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Reduced Triacylglycerol Mobilization during Seed Germination and Early Seedling Growth in Arabidopsis Containing Nutritionally Important Polyunsaturated Fatty Acids

机译:含有营养重要的多不饱和脂肪酸的拟南芥种子发芽和幼苗早期生长过程中三酰甘油的动员减少

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摘要

There are now several examples of plant species engineered to synthesize and accumulate nutritionally important polyunsaturated fatty acids in their seed triacylglycerols (TAG). The utilization of TAG in germinating seeds of such transgenic plants was unknown. In this study, we examined the TAG utilization efficiency during seed germination in transgenic Arabidopsis seeds containing several examples of these fatty acids. Seed TAG species with native fatty acids had higher utilization rate than the TAG species containing transgenically produced polyunsaturated fatty acids. Conversely, quantification of the fatty acid components remaining in the total TAG after early stages of seed germination revealed that the undigested TAGs tended to contain elevated levels of the engineered polyunsaturated fatty acids (PUFA). LC-MS analysis further revealed asymmetrical mobilization rates for the individual TAG species. TAGs which contained multiple PUFA fatty acids were mobilized slower than the species containing single PUFA. The mobilized engineered fatty acids were used in de novo membrane lipid synthesis during seedling development.
机译:现在有几种植物物种的实例,这些物种经过工程设计,可以在其种子三酰甘油(TAG)中合成并积累重要的营养重要多不饱和脂肪酸。 TAG在此类转基因植物的萌发种子中的利用尚不清楚。在这项研究中,我们检查了含有这些脂肪酸几个实例的转基因拟南芥种子在种子发芽过程中的TAG利用效率。具有天然脂肪酸的种子TAG物种的利用率高于包含转基因产生的多不饱和脂肪酸的TAG物种。相反,在种子萌发的早期阶段后,对总TAG中残留的脂肪酸成分的定量分析表明,未消化的TAG往往含有较高水平的工程化多不饱和脂肪酸(PUFA)。 LC-MS分析进一步揭示了单个TAG物种的不对称动员率。包含多个PUFA脂肪酸的TAG的迁移速度比包含单个PUFA的物种的迁移慢。动员的工程脂肪酸用于幼苗发育过程中的从头膜脂质合成。

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