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Research Article | Open Access

AcMYB12 and AcMYB29 promote flavonol biosynthesis through transcriptional regulation in onion (Allium cepa L.)

Qingwei Jia1,2Shuting Gai1,2Yiren Wang1,2Zhihui Zhang1,2Xiong Wu3Wenhui Wu1,2Yumeng Pang1,2Xiaonan Zhang1,2Lei Qin1,2( )Yong Wang1,2( )
College of Horticulture and Landscape Architecture, Northeast Agricultural University, Harbin 150030, China
Key Laboratory of Biology and Genetic Improvement of Horticultural Crops (Northeast Region) of Ministry of Agriculture and Rural Affairs, Northeast Agricultural University, Harbin 150030, China
Henan Kanglong Hi-tech Seed Co., Ltd., Jiyuan 459000, China
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Highlights

AcMYB12 and AcMYB29 exhibit both functional redundancy and distinct roles in regulating flavonol biosynthesis.

• The differential binding activity of AcMYB12 and AcMYB29 with cis-elements results in distinct regulatory functions.

Abstract

Flavonols possess significant medical value and are essential for plant stress resistance. These compounds constitute primary components of the nutritional value in onions, particularly in edible portions. While the flavonol biosynthetic pathway has been extensively studied, its regulatory mechanisms in onions remain incompletely understood. This investigation identified flavonol biosynthesis and regulatory genes through analysis of transcriptome and metabolomics data from different developmental stages of ‘SA1’. Two R2R3-MYB transcription factors, AcMYB12 and AcMYB29, were identified as positive regulators of onion flavonol biosynthesis. Transcriptional activation assays demonstrated that both could activate AcCHS, AcF3xH, and AcFLS. Yeast one-hybrid assays confirmed their direct binding to these gene promoters. The expression levels of flavonol pathway genes and flavonol contents in AcMYB12/AcMYB29-overexpressing onion calli and Arabidopsis plants were significantly higher than those in the control group. Transient silencing assays revealed partial functional redundancy between these two transcription factors. Notably, their regulatory capabilities exhibited significant differences. AcMYB12 predominantly regulates flavonol accumulation, while AcMYB29 specifically influences quercetin. Further investigation of the molecular mechanisms underlying differential regulation indicated variations in cis-elements within flavonol pathway gene promoters and differences in binding activity between transcription factors and cis-elements.

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Journal of Integrative Agriculture (JIA)
Pages 1035-1050

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Cite this article:
Jia Q, Gai S, Wang Y, et al. AcMYB12 and AcMYB29 promote flavonol biosynthesis through transcriptional regulation in onion (Allium cepa L.). Journal of Integrative Agriculture (JIA), 2026, 25(3): 1035-1050. https://doi.org/10.1016/j.jia.2025.06.023

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Received: 18 June 2024
Revised: 19 September 2024
Accepted: 11 November 2024
Published: 24 June 2025
© 2026 CAAS.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). Peer review under responsibility of Editorial Board of Journal of Integrative Agriculture.