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种子油中蓖麻油酸含量增加的莱斯奎勒亚麻荠基因工程。

Genetic Engineering of Lesquerella with Increased Ricinoleic Acid Content in Seed Oil.

作者信息

Chen Grace Q, Johnson Kumiko, Nazarenus Tara J, Ponciano Grisel, Morales Eva, Cahoon Edgar B

机构信息

Western Regional Research Center, Agricultural Research Service, U.S. Department of Agriculture, 800 Buchanan St., Albany, CA 94710, USA.

Department of Biochemistry and Center for Plant Science Innovation, University of Nebraska-Lincoln, Lincoln, NE 68588, USA.

出版信息

Plants (Basel). 2021 May 29;10(6):1093. doi: 10.3390/plants10061093.

Abstract

Seeds of castor () are enriched in oil with high levels of the industrially valuable fatty acid ricinoleic acid (18:1OH), but production of this plant is limited because of the cooccurrence of the ricin toxin in its seeds. Lesquerella () is being developed as an alternative industrial oilseed because its seeds accumulate lesquerolic acid (20:1OH), an elongated form of 18:1OH in seed oil which lacks toxins. Synthesis of 20:1OH is through elongation of 18:1OH by a lesquerella elongase, PfKCS18. Oleic acid (18:1) is the substrate for 18:1OH synthesis, but it is also used by fatty acid desaturase 2 (FAD2) and FAD3 to sequentially produce linoleic and linolenic acids. To develop lesquerella that produces 18:1OH-rich seed oils such as castor, RNA interference sequences targeting , and were introduced to lesquerella to suppress the elongation and desaturation steps. Seeds from transgenic lines had increased 18:1OH to 1.1-26.6% compared with that of 0.4-0.6% in wild-type (WT) seeds. Multiple lines had reduced 18:1OH levels in the T generation, including a top line with 18:1OH reduced from 26.7% to 19%. Transgenic lines also accumulated more 18:1 than that of WT, indicating that 18:1 is not efficiently used for 18:1OH synthesis and accumulation. Factors limiting 18:1OH accumulation and new targets for further increasing 18:1OH production are discussed. Our results provide insights into complex mechanisms of oil biosynthesis in lesquerella and show the biotechnological potential to tailor lesquerella seeds to produce castor-like industrial oil functionality.

摘要

蓖麻()种子富含油脂,含有高水平具有工业价值的脂肪酸蓖麻油酸(18:1OH),但由于其种子中同时存在蓖麻毒素,这种植物的产量受到限制。亚麻荠()正被开发为一种替代性工业油籽,因为其种子积累桐酸(20:1OH),这是种子油中18:1OH的延长形式且不含毒素。20:1OH的合成是通过亚麻荠延长酶PfKCS18将18:1OH延长。油酸(18:1)是18:1OH合成的底物,但它也被脂肪酸去饱和酶2(FAD2)和FAD3依次用于生成亚油酸和亚麻酸。为了培育出能生产富含18:1OH种子油的亚麻荠,如蓖麻,将靶向、和的RNA干扰序列导入亚麻荠以抑制延长和去饱和步骤。与野生型(WT)种子中0.4 - 0.6%的含量相比,转基因株系种子中的18:1OH增加到了1.1 - 26.6%。多个株系在T代中18:1OH水平降低,包括一个顶级株系,其18:1OH从26.7%降至19%。转基因株系积累的18:1也比野生型多,这表明18:1没有被有效地用于18:1OH的合成和积累。讨论了限制18:1OH积累的因素以及进一步提高18:1OH产量的新靶点。我们的结果为亚麻荠油脂生物合成的复杂机制提供了见解,并展示了通过生物技术使亚麻荠种子具备类似蓖麻的工业油功能的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f886/8230273/194837ed91c2/plants-10-01093-g001.jpg

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