Valsa canker, caused by Valsa mali (Cytospora mali) or V. pyri, is a destructive fungal disease affecting apple and pear production. NAC transcription factors have been shown to participate in multiple immune signaling pathways. However, the key members of this family involved in Valsa canker resistance remain largely unknown. In this study, we demonstrate that PbeNAC72, an NAC transcription factor responsive to Valsa canker signals in Pyrus betulifolia, positively regulates resistance in apple and pear fruits. In ‘Duli-G03’ (P. betulifolia) suspension cells, overexpression of PbeNAC72 significantly enhanced resistance to Valsa canker and induced reactive oxygen species bursts, as well as the expression of salicylic acid and jasmonic acid-related genes. Subsequent weighted gene co-expression network analysis revealed that PbeNAC72 is primarily linked to genes associated with “DNA replication” and “microtubule-based movement.” We therefore suggest that PbeNAC72 activates genes related to core signaling pathways and fundamental cellular processes, which further contribute to the positive regulation of Valsa canker resistance. Our results provide novel insights into the resistance mechanism and identify a candidate gene for future molecular breeding efforts.
Wang et al. (Fri,) studied this question.