首页> 外文期刊>Plant Biotechnology Journal >Enhanced triterpene saponin biosynthesis and root nodulation in transgenic barrel medic (Medicago truncatula Gaertn.) expressing a novel o-amyrin synthase (AsOXA1) gene
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Enhanced triterpene saponin biosynthesis and root nodulation in transgenic barrel medic (Medicago truncatula Gaertn.) expressing a novel o-amyrin synthase (AsOXA1) gene

机译:转基因桶军医(Medicago Truncatula Gaertn)中增强的三萜皂苷生物合成和根部染色。表达新型O-氨基氨基合酶(Asoxa1)基因

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Triterpene saponins are a group of bioactive compounds abundant in the genus Medicago, and have been studied extensively for their biological and pharmacological properties. In this article, we evaluated the effects of the ectopic expression of AsOXA1 cDNA from Aster sedifolius on the production of triterpene saponins in barrel medic (Medicago truncatula Gaertn.). AsOXA1 cDNA encodes o-amyrin synthase, a key enzyme involved in triterpene saponin biosynthesis. One of the four transgenic lines expressing AsOXA1 accumulated significantly larger amounts of some triterpenic compounds in leaf and root than did control plants. In particular, the leaf exhibited significantly higher levels of bayogenin, medicagenic acid and zanhic acid. The amounts of medicagenic acid and zanhic acid, which represent the core of the M. truncatula leaf saponins, were 1.7 and 2.1 times higher, respectively, than the amounts extracted from the control line. In root, the production of bayogenin, hederagenin, soyasapogenol E and 2o-hydroxyoleanolic acid was increased significantly. The increase in the total amounts of triterpenic compounds observed in the leaves of transgenic lines correlated with the AsOXA1 expression level. Interestingly, the plants expressing AsOXA1 showed, under different growth conditions, improved nodulation when compared with the control line. Nodulation enhancement was also accompanied by a significant change in the soyasapogenol B content. Our results indicate that the ectopic expression of AsOXA1 in barrel medic leads to a greater accumulation of triterpene saponins and enhanced root nodulation.
机译:三萜皂甙是Medicago属中丰富的一组生物活性化合物,并已广泛研究了它们的生物和药理学性质。在本文中,我们评估了Asoxa1 cDNA的异位表达来自Aster Sedifolius的效果对桶军团的三萜皂苷(Medicago Truncatula Gaertn)的产生。 Asoxa1 cDNA编码O-氨纶合酶,是参与三萜皂苷生物合成的关键酶。表达烟区1的四种转基因株系之一累积了叶片和根部中的一些三萜化合物的显着大量比对照植物。特别是,叶子表现出显着较高的老化素,药用酸和Zanhic酸。代表M. Truncatula叶片皂苷的核心的药物酸和Zanhic酸的量分别比从对照线提取的量分别为1.7和2.1倍。在根系中,逐渐增加了八叶草,海燕素,豆皂甙E和2O-羟基洛基醇酸的产生。转基因系叶中观察到的三萜化合物的总量的增加与asoxa1表达水平相关。有趣的是,在不同的生长条件下,表达烟雾的植物显示,与控制线相比,改善了染色。结转增强也伴随着豆皂苷B含量的显着变化。我们的结果表明,桶中烟草1中的异位表达导致皂苷的较大积累和增强的根瘤瘤。

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