首页> 美国卫生研究院文献>Journal of Experimental Botany >CsMYB60 is a key regulator of flavonols and proanthocyanidans that determine the colour of fruit spines in cucumber
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CsMYB60 is a key regulator of flavonols and proanthocyanidans that determine the colour of fruit spines in cucumber

机译:CsMYB60是黄酮醇和原花青素的关键调节剂可确定黄瓜中水果刺的颜色

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摘要

Spine colour is an important fruit quality trait that influences the commercial value of cucumber (Cucumis sativus). However, little is known about the metabolites and the regulatory mechanisms of their biosynthesis in black spine varieties. In this study, we determined that the pigments of black spines are flavonoids, including flavonols and proanthocyanidins (PAs). We identified CsMYB60 as the best candidate for the previously identified B (Black spine) locus. Expression levels of CsMYB60 and the key genes involved in flavonoid biosynthesis were higher in black-spine inbred lines than that in white-spine lines at different developmental stages. The insertion of a Mutator-like element (CsMULE) in the second intron of CsMYB60 decreased its expression in a white-spine line. Transient overexpression assays indicated that CsMYB60 is a key regulatory gene and Cs4CL is a key structural gene in the pigmentation of black spines. In addition, the DNA methylation level in the CsMYB60 promoter was much lower in the black-spine line compared with white-spine line. The CsMULE insert may decrease the expression level of CsMYB60, causing hindered synthesis of flavonols and PAs in cucumber fruit spines.
机译:脊柱颜色是一种重要的水果品质特征,会影响黄瓜(Cucumis sativus)的商业价值。但是,关于黑脊柱品种的代谢产物及其生物合成的调控机制知之甚少。在这项研究中,我们确定黑刺的色素是类黄酮,包括黄酮醇和原花青素(PAs)。我们确定CsMYB60为先前确定的B(黑脊柱)基因座的最佳候选者。在不同发育阶段,黑脊柱自交系中CsMYB60的表达水平和参与类黄酮生物合成的关键基因的表达水平高于白脊柱系。在CsMYB60的第二个内含子中插入了一个类似Mutator的元件(CsMULE),从而降低了其在白棘细胞系中的表达。瞬时过表达测定表明,CsMYB60是黑刺色素沉着中的关键调控基因,Cs4CL是关键结构基因。另外,与白脊线相比,黑脊线中CsMYB60启动子的DNA甲基化水平要低得多。 CsMULE插入片段可能会降低CsMYB60的表达水平,从而导致黄瓜果实刺中黄酮醇和PA的合成受阻。

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