Islam Nishat S, Dhaubhadel Sangeeta
London Research and Development Centre, Agriculture and Agri-Food Canada, London, ON, Canada.
Department of Biology, University of Western Ontario, London, ON, Canada.
Front Plant Sci. 2025 Aug 19;16:1595906. doi: 10.3389/fpls.2025.1595906. eCollection 2025.
Many market classes of common beans () have a significant reduction in crop value due to the postharvest darkening of the seed coat. Seed coat darkening is caused by an elevated accumulation and oxidation of proanthocyanidins (PAs). In common bean, the major color gene encodes for a bHLH protein with its allele controlling the postharvest slow darkening seed coat trait. In the present investigation, we determined that P/P, PvMYB3A, and PvWD9 are the essential components that form a protein complex and regulate PA biosynthesis in pinto beans. P does not bind with the PA biosynthetic gene () promoter but regulates its expression by interacting with PvMYB3A, which directly binds to the promoter. PvWD9 is an essential member of the core protein complex, which requires one or more additional plant components in order to interact with its partner proteins P and PvMYB3A and create a functioning complex. The P isoform affects the accumulation of PA by functioning in a similar manner to its isoform P, albeit at a lower efficiency. Understanding the regulation of PA biosynthesis in common beans helps to explain variances in seed coat color and issues associated with darkening after harvest.
许多市场类别的普通菜豆()由于种皮采后变黑而导致作物价值大幅降低。种皮变黑是由原花青素(PAs)积累和氧化增加引起的。在普通菜豆中,主要颜色基因编码一种bHLH蛋白,其等位基因控制采后种皮缓慢变黑的性状。在本研究中,我们确定P/P、PvMYB3A和PvWD9是形成蛋白复合体并调节斑豆中PA生物合成的必需成分。P不与PA生物合成基因()启动子结合,但通过与直接结合到启动子的PvMYB3A相互作用来调节其表达。PvWD9是核心蛋白复合体的必需成员,它需要一种或多种其他植物成分才能与其伙伴蛋白P和PvMYB3A相互作用并形成一个起作用的复合体。P同工型通过与其同工型P以类似方式起作用来影响PA的积累,尽管效率较低。了解普通菜豆中PA生物合成的调控有助于解释种皮颜色的差异以及与收获后变黑相关的问题。