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首页> 外文期刊>American Journal of Biochemistry and Biotechnology >Induced production of alpha-tocotrienol by co-suppression of tocopherol cyclase gene in vegetable crops.
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Induced production of alpha-tocotrienol by co-suppression of tocopherol cyclase gene in vegetable crops.

机译:在蔬菜作物中通过共抑制生育酚环化酶基因诱导生产α-生育三烯酚。

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摘要

This study involves the induced production of alpha-tocotrienol by the co-suppression of tocopherol cyclase gene. The Tocopherol/Tocotrienol Cyclase (TC) is a key enzyme involved in the biosynthesis of alpha-tocotrienol. The partial conserved cDNA of TC gene isolated from the oil palm ( Elaeis guineensis) that shared greater than 75% sequence identity with TC sequences from other plant species was used to silence TC gene expression in Amaranthus sp. and Allium porrum leaves by co-suppression strategies. This was carried out using recombinant vector constructs designated as p4a11 and p4c9 containing TC driven by the maize ubiquitin promoter (Ubi1P) and the oil palm leaf-specific promoter (LHCB), respectively. In the Amaranthus sp. leaves infiltrated with p4a11, the alpha-tocopherol suppression was 85.0, 71.0 and 74.0% on day three, five and seven, respectively and complete suppression was observed in the leaves infiltrated with p4c9. Whereas, only 11.0, 7.0 and 29.0% suppression was detected in Allium porrum leaves infiltrated with p4a11 and 45.0, 4.0 and 57.0% of suppression was observed in Allium porrum infiltrated with p4c9 on day three, five and seven, respectively. Silencing of TC gene driven by LHCB (p4c9) causes the reduction of alpha-tocopherol production better than by Ubi1P (p4a11). The results have demonstrated that gene silencing through co-suppression is capable of producing alpha-tocotrienol. However, there is no correlation between the alpha-tocotrienol production and the alpha-tocopherol suppression. It has been suggested that the transgene mediated co-suppression mechanism had triggered the vitamin E biosynthesis metabolic pathway to shift towards producing alpha-tocotrienol.
机译:这项研究涉及生育酚环化酶基因的共抑制诱导α-生育三烯酚的生产。生育酚/生育三烯酚环化酶(TC)是参与α-生育三烯酚生物合成的关键酶。从油棕(Elaeis guineensis)分离的TC基因的部分保守cDNA与其他植物物种的TC序列具有超过75%的序列同一性,被用于沉默Amaranthus sp。中的TC基因表达。共同抑制策略和葱属叶片。使用分别由玉米泛素启动子(Ubi1P)和油棕榈叶特异性启动子(LHCB)驱动的包含TC的重组载体构建体p4a11和p4c9进行。在A菜属。用p4a11浸润的叶片在第3、5和7天的α-生育酚抑制率分别为85.0%,71.0和74.0%,在用p4c9浸润的叶片中观察到完全抑制。然而,在第3、5和7天分别用p4a11浸润的葱属粥叶片中仅检测到11.0、7.0和29.0%的抑制作用,而在用p4c9浸润的葱属粥中分别观察到45.0、4.0和57.0%的抑制作用。 LHCB(p4c9)驱动的TC基因沉默比Ubi1P(p4a11)更好地降低了α-生育酚的产量。结果表明,通过共抑制而使基因沉默能够产生α-生育三烯酚。但是,α-生育三烯酚的产生与α-生育酚的抑制之间没有相关性。已经提出,转基因介导的共抑制机制已经触发了维生素E生物合成代谢途径向产生α-生育三烯酚的转变。

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