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FvhHLH9 Functions as a Positive Regulator of Anthocyanin Biosynthesis by Forming a HY5-bHLH9 Transcription Complex in Strawberry Fruits

机译:FVHHLH9通过在草莓果实中形成Hy5-BHLH9转录复合物作为花青素生物合成的正调节剂

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摘要

Anthocyanin accumulation is transcriptionally regulated by the MYB-bHLH-WD40 complex. light is indispensable for anthocyanin accumulation, and light-inducible MYB and HY5 were considered to promote anthocyanin accumulation in many fruits. Whether and how light-inducible bHLH transcription factor and HY5 regulate anthocyanin synthesis in strawberry is unknown. In this study, we identified a bHLH transcription factor, FvbHLH9, which was induced by light as well as FvHY5, and found that, similar to FvHY5, the transient overexpression and interference FvbHLH9 in strawberry fruits can promote and decrease anthocyanin accumulation, respectively, indicating FvhHLH9 functions as a positive regulator of anthocyanin biosynthesis. Furthermore, we confirmed that both FvHY5 and FvbHLH9 specifically bind to the promoter region of some key enzyme genes, including FvDFR, and the expression of FvDFR was activated through the heterodimer formation between FvHY5 and FvbHLH9. Finally, we confirmed that FvbHLH9-promoted anthocyanin accumulation is dependent on HY5-bHLH heterodimerisation in Arabidopsis. Our findings provide insights into a mechanism involving the synergistic regulation of light-dependent coloration and anthocyanin biosynthesis via a HY5-bHLH heterodimer formed by the interaction of FvHY5 and FvbHLH9 in strawberry fruits.
机译:花青素的积累受MYB-bHLH-WD40复合物的转录调控。光对花青素的积累是必不可少的,光诱导的MYB和HY5被认为促进了许多水果花青素的积累。光诱导bHLH转录因子和HY5是否以及如何调节草莓花青素的合成尚不清楚。在这项研究中,我们鉴定了一种bHLH转录因子FvhHLH9,它是由光和FvHY5诱导的,并且发现,与FvHY5类似,草莓果实中的瞬时过表达和干扰FvhHLH9可以分别促进和减少花青素的积累,表明FvhHLH9是花青素生物合成的正调节器。此外,我们还证实FvHY5和FvbHLH9都特异性地结合到一些关键酶基因的启动子区域,包括FvDFR,并且FvDFR的表达通过FvHY5和FvbHLH9之间的异二聚体形成而被激活。最后,我们证实FvbHLH9促进的花色素苷积累依赖于拟南芥中的HY5 bHLH异源二聚化。我们的研究结果揭示了草莓果实中FvHY5和FvbHLH9相互作用形成的HY5-bHLH异二聚体协同调节光依赖性着色和花青素生物合成的机制。

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