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SbMYB3 transcription factor promotes root-specific flavone biosynthesis in Scutellaria baicalensis.


ABSTRACT: Scutellaria baicalensis Georgi produces abundant root-specific flavones (RSFs), which provide various benefits to human health. We have elucidated the complete biosynthetic pathways of baicalein and wogonin. However, the transcriptional regulation of flavone biosynthesis in S. baicalensis remains unclear. We show that the SbMYB3 transcription factor functions as a transcriptional activator involved in the biosynthesis of RSFs in S. baicalensis. Yeast one-hybrid and transcriptional activation assays showed that SbMYB3 binds to the promoter of flavone synthase II-2 (SbFNSII-2) and enhances its transcription. In S. baicalensis hairy roots, RNAi of SbMYB3 reduced the accumulation of baicalin and wogonoside, and SbMYB3 knockout decreased the biosynthesis of baicalein, baicalin, wogonin, and wogonoside, whereas SbMYB3 overexpression enhanced the contents of baicalein, baicalin, wogonin, and wogonoside. Transcript profiling by qRT-PCR demonstrated that SbMYB3 activates SbFNSII-2 expression directly, thus leading to more abundant accumulation of RSFs. This study provides a potential target for metabolic engineering of RSFs.

SUBMITTER: Fang Y 

PROVIDER: S-EPMC9909510 | biostudies-literature | 2023 Feb

REPOSITORIES: biostudies-literature

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SbMYB3 transcription factor promotes root-specific flavone biosynthesis in <i>Scutellaria baicalensis</i>.

Fang Yumin Y   Liu Jie J   Zheng Minmin M   Zhu Sanming S   Pei Tianlin T   Cui Mengying M   Chang Lijing L   Xiao Hanwen H   Yang Jun J   Martin Cathie C   Zhao Qing Q  

Horticulture research 20221202 2


<i>Scutellaria baicalensis</i> Georgi produces abundant root-specific flavones (RSFs), which provide various benefits to human health. We have elucidated the complete biosynthetic pathways of baicalein and wogonin. However, the transcriptional regulation of flavone biosynthesis in <i>S. baicalensis</i> remains unclear. We show that the SbMYB3 transcription factor functions as a transcriptional activator involved in the biosynthesis of RSFs in <i>S. baicalensis</i>. Yeast one-hybrid and transcrip  ...[more]

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