Investigating postharvest seed coat darkening in common beans: a molecular perspective beyond the major P gene
Islam, N. S.; Dhaubhadel, S.
Show abstract
Many market classes of common beans (Phaseolus vulgaris) 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 P encodes for a bHLH protein with its Psdallele controlling the postharvest slow darkening seed coat trait. In the present investigation, we determined that 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 Anthocyanin Reductase (PvANR) promoter but regulates its expression by interacting with PvMYB3A, which directly binds to the PvANR 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 Psd 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. HighlightColor and pattern of the common bean seed coat are important traits in bean breeding, which is determined by level of proanthocyanidins (PA). This study provides experimental evidence for the regulation of PA biosynthesis in common beans by the P-PvMYB3A-PvWD9 complex together with some yet unknown associated protein(s). In the slow darkening beans, substitution of P with its slow dakening isoform Psd reduces the target biosynthetic gene expression inflencing PA production.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Dual localization of JA receptor, CaCOI2, explains JA perception dynamics in chickpea 97%
- Assassination Tango: An NLR/NLR-ID immune receptors pair of rapeseed co-operates inside the nucleus to activate cell death 97%
- MdLRR-RLK1-MdATG3 module enhances the resistance of apples to abiotic stress via autophagy 96%
Similar papers in this journal
- The Arabidopsis AAC Proteins CIL and CIA2 Are Sub-functionalized Paralogs involved in Chloroplast Development 97%
- AP2/ERF transcription factor NbERF-IX-33 is involved in the regulation of phytoalexin production for the resistance of Nicotiana benthamiana to Phytophthora infestans. 96%
- Overexpression of the transcription factor GROWTH-REGULATING FACTOR5 improves transformation of dicot and monocot species 96%
Similar papers in this journal
- Structure-function relationship of Gossypium hirsutum NAC transcription factor, GhNAC4 with regard to ABA and abiotic stress responses 97%
- Phosphorylation of Serine114 of the transcription factor ABSCISIC ACID INSENSITIVE 4 is essential for activity 96%
- Expression of coffee florigen CaFT1 reveals a sustained floral induction window associated with asynchronous flowering in tropical perennials 96%
Similar papers in this journal
Similar papers in this journal
- GATA transcription factor in common bean: a comprehensive genome-wide functional characterization, identification, and abiotic stress response evaluation. 96%
- Characterisation of the ERF102 to ERF105 genes of Arabidopsis thaliana and their role in the response to cold stress 96%
- The Evolution and Developmental Expression Profile of the PIN-FORMED Family in Setaria viridis 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.