首页> 外文期刊>Plant Biotechnology Journal >The synthesis and accumulation of stearidonic acid in transgenic plants: a novel source of 'heart-healthy' omega-3 fatty acids.
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The synthesis and accumulation of stearidonic acid in transgenic plants: a novel source of 'heart-healthy' omega-3 fatty acids.

机译:转基因植物中僵化酸的合成与积累:一种“心脏健康”欧米茄3脂肪酸的新源。

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摘要

Dietary omega-3 polyunsaturated fatty acids have a proven role in reducing the risk of cardiovascular disease and precursor disease states such as metabolic syndrome. Although most studies have focussed on the predominant omega-3 fatty acids found in fish oils (eicosapentaenoic acid and docosahexaenoic acid), recent evidence suggests similar health benefits from their common precursor, stearidonic acid. Stearidonic acid is a Delta6-unsaturated C18 omega-3 fatty acid present in a few plant species (mainly the Boraginaceae and Primulaceae) reflecting the general absence of Delta6-desaturation from higher plants. Using a Delta6-desaturase from Primula vialii, we generated transgenic Arabidopsis and linseed lines accumulating stearidonic acid in their seed lipids. Significantly, the P. vialii Delta6-desaturase specifically only utilises alpha-linolenic acid as a substrate, resulting in the accumulation of stearidonic acid but not omega-6 gamma-linolenic acid. Detailed lipid analysis revealed the accumulation of stearidonic acid in neutral lipids such as triacylglycerol but an absence from the acyl-CoA pool. In the case of linseed, the achieved levels of stearidonic acid (13.4% of triacylglycerols) are very similar to those found in the sole natural commercial plant source (Echium spp.) or transgenic soybean oil. However, both those latter oils contain gamma-linolenic acid, which is not normally present in fish oils and considered undesirable for heart-healthy applications. By contrast, the stearidonic acid-enriched linseed oil is essentially devoid of this fatty acid. Moreover, the overall omega-3/omega-6 ratio for this modified linseed oil is also significantly higher. Thus, this nutritionally enhanced linseed oil may have superior health-beneficial properties.
机译:饮食ω-3多不饱和脂肪酸在降低诸如代谢综合征等心血管疾病和前体疾病状态的风险方面具有证明作用。虽然大多数研究侧重于鱼油中发现的主要ω-3脂肪酸(eicosapentaeno酸和十二碳酸己酸),但最近的证据表明,来自普通前体,脂肪酸的脂肪酸相似的健康益处。莴苣酸是一种在几种植物物种(主要是硼菊酯和Primulaceae)中存在的Delta6-Undurated C18欧米茄3脂肪酸,其反映了从高等植物的普通缺乏δ6的缺失。使用来自Primula Vialii的Delta6-去饱和酶,我们在其种子脂质中产生了转基因拟南芥和亚麻籽系积聚僵化的脂肪酸。值得注意的是,P.Vialii delta6-去饱和酶特异性仅利用α-亚麻酸作为基材,导致脂肪酸但不是ω-6γ-亚麻酸的积累。详细的脂质分析表明,脂质酸等中性脂质的积累,例如三酰基甘油,但不存在酰基-CoA池。在亚麻籽的情况下,莴苣酸(13.4%的三酰基甘油)的达到的水平与唯一天然商业植物源(echium spp。)或转基因大豆油中的那些非常相似。然而,两种后一种油都含有γ-亚麻酸,通常不存在于鱼油中并考虑对心脏健康应用的不希望。相比之下,脂肪酸富集的亚麻籽油基本上没有这种脂肪酸。此外,这种改性亚麻籽油的总ω-3 / Omega-6比率也明显高。因此,这种营养增强的亚麻籽油可能具有优异的健康性质。

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  • 来源
    《Plant Biotechnology Journal》 |2009年第7期|共13页
  • 作者单位

    Correspondence address J. A. Napier Department of Biological Chemistry Rothamsted Research Harpenden Herts UK. Fax +44 (0)1582 763010. E-mail;

    Correspondence address J. A. Napier Department of Biological Chemistry Rothamsted Research Harpenden Herts UK. Fax +44 (0)1582 763010. E-mail;

    Correspondence address J. A. Napier Department of Biological Chemistry Rothamsted Research Harpenden Herts UK. Fax +44 (0)1582 763010. E-mail;

    Correspondence address J. A. Napier Department of Biological Chemistry Rothamsted Research Harpenden Herts UK. Fax +44 (0)1582 763010. E-mail;

    Correspondence address J. A. Napier Department of Biological Chemistry Rothamsted Research Harpenden Herts UK. Fax +44 (0)1582 763010. E-mail;

    Correspondence address J. A. Napier Department of Biological Chemistry Rothamsted Research Harpenden Herts UK. Fax +44 (0)1582 763010. E-mail;

    Correspondence address J. A. Napier Department of Biological Chemistry Rothamsted Research Harpenden Herts UK. Fax +44 (0)1582 763010. E-mail;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

    ARABIDOPSIS; DESATURASES; LINSEED OILS; LINSEEDS; STEARIDONIC ACID; TRANSGENIC PLANTS; FATTY ACIDS; GENETICS; NOVEL FOODS; OILS VEGETABLE; OILSEEDS; OXIDOREDUCTASES; PLANTS;

    机译:拟南芥;去饱和酶;亚麻籽油;亚麻籽;脂肪酸;转基因植物;脂肪酸;遗传;新型食物;油蔬菜;油籽;氧化还原酶;植物;
  • 入库时间 2022-08-20 06:18:51

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