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Multigene synergism increases the isoflavone and proanthocyanidin contents of Medicago truncatula

机译:多硫代肾上腺协同作用增加了Medicago Truncatula的异黄酮和花青蛋白含量

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Isoflavones and proanthocyanidins (PAs), which are flavonoid derivatives, possess many health benefits and play important roles in forage-based livestock production. However, the foliage of Medicago species accumulates limited levels of both isoflavones and PAs. In this study, biosynthesis of isoflavone and PA in Medicago truncatula was enhanced via synergy between soya bean isoflavone synthase (IFS1); two upstream enzymes, chalcone synthase (CHS) and chalcone isomerase (CHI); and the endogenous flavanone 3-hydroxylase (F3H). Constitutive expression of GmIFS1 alone resulted in ectopic accumulation of the isoflavone daidzein and large increases in the levels of the isoflavones formononetin, genistein and biochanin A in the leaves. Furthermore, coexpression of GmIFS1 with GmCHS7 and GmCHI1A generally increased the available flux to flavonoid biosynthesis and resulted in elevated isoflavone, flavone and PA contents. In addition, down-regulation of MtF3H combined with coexpression of GmIFS1, GmCHS7 and GmCHI1A led to the highest isoflavone levels (up to 2mol/g fresh weight in total). Taken together, our results demonstrate that multigene synergism is a powerful means to enhance the biosynthesis of particular flavonoids and can be more broadly applied to the metabolic engineering of forage species.
机译:异黄酮和原花青素(PAS),一种类黄酮衍生物具有许多健康益处,并在饲料的牲畜生产中发挥重要作用。然而,Medicago物种的叶子积累了异黄酮和PAS的有限水平。在本研究中,通过豆豆异黄酮合酶(IFS1)之间的协同作用,通过协同作用增强了异黄酮和PA的异黄酮和Pa的生物合成;两种上游酶,Chalcone合酶(CHS)和Chalcone异构酶(Chi);和内源性黄烷酮3-羟化酶(F3h)。仅GMIFS1的组成型表达导致异黄酮Daidzein的异位积累,并且在叶中的异黄酮甲酰胺,Genistein和生物脉蛋白A的水平增加。此外,使用GMCHS7和GMCHI1A的GMIFS1的共表达通常将可用的助焊剂增加给黄酮类生物合成,并导致异黄酮,黄酮和PA含量升高。此外,MTF3H的下调与GMIFS1,GMCHS7和GMCHI1A的共表达,LGI1A的共表达导致最高的异黄酮水平(总共高达2mol / g鲜重)。我们的结果表明,多庚烯协同作用是增强特定类黄酮的生物合成的强大方法,并且可以更广泛地应用于牧草物种的代谢工程。

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