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Metabolic Engineering of Seeds Can Achieve Levels of ω-7 Fatty Acids Comparable with the Highest Levels Found in Natural Plant Sources

机译:种子的代谢工程可以达到ω-7脂肪酸的水平与天然植物来源中发现的最高水平相当

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摘要

Plant oils containing ω-7 fatty acids (FAs; palmitoleic 16:1Δ9 and cis-vaccenic 18:1Δ11) have potential as sustainable feedstocks for producing industrially important octene via metathesis chemistry. Engineering plants to produce seeds that accumulate high levels of any unusual FA has been an elusive goal. We achieved high levels of ω-7 FA accumulation by systematic metabolic engineering of Arabidopsis (Arabidopsis thaliana). A plastidial 16:0-ACP desaturase has been engineered to convert 16:0 to 16:1Δ9 with specificity >100-fold than that of naturally occurring paralogs, such as that from cat's claw vine (Doxantha unguis-cati). Expressing this engineered enzyme (Com25) in seeds increased ω-7 FA accumulation from <2% to 14%. Reducing competition for 16:0-ACP by down-regulating the β-ketoacyl-ACP synthase II 16:0 elongase further increased accumulation of ω-7 FA to 56%. The level of 16:0 exiting the plastid without desaturation also increased to 21%. Coexpression of a pair of fungal 16:0 desaturases in the cytosol reduced the 16:0 level to 11% and increased ω-7 FA to as much as 71%, equivalent to levels found in Doxantha seeds.
机译:含有ω-7脂肪酸(FAs;棕榈油酸16:1Δ 9 和顺式-vaccenic 18:1Δ 11 )的植物油有潜力作为可持续的原料通过工业生产重要的辛烯复分解化学。对植物进行工程改造以产生可在任何异常FA中高水平积累的种子一直是个遥不可及的目标。我们通过拟南芥(拟南芥)的系统代谢工程实现了高水平的ω-7FA积累。一种质体化的16:0-ACP去饱和酶经过工程改造,可将16:0转化为16:1Δ 9 ,其特异性比天然存在的类似物(例如猫爪藤(Doxantha)的特异性)高100倍unguis-cati)。在种子中表达这种工程酶(Com25)可使ω-7FA积累从<2%增加到14%。通过下调β-酮酰基-ACP合酶II 16:0延长酶来减少16:0-ACP的竞争,进一步将ω-7FA的积累提​​高到56%。在不降低饱和度的情况下离开质体的16:0的水平也增加到21%。在细胞质溶胶中共表达一对真菌16:0脱氢酶,可将16:0的水平降低至11%,将ω-7FA的水平提高至71%,这与Doxantha种子中的水平相当。

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