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February 2, 2026Horticulturae0 citationsOpen Access

Hormonal Signals and DNA Replication Are Involved in the Positive Regulation of PbeNAC72 on Valsa Canker Resistance in Pyrus betulifolia

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WWW. WangHHHuanhuan HuYLYatao Li

Key Points

  • The research aims to uncover the role of PbeNAC72 in regulating resistance to Valsa canker in Pyrus betulifolia.
  • Performed overexpression of PbeNAC72 in P. betulifolia suspension cells
  • Measured resistance levels to Valsa canker
  • Analyzed reactive oxygen species production
  • Examined expression of salicylic acid and jasmonic acid-related genes
  • Conducted weighted gene co-expression network analysis
  • Overexpression of PbeNAC72 significantly enhanced resistance to Valsa canker
  • Induction of reactive oxygen species bursts was observed
  • Salicylic acid and jasmonic acid-related gene expressions were upregulated
  • PbeNAC72 was linked to genes involved in DNA replication and microtubule-based movement

Abstract

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.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/6980fe13c1c9540dea80fcb6https://doi.org/10.3390/horticulturae12020171
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Screening and Elucidating Functional Mechanisms of NAC Transcription Factors Regulating Valsa Canker Resistance in Pyrus betulifolia2026
  2. 2PbeVAMP724 Alleviates Cell Death and Enhances Resistance to Valsa Canker in Pyrus betulifolia2026
  3. 3Study of Pear Resistance to Multiple Pathogens Through Mediation of JA/SA Signaling Pathways2026
  4. 4Inhibition of PbeXTH1 and PbeSEOB1 is required for the Valsa canker resistance contributed by Wall‐associated kinase gene MbWAK12024 · 3 citations
  5. 5Identification and Characterization of NAC Transcription Factors Involved in Pine Wilt Nematode Resistance in Pinus massoniana2025