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Pattern-recognition receptors are required for NLR-mediated plant immunity.

Publication ,  Journal Article
Yuan, M; Jiang, Z; Bi, G; Nomura, K; Liu, M; Wang, Y; Cai, B; Zhou, J-M; He, SY; Xin, X-F
Published in: Nature
April 2021

The plant immune system is fundamental for plant survival in natural ecosystems and for productivity in crop fields. Substantial evidence supports the prevailing notion that plants possess a two-tiered innate immune system, called pattern-triggered immunity (PTI) and effector-triggered immunity (ETI). PTI is triggered by microbial patterns via cell surface-localized pattern-recognition receptors (PRRs), whereas ETI is activated by pathogen effector proteins via predominantly intracellularly localized receptors called nucleotide-binding, leucine-rich repeat receptors (NLRs)1-4. PTI and ETI are initiated by distinct activation mechanisms and involve different early signalling cascades5,6. Here we show that Arabidopsis PRR and PRR co-receptor mutants-fls2 efr cerk1 and bak1 bkk1 cerk1 triple mutants-are markedly impaired in ETI responses when challenged with incompatible Pseudomonas syrinage bacteria. We further show that the production of reactive oxygen species by the NADPH oxidase RBOHD is a critical early signalling event connecting PRR- and NLR-mediated immunity, and that the receptor-like cytoplasmic kinase BIK1 is necessary for full activation of RBOHD, gene expression and bacterial resistance during ETI. Moreover, NLR signalling rapidly augments the transcript and/or protein levels of key PTI components. Our study supports a revised model in which potentiation of PTI is an indispensable component of ETI during bacterial infection. This revised model conceptually unites two major immune signalling cascades in plants and mechanistically explains some of the long-observed similarities in downstream defence outputs between PTI and ETI.

Duke Scholars

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Published In

Nature

DOI

EISSN

1476-4687

ISSN

0028-0836

Publication Date

April 2021

Volume

592

Issue

7852

Start / End Page

105 / 109

Related Subject Headings

  • Signal Transduction
  • Receptors, Pattern Recognition
  • Reactive Oxygen Species
  • Pseudomonas syringae
  • Protein Serine-Threonine Kinases
  • Plant Immunity
  • Plant Diseases
  • NLR Proteins
  • NADPH Oxidases
  • General Science & Technology
 

Citation

APA
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MLA
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Yuan, M., Jiang, Z., Bi, G., Nomura, K., Liu, M., Wang, Y., … Xin, X.-F. (2021). Pattern-recognition receptors are required for NLR-mediated plant immunity. Nature, 592(7852), 105–109. https://doi.org/10.1038/s41586-021-03316-6
Yuan, Minhang, Zeyu Jiang, Guozhi Bi, Kinya Nomura, Menghui Liu, Yiping Wang, Boying Cai, Jian-Min Zhou, Sheng Yang He, and Xiu-Fang Xin. “Pattern-recognition receptors are required for NLR-mediated plant immunity.Nature 592, no. 7852 (April 2021): 105–9. https://doi.org/10.1038/s41586-021-03316-6.
Yuan M, Jiang Z, Bi G, Nomura K, Liu M, Wang Y, et al. Pattern-recognition receptors are required for NLR-mediated plant immunity. Nature. 2021 Apr;592(7852):105–9.
Yuan, Minhang, et al. “Pattern-recognition receptors are required for NLR-mediated plant immunity.Nature, vol. 592, no. 7852, Apr. 2021, pp. 105–09. Epmc, doi:10.1038/s41586-021-03316-6.
Yuan M, Jiang Z, Bi G, Nomura K, Liu M, Wang Y, Cai B, Zhou J-M, He SY, Xin X-F. Pattern-recognition receptors are required for NLR-mediated plant immunity. Nature. 2021 Apr;592(7852):105–109.

Published In

Nature

DOI

EISSN

1476-4687

ISSN

0028-0836

Publication Date

April 2021

Volume

592

Issue

7852

Start / End Page

105 / 109

Related Subject Headings

  • Signal Transduction
  • Receptors, Pattern Recognition
  • Reactive Oxygen Species
  • Pseudomonas syringae
  • Protein Serine-Threonine Kinases
  • Plant Immunity
  • Plant Diseases
  • NLR Proteins
  • NADPH Oxidases
  • General Science & Technology