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Dual actions of chloroinconazide on pepper blight in Capsicum annuum: disruption of Phytophthora capsici mycelium and activation of CaCNGC9-mediated SA signaling.

Xin ZhuAihong ZouRui LiaoJianjian ZhangChangyun LiuChuanxiang WangChunyan HaoDaoquan ChengLunfei ChenXianchao Sun
Published in: Pest management science (2024)
CHI exhibited potent dual inhibitory effects on P. capsici by disrupting mycelial structure and activating the CaCNGC9-mediated SA signaling pathway. These dual mechanisms of action suggested that CHI could serve as a promising alternative chemical fungicide for the effective management of pepper blight, offering a new approach to control this devastating disease. Our findings highlighted the potential of CHI as a sustainable and efficient solution to combat the increasing resistance of P. capsici to conventional fungicides, ensuring better crop protection and yield. © 2024 Society of Chemical Industry.
Keyphrases
  • signaling pathway
  • climate change
  • epithelial mesenchymal transition
  • risk assessment
  • cell proliferation
  • human health
  • endoplasmic reticulum stress