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Plant Disease Resistance-Related Signaling Pathways: Recent Progress and Future Prospects.

Li-Na DingYue-Tao LiYuan-Zhen WuTeng LiRui GengJun CaoWei ZhangXiao-Li Tan
Published in: International journal of molecular sciences (2022)
Plant-pathogen interactions induce a signal transmission series that stimulates the plant's host defense system against pathogens and this, in turn, leads to disease resistance responses. Plant innate immunity mainly includes two lines of the defense system, called pathogen-associated molecular pattern-triggered immunity (PTI) and effector-triggered immunity (ETI). There is extensive signal exchange and recognition in the process of triggering the plant immune signaling network. Plant messenger signaling molecules, such as calcium ions, reactive oxygen species, and nitric oxide, and plant hormone signaling molecules, such as salicylic acid, jasmonic acid, and ethylene, play key roles in inducing plant defense responses. In addition, heterotrimeric G proteins, the mitogen-activated protein kinase cascade, and non-coding RNAs (ncRNAs) play important roles in regulating disease resistance and the defense signal transduction network. This paper summarizes the status and progress in plant disease resistance and disease resistance signal transduction pathway research in recent years; discusses the complexities of, and interactions among, defense signal pathways; and forecasts future research prospects to provide new ideas for the prevention and control of plant diseases.
Keyphrases
  • nitric oxide
  • cell wall
  • current status
  • oxidative stress
  • dendritic cells
  • endoplasmic reticulum stress
  • hydrogen peroxide
  • living cells
  • antimicrobial resistance
  • fluorescent probe