首页> 外文期刊>Plant and Cell Physiology >A Front-end Desaturase from Chlamydomonas reinhardtii Produces Pinolenic and Coniferonic Acids by ω13 Desaturation in Methylotrophic Yeast and Tobacco
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A Front-end Desaturase from Chlamydomonas reinhardtii Produces Pinolenic and Coniferonic Acids by ω13 Desaturation in Methylotrophic Yeast and Tobacco

机译:莱茵衣藻的前端去饱和酶通过ω13去饱和在甲基营养酵母和烟草中产生松油酸和松柏酸。

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摘要

Pinolenic acid (PA; 18:3Δ5,9,12) and coniferonic acid (CA; 18:4Δ5,9,12,15) are Δ5-unsaturated bis-methylene-interrupted fatty acids (Δ5-UBIFAs) commonly found in pine seed oil. They are assumed to be synthesized from linoleic acid (LA; 18:2Δ9,12) and α-linolenic acid (ALA; 18:3Δ9,12,15), respectively, by Δ5-desaturation. A unicellular green microalga Chlamydomonas reinhardtii also accumulates PA and CA in a betain lipid. The expressed sequence tag (EST) resource of C. reinhardtii led to the isolation of a cDNA clone that encoded a putative fatty acid desaturase named as CrDES containing a cytochrome b5 domain at the N-terminus. When the coding sequence was expressed heterologously in the methylotrophic yeast Pichia pastoris, PA and CA were newly detected and comparable amounts of LA and ALA were reduced, demonstrating that CrDES has Δ5-desaturase activity for both LA and ALA. CrDES expressed in the yeast showed Δ5-desaturase activity on 18:1Δ9 but not 18:1Δ11. Unexpectedly, CrDES also showed Δ7-desaturase activity on 20:2Δ11,14 and 20:3Δ11,14,17 to produce 20:3Δ7,11,14 and 20:4Δ7,11,14,17, respectively. Since both the Δ5 bond in C18 and the Δ7 bond in C20 fatty acids are ‘ω13’ double bonds, these results indicate that CrDES has ω13 desaturase activity for ω9 unsaturated C18/C20 fatty acids, in contrast to the previously reported front-end desaturases. In order to evaluate the activity of CrDES in higher plants, transgenic tobacco plants expressing CrDES were created. PA and CA accumulated in the leaves of transgenic plants. The highest combined yield of PA and CA was 44.7% of total fatty acids, suggesting that PA and CA can be produced in higher plants on a large scale.
机译:松油酸(PA; 18:3Δ 5,9,12 )和松柏酸(CA; 18:4Δ 5,9,12,15 )为Δ松籽油中常见的5 -不饱和双亚甲基间断脂肪酸(Δ 5 -UBIFAs)。假定它们是由亚油酸(LA; 18:2Δ 9,12 )和α-亚麻酸(ALA; 18:3Δ 9,12,15 )合成的分别通过Δ 5 -去饱和。单细胞绿色微藻衣藻也可在甜菜碱脂质中积累PA和CA。莱茵衣藻的表达序列标签(EST)资源导致分离出一个cDNA克隆,该克隆编码一个假定的脂肪酸去饱和酶,其命名为CrDES,在N端含有细胞色素b5结构域。当编码序列在甲基营养酵母巴斯德毕赤酵母中异源表达时,新检测到PA和CA,并降低了LA和ALA的可比量,表明CrDES对LA和LA均具有Δ 5 -去饱和酶活性翼。酵母中表达的CrDES在18:1Δ 9 上表现出Δ 5 -去饱和酶活性,但在18:1Δ 11 上却没有。出乎意料的是,CrDES还对20:2Δ 11,14 和20:3Δ 11,14,17 产生Δ 7 -去饱和酶活性,从而产生20 :3Δ 7,11,14 和20:4Δ 7,11,14,17 。由于C18中的Δ 5 键和C20脂肪酸中的Δ 7 键均为'ω13'双键,这些结果表明CrDES对ω9不饱和分子具有ω13去饱和酶活性与先前报道的前端去饱和酶相反,C18 / C20脂肪酸。为了评估CrDES在高等植物中的活性,创建了表达CrDES的转基因烟草植物。 PA和CA积累在转基因植物的叶子中。 PA和CA的最高组合产量为总脂肪酸的44.7%,这表明PA和CA可以在高等植物中大规模生产。

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