来自中央碳代谢过程的基因的下调,从而导致用于FA合成的碳前体总体减少。此外,我们还观察到MCFA特异性过氧化物酶体β-氧化基因(ACX3)大大增强,可以防止过多堆积异常MCFA水平。此外,长链酰基辅酶A合成酶基因(LACS)被下调,可能试图控制脂肪脂肪酸向FA合成循环的供应。本文提供了微藻中异常FA积累的空间调控模型,并为从FA合成,FA转运和过氧化物酶体β-氧化途径获得额外代谢工程的途径提供了平台,以实现具有较高MCFA水平的微藻油。

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