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April 6, 2026Plant Biotechnology Journal3 citationsOpen Access

Regulatory Mechanism of CsMYB1 ‐ CsMYB82 / CsbHLH48 ‑ CsCAD4 Model for Resistance Against Colletotrichum gloeosporioides in Camellia sinensis

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RHRui HanYWYu WangZXZekun Xue

Key Points

  • This research aims to explore the molecular mechanisms behind anthracnose resistance in tea plants by investigating specific gene interactions.
  • Analyzed RNA-seq data to identify expression patterns of CsMYB82 in resistant and susceptible tea varieties.
  • Conducted Y1H screenings to determine CsMYB1's regulatory effect on CsMYB82.
  • Used DNA-affinity purification sequencing (DAP-seq) to examine CsMYB82's interaction with CsCAD4.
  • Performed functional analyses through overexpression and virus-induced gene silencing (VIGS) in tobacco and tea plants.
  • CsMYB1 was found to negatively regulate CsMYB82 expression.
  • CsMYB82 directly binds to the promoter of CsCAD4, enhanced by CsbHLH48.
  • Overexpression of CsMYB82 or CsCAD4 resulted in increased susceptibility to anthracnose.
  • Silencing of CsMYB82 or CsCAD4 led to reduced disease symptoms and increased lignin accumulation.

Abstract

Anthracnose caused by Colletotrichum gloeosporioides is a major threat to tea cultivation; however, the molecular mechanism underlying different resistance among tea cultivars remains unclear. We identified distinct expression patterns of CsMYB82 between anthracnose-resistant and susceptible varieties after infection with anthracnose from previous RNA-seq data. We further investigated the role of CsMYB82 within a lignin-associated regulatory network during anthracnose responses. We found that CsMYB1 negatively regulates CsMYB82 expression by Y1H screen. Additionally, we identified the interaction between CsMYB82 and CsbHLH48 both in vitro and in vivo. DNA-affinity purification sequencing (DAP-seq) revealed that CsMYB82 directly binds to the promoter of CsCAD4, and this binding activity is enhanced in the presence of CsbHLH48. Functional analyses indicated that overexpression of CsMYB82 or CsCAD4 in tobacco and tea leaves was associated with increased susceptibility to anthracnose, whereas transient silencing of CsMYB82 or CsCAD4 via virus-induced gene silencing (VIGS) in tea leaves resulted in reduced disease symptoms accompanied by elevated lignin accumulation. The functional analysis of CsMYB1 showed the opposite phenotype. Collectively, these results suggest that CsMYB82 participates in a transcriptional regulatory module involving CsMYB1, CsbHLH48, and CsCAD4, which modulates lignin biosynthesis and influences anthracnose responses in tea plants. This study provides mechanistic insights into the transcriptional regulation of lignin-associated defence responses and contributes to a better understanding of anthracnose resistance in tea.

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Cite This Study

Han et al. (2026) studied this question.

synapsesocial.com/papers/69d34e1e9c07852e0af97ad2https://doi.org/10.1111/pbi.70659
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