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Modification of Brassica seed oil by antisense expression of a stearoyl-acyl carrier protein desaturase gene.

机译:通过反义表达硬脂酰酰基载体蛋白去饱和酶基因对芸苔种子油的修饰。

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摘要

Molecular gene transfer techniques have been used to engineer the fatty acid composition of Brassica rapa and Brassica napus (canola) oil. Stearoyl-acyl carrier protein (stearoyl-ACP) desaturase (EC 1.14.99.6) catalyzes the first desaturation step in seed oil biosynthesis, converting stearoyl-ACP to oleoyl-ACP. Seed-specific antisense gene constructs of B. rapa stearoyl-ACP desaturase were used to reduce the protein concentration and enzyme activity of stearoyl-ACP desaturase in developing rapeseed embryos during storage lipid biosynthesis. The resulting transgenic plants showed dramatically increased stearate levels in the seeds. A continuous distribution of stearate levels from 2% to 40% was observed in seeds of a transgenic B. napus plant, illustrating the potential to engineer specialized seed oil compositions.
机译:分子基因转移技术已被用于改造芸苔和芸苔油的脂肪酸组成。硬脂酰基酰基载体蛋白(stearoyl-ACP)去饱和酶(EC 1.14.99.6)催化种子油生物合成中的第一步去饱和步骤,将硬脂酰基ACP转化为油酰基ACP。油菜硬脂酰-ACP去饱和酶的种子特异性反义基因构建体可用于在贮藏脂质生物合成过程中降低油菜籽胚中硬脂酰-ACP去饱和酶的蛋白质浓度和酶活性。所得的转基因植物显示出种子中硬脂酸盐水平显着增加。在转基因甘蓝型油菜植物的种子中观察到硬脂酸盐水平从2%到40%的连续分布,这说明了工程化专门的种子油组合物的潜力。

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