Abstract
<jats:p>Peach (Prunus persica) production and the northward expansion of its cultivation boundaries are severely constrained by recurrent extreme climatic events. Based on time-series transcriptomic analysis and qRT-PCR validation, multiple candidate transcription factor genes responsive to abscisic acid (ABA) were identified (PpERF48, PpERF017, PpMYB6, PpWRKY46, PpWRKY40, and PpbHLH35). Among these, PpMYB6 was further characterized through bioinformatic analysis, and transgenic peach callus and Arabidopsis thaliana lines overexpressing PpMYB6 were generated, revealing its dual role in modulating plant growth and conferring low-temperature stress tolerance. Yeast one-hybrid and dual-luciferase reporter assays confirmed that PpMYB6 directly binds to the PpCBF2 promoter to activate its transcription, thereby enhancing cold resistance. Furthermore, yeast two-hybrid library screening identified DWARF8 as a candidate interacting protein, pointing to a putative mechanism by which PpMYB6 may negatively regulate vegetative growth via the gibberellin pathway. Together, this study elucidates a novel molecular framework governing cold tolerance and growth balance in peach, providing a promising target gene for molecular breeding of cold-resistant cultivars and rootstocks.</jats:p>