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The control of red colour by a family of MYB transcription factors in octoploid strawberry (Fragaria?×?ananassa) fruits

机译:在八薄草莓(Fragaria?×ananassa)水果中的一种MYB转录因子系列的红颜色控制

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Octoploid strawberry (Fragaria?×?ananassa Duch.) is a model plant for research and one of the most important non‐climacteric fruit crops throughout the world. The associations between regulatory networks and metabolite composition were explored for one of the most critical agricultural properties in octoploid strawberry, fruit colour. Differences in the levels of flavonoids are due to the differences in the expression of structural and regulatory genes involved in flavonoid biosynthesis. The molecular mechanisms underlying differences in fruit colour were compared between red and white octoploid strawberry varieties. FaMYB genes had combinatorial effects in determining the red colour of fruit through the regulation of flavonoid biosynthesis in response to the increase in endogenous ABA at the final stage of fruit development. Analysis of alleles of FaMYB10 and FaMYB1 in red and white strawberry varieties led to the discovery of a white‐specific variant allele of FaMYB10, FaMYB10‐2. Its coding sequence possessed an ACTTATAC insertion in the genomic region encoding the C‐terminus of the protein. This insertion introduced a predicted premature termination codon, which suggested the loss of intact FaMYB10 protein playing a critical role in the loss of red colour in white octoploid strawberry.
机译:Octokoid草莓(Fragaria?×?ananassa duch。)是研究的模型植物,以及全世界最重要的非中小学水果作物之一。监管网络和代谢产物组成之间的协会探讨了八薄草莓,果子颜色最关键的农业特性之一。黄酮类化水平的差异是由于类黄酮生物合成中涉及的结构和调节基因的表达的差异是差异。果实颜色差异差异的分子机制在红色和白色八倍体草莓品种之间进行了比较。 Famyb基因在确定水果发育最后阶段的内源性ABA的增加时,在确定水果生物合成的调节方面具有组合作用。红白草莓品种的FamyB10和FamyB1等位基因分析导致了Famyb10-2的白色特异性变异等位基因的发现。其编码序列具有在编码蛋白质的C-末端的基因组区域中的Acttatac插入。这种插入引入了预测的过早终止密码子,这表明Intact FamyB10蛋白的损失在白色八倍增油脂草莓中的红颜色丧失中发挥着关键作用。

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