Overexpression of plant chitin receptors in wheat confers broad‐spectrum resistance to fungal diseases
SUMMARY Wheat (Triticum aestivum L.) is a globally staple crop vulnerable to various fungal diseases, significantly impacting its yield. Plant cell surface receptors play a crucial role in recognizing pathogen‐associated molecular patterns (PAMPs) and activating PAMP‐triggered immunity, boosting res...
Gespeichert in:
Veröffentlicht in: | The Plant journal : for cell and molecular biology 2024-11, Vol.120 (3), p.1047-1063 |
---|---|
Hauptverfasser: | , , , , , , , , , , , |
Format: | Artikel |
Sprache: | eng |
Schlagworte: | |
Online-Zugang: | Volltext |
Tags: |
Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
|
Zusammenfassung: | SUMMARY
Wheat (Triticum aestivum L.) is a globally staple crop vulnerable to various fungal diseases, significantly impacting its yield. Plant cell surface receptors play a crucial role in recognizing pathogen‐associated molecular patterns (PAMPs) and activating PAMP‐triggered immunity, boosting resistance against a wide range of plant diseases. Although the role of plant chitin receptor CERK1 in immune recognition and defense has been established in Arabidopsis and rice, its function and potential agricultural applications in enhancing resistance to crop diseases remain largely unexplored. Here, we identify and characterize TaCERK1 in Triticeae crop wheat, uncovering its involvement in chitin recognition, immune regulation, and resistance to fungal diseases. By a comparative analysis of CERK1 homologs in Arabidopsis and monocot crops, we demonstrate that AtCERK1 in Arabidopsis elicits the most robust immune response. Moreover, we show that overexpressing TaCERK1 and AtCERK1 in wheat confers resistance to multiple fungal diseases, including Fusarium head blight, stripe rust, and powdery mildew. Notably, transgenic wheat lines with moderately expressed AtCERK1 display superior disease resistance and heightened immune responses without adversely affecting growth and yield, compared to TaCERK1 overexpression transgenics. Our findings highlight the significance of plant chitin receptors across diverse plant species and suggest potential strategies for bolstering crop resistance against broad‐spectrum diseases in agricultural production through the utilization of plant immune receptors.
Significance Statement
CERK1 acts as a chitin immune receptor for plant defense and survival, but its role and applied potential in Triticeae crops remain unknown. We identify TaCERK1 in wheat, revealing distinct characteristics of CERK1 homologs in chitin recognition and immune activation between cereals and the dicot Arabidopsis. Notably, overexpressing CERK1s from both cereal and Arabidopsis in wheat confers broad‐spectrum resistance to fungal diseases. Our findings highlight the potential of plant immune receptors in controlling crop diseases. |
---|---|
ISSN: | 0960-7412 1365-313X 1365-313X |
DOI: | 10.1111/tpj.17035 |