首页> 外文期刊>Lipids >Gene expression of stearoyl-ACP desaturase and delta12 fatty acid desaturase 2 is modulated during seed development of flax (Linum usitatissimum).
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Gene expression of stearoyl-ACP desaturase and delta12 fatty acid desaturase 2 is modulated during seed development of flax (Linum usitatissimum).

机译:亚麻(Linum usitatissimum)种子发育过程中,硬脂酰ACP去饱和酶和delta12脂肪酸去饱和酶2的基因表达受到调节。

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Flax's recent popularity in human and animal foods is mostly due to its desirable FA composition. Flax is an excellent source of omega-3 FA, which have been shown to have many health benefits. To date, little is known about the genetic and environmental factors that control the FA composition of flax seeds. To elucidate some of the important genetic components, reverse transcriptase (RT)-PCR and real-time PCR were used to determine the expression profiles of two key FA biosynthetic genes during seed development. Plants of flax cultivar AC McDuff were grown under field conditions, and RNA was extracted from ovaries and developing bolls collected from 2 d after anthesis (DAA) to maturity. Desaturation enzymes stearoyl-ACP desaturase (SAD) and delta12 FA desaturase 2 (FAD2) were both expressed in ovaries, and their expression was differentially modulated throughout seed development. SAD was most highly expressed in ovaries. Its expression quickly decreased until 4 DAA; this was followed by a slight peak at 8 DAA, only to return to relatively low levels of expression in maturing bolls, ranging from 2.1% to 4.5% relative to the level observed in ovaries. FAD2 expression displayed a different temporal pattern. While expression of FAD2 did decrease in the early stages of seed development, expression increased starting at 8 DAA, peaking at 16 DAA, when it was 158% relative to the level observed in ovaries. FAD2, which desaturates oleic acid (18:1cisdelta9) into linoleic acid (18:2cisdelta9,12), is therefore controlled at the transcription level. To relate enzyme expression with FA profile, GC was performed on the same subsamples used for RT-PCR and real-time PCR, and proportions of palmitic, stearic, oleic, linoleic, and linolenic acids were determined for the same developmental stages. Although FAD2 expression increased from 8 to 16 DAA, relative changes in linoleic acid (18:2cis delta9,12) were not observed. However, linolenic acid (ALA; alpha-18:3; 18:3cisdelta9,12,15) levels increased steadily, meaning that linoleic acid (18:2cisdelta9,12) is a transient substrate converted by FAD3 as quickly as it is produced by FAD2. Phenotypes are the result of genotypes, environment, and the interaction of the two. To evaluate the environmental impact on the production of FA in flax, FA profiles were assessed in a total of four environments (two locations, two years). Warm and dry environmental conditions resulted in lower levels of PUFA 18:2cisdelta9,12 and 18:3cisdelta9,12,15, and higher levels of 18:1 cisdelta9. FAD2 expression and/or activity may therefore be affected by the environment.
机译:亚麻最近在人和动物食品中的流行主要是由于其所需的脂肪酸成分。亚麻是omega-3 FA的极好来源,已被证明具有许多健康益处。迄今为止,对控制亚麻籽FA组成的遗传和环境因素知之甚少。为了阐明一些重要的遗传成分,逆转录酶(RT)-PCR和实时PCR用于确定种子发育过程中两个关键FA生物合成基因的表达谱。亚麻栽培品种AC McDuff的植物在田间条件下生长,从卵巢中提取RNA,并从花后2 d(DAA)到成熟后收集发育中的棉铃。去饱和酶硬脂酰-ACP去饱和酶(SAD)和delta12 FA去饱和酶2(FAD2)都在卵巢中表达,并且它们的表达在整个种子发育过程中受到差异调节。 SAD在卵巢中表达最高。它的表达迅速下降直至4 DAA。随后在8 DAA处出现一个轻微的峰值,仅在成熟的棉铃中恢复到相对较低的表达水平,相对于卵巢中观察到的表达水平为2.1%至4.5%。 FAD2表达显示出不同的时间模式。虽然FAD2的表达在种子发育的早期确实降低了,但表达从8 DAA开始增加,在16 DAA达到峰值,相对于卵巢中的水平为158​​%。因此,FAD2可将油酸(18:1cisdelta9)脱饱和为亚油酸(18:2cisdelta9,12),因此它受转录水平的控制。为了将酶表达与FA谱相关联,对用于RT-PCR和实时PCR的相同子样品进行了GC,并确定了在相同发育阶段的棕榈酸,硬脂酸,油酸,亚油酸和亚麻酸的比例。尽管FAD2表达从8 DAA增加到16 DAA,但未观察到亚油酸的相对变化(18:2cis delta9,12)。但是,亚油酸(ALA; alpha-18:3; 18:3cisdelta9,12,15)含量稳定增加,这意味着亚油酸(18:2cisdelta9,12)是由FAD3转化的瞬时底物,其生成速度与FAD2。表型是基因型,环境以及两者相互作用的结果。为了评估对亚麻中FA生产的环境影响,在总共四个环境(两个位置,两年)中评估了FA分布。温暖和干燥的环境条件会导致PUFA 18:2cisdelta9,12和18:3cisdelta9,12,15的含量降低,而18:1 cisdelta9的含量更高。 FAD2的表达和/或活性可能因此受到环境的影响。

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