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Identification and functional characterization of a new flavonoid synthase gene MdFLS1 from apple

机译:来自苹果的新黄酮合成酶基因MDFLS1的鉴定和功能表征

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Main conclusion The flavonoid synthase gene MdFLS1 from apple, which possibly plays an important role in anthocyanin synthesis, accumulates in the purple-red branches of Malus 'Pink spire'. Flavonoid metabolism serves an important function in plant growth and development. In this study, we selected 20 varieties of apple lines, 10 green and ten red branches, from the plant nursery of Qingdao Agriculture Academy. Metabolite analysis revealed that large amounts of anthocyanins accumulated in the purple-red branches of M. 'Pink spire'. Real-time polymerase chain reaction showed that the expression of the flavonol synthase gene MdFLS1 was over 1500-fold higher in M. 'Pink spire' than in the other varieties. A single base A was inserted at the first three bases of the active binding site of MdFLS1 to prove that the purple-red colour of apple leaves and stems in M. 'Pink spire' may be caused by the inactivation of MdFLS1 protein. The results of in vitro enzymatic reaction revealed that the MdFLS1 protein lost its activity. MdFLS1 was expressed in Arabidopsis thaliana to explore further its functions. High-expression wild-type strains (OE1 and OE2) and high-expression strains of A-base insertion (A-OE1 and A-OE2) were obtained. Compared with the wild-type strains, the overexpression lines showed lighter tissue colour and less accumulation of anthocyanins. However, A-OE1 and A-OE2 showed no difference in colouration. In conclusion, we speculated that the MdFLS1 gene in M. 'Pink spire' cannot bind flavonoids, triggering the synthesis of anthocyanins in another branch of the flavonoid metabolic pathway and resulting in the purple-red colouration of apple leaves and stems. These results suggest that MdLS1 is a potential genetic target for breeding high-flavonoid apples in future cultivar development.
机译:主要结论苹果黄酮合酶基因MdFLS1可能在花青素合成中起重要作用,积累在苹果“粉红尖顶”的紫红色枝条中。类黄酮代谢在植物生长发育中起着重要作用。本研究从青岛农业科学院苗圃中选择了20个苹果品系,10个绿枝和10个红枝。代谢物分析表明,大量的花青素积累在“粉红尖塔”的紫红色枝条中。实时聚合酶链反应(Real-timepolymerase chain reaction)显示,黄酮醇合酶基因MdFLS1在M.“Pink spire”中的表达比其他品种高1500倍以上。在MdFLS1活性结合位点的前三个碱基插入一个碱基A,以证明M.“粉红尖顶”中苹果叶和茎的紫红色可能是由MdFLS1蛋白失活引起的。体外酶促反应结果显示MdFLS1蛋白失去了活性。在拟南芥中表达MdFLS1以进一步探索其功能。获得了高表达野生型菌株(OE1和OE2)和A碱基插入高表达菌株(A-OE1和A-OE2)。与野生型菌株相比,过表达系的组织颜色较浅,花青素积累较少。然而,A-OE1和A-OE2在颜色上没有差异。总之,我们推测M.“粉红尖塔”中的MdFLS1基因不能与类黄酮结合,从而触发类黄酮代谢途径的另一个分支中花青素的合成,并导致苹果叶和茎呈紫红色。这些结果表明,MdLS1是未来培育高黄酮苹果品种的潜在遗传目标。

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