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LysM Proteins TaCEBiP and TaLYK5 are Involved in Immune Responses Mediated by Chitin Coreceptor TaCERK1 in Wheat. | LitMetric

AI Article Synopsis

  • - The study identified 65 LysM family genes in bread wheat, classified into four categories based on their structures and functions in plant-microbe interactions.
  • - Key LysM proteins (TaCEBiP, TaLYK5, and TaCERK1) were found to interact with pathogen-associated molecular patterns (PAMPs), enhancing wheat's resistance to diseases.
  • - The research revealed that wheat utilizes two chitin perception systems to recognize pathogens, highlighting the signaling pathways activated by these LysM proteins under biotic stress.

Article Abstract

Plant lysin motif (LysM) ectodomain receptors interact with pathogen-associated molecular patterns (PAMPs) and have critical functions in plant-microbe interactions. In this study, 65 LysM family genes were identified using the recent version of the reference sequence of bread wheat (), in which 23, 16, 20, and 6 members belonged to LysM-containing receptor-like kinases (LYKs), LysM-containing receptor-like proteins (LYPs), extracellular LysM proteins (LysMes), and intracellular nonsecretory LysM proteins (LysMns), respectively. The study found that TaCEBiP, TaLYK5, and TaCERK1 were highly responsive to PAMP elicitors and phytopathogens, with TaCEBiP and TaLYK5 binding directly to chitin. TaCERK1 acted as a coreceptor with TaCEBiP and TaLYK5 at the plasma membrane. Overexpression of , , and in leaves exhibited enhanced resistance to . Subsequently, knocking down , , and genes with barley stripe mosaic virus-VIGS compromised the wheat defense response to an avirulent strain of . The study concluded that wheat has two synergistic chitin perception systems for detecting pathogen elicitors, with the activated CERK1 intracellular kinase domain leading to signaling transduction. This research provides valuable insights into the functional roles and regulatory mechanisms of wheat LysM members under biotic stress.

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Source
http://dx.doi.org/10.1021/acs.jafc.3c02686DOI Listing

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