Literature DB >> 22427336

The lectin receptor kinase-VI.2 is required for priming and positively regulates Arabidopsis pattern-triggered immunity.

Prashant Singh1, Yi-Chun Kuo, Swati Mishra, Chia-Hong Tsai, Chih-Cheng Chien, Ching-Wei Chen, Marie Desclos-Theveniau, Po-Wei Chu, Birgit Schulze, Delphine Chinchilla, Thomas Boller, Laurent Zimmerli.   

Abstract

Plant cells can be sensitized toward a subsequent pathogen attack by avirulent pathogens or by chemicals such as β-aminobutyric acid (BABA). This process is called priming. Using a reverse genetic approach in Arabidopsis thaliana, we demonstrate that the BABA-responsive L-type lectin receptor kinase-VI.2 (LecRK-VI.2) contributes to disease resistance against the hemibiotrophic Pseudomonas syringae and the necrotrophic Pectobacterium carotovorum bacteria. Accordingly, LecRK-VI.2 mRNA levels increased after bacterial inoculation or treatments with microbe-associated molecular patterns (MAMPs). We also show that LecRK-VI.2 is required for full activation of pattern-triggered immunity (PTI); notably, lecrk-VI.2-1 mutants show reduced upregulation of PTI marker genes, impaired callose deposition, and defective stomatal closure. Overexpression studies combined with genome-wide microarray analyses indicate that LecRK-VI.2 positively regulates the PTI response. LecRK-VI.2 is demonstrated to act upstream of mitogen-activated protein kinase signaling, but independently of reactive oxygen production and Botrytis-induced kinase1 phosphorylation. In addition, complex formation between the MAMP receptor flagellin sensing2 and its signaling partner brassinosteroid insensitive1-associated kinase1 is observed in flg22-treated lecrk-VI.2-1 mutants. LecRK-VI.2 is also required for full BABA-induced resistance and priming of PTI. Our work identifies LecRK-VI.2 as a novel mediator of the Arabidopsis PTI response and provides insight into molecular mechanisms governing priming.

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Year:  2012        PMID: 22427336      PMCID: PMC3336125          DOI: 10.1105/tpc.112.095778

Source DB:  PubMed          Journal:  Plant Cell        ISSN: 1040-4651            Impact factor:   11.277


  73 in total

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Authors:  Maeli Melotto; William Underwood; Jessica Koczan; Kinya Nomura; Sheng Yang He
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2.  Chlorophyllase 1, a damage control enzyme, affects the balance between defense pathways in plants.

Authors:  Tarja Kariola; Günter Brader; Jing Li; E Tapio Palva
Journal:  Plant Cell       Date:  2004-12-14       Impact factor: 11.277

3.  Dissecting the beta-aminobutyric acid-induced priming phenomenon in Arabidopsis.

Authors:  Jurriaan Ton; Gabor Jakab; Valérie Toquin; Victor Flors; Annalisa Iavicoli; Muriel N Maeder; Jean-Pierre Métraux; Brigitte Mauch-Mani
Journal:  Plant Cell       Date:  2005-02-18       Impact factor: 11.277

Review 4.  Plant stomata: a checkpoint of host immunity and pathogen virulence.

Authors:  Weiqing Zeng; Maeli Melotto; Sheng Yang He
Journal:  Curr Opin Biotechnol       Date:  2010-06-21       Impact factor: 9.740

5.  The N-terminal region of Pseudomonas type III effector AvrPtoB elicits Pto-dependent immunity and has two distinct virulence determinants.

Authors:  Fangming Xiao; Ping He; Robert B Abramovitch; Jennifer E Dawson; Linda K Nicholson; Jen Sheen; Gregory B Martin
Journal:  Plant J       Date:  2007-08-31       Impact factor: 6.417

6.  Cluster analysis and display of genome-wide expression patterns.

Authors:  M B Eisen; P T Spellman; P O Brown; D Botstein
Journal:  Proc Natl Acad Sci U S A       Date:  1998-12-08       Impact factor: 11.205

7.  Interplay between MAMP-triggered and SA-mediated defense responses.

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Journal:  Plant J       Date:  2007-11-14       Impact factor: 6.417

8.  NbLRK1, a lectin-like receptor kinase protein of Nicotiana benthamiana, interacts with Phytophthora infestans INF1 elicitin and mediates INF1-induced cell death.

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Journal:  Planta       Date:  2008-08-06       Impact factor: 4.116

9.  Overexpression of CRK13, an Arabidopsis cysteine-rich receptor-like kinase, results in enhanced resistance to Pseudomonas syringae.

Authors:  Biswa R Acharya; Surabhi Raina; Shahina B Maqbool; Guru Jagadeeswaran; Stephen L Mosher; Heidi M Appel; Jack C Schultz; Daniel F Klessig; Ramesh Raina
Journal:  Plant J       Date:  2007-04-05       Impact factor: 6.417

10.  Rapid heteromerization and phosphorylation of ligand-activated plant transmembrane receptors and their associated kinase BAK1.

Authors:  Birgit Schulze; Tobias Mentzel; Anna K Jehle; Katharina Mueller; Seraina Beeler; Thomas Boller; Georg Felix; Delphine Chinchilla
Journal:  J Biol Chem       Date:  2010-01-26       Impact factor: 5.157

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  82 in total

1.  STRESS INDUCED FACTOR 2 Regulates Arabidopsis Stomatal Immunity through Phosphorylation of the Anion Channel SLAC1.

Authors:  Ching Chan; Dario Panzeri; Eiji Okuma; Kadri Tõldsepp; Ya-Yun Wang; Guan-Yu Louh; Tzu-Chuan Chin; Yu-Hung Yeh; Hung-Ling Yeh; Shweta Yekondi; You-Huei Huang; Tai-Yuan Huang; Tzyy-Jen Chiou; Yoshiyuki Murata; Hannes Kollist; Laurent Zimmerli
Journal:  Plant Cell       Date:  2020-04-23       Impact factor: 11.277

2.  Pea lectin receptor-like kinase functions in salinity adaptation without yield penalty, by alleviating osmotic and ionic stresses and upregulating stress-responsive genes.

Authors:  Neha Vaid; Prashant Pandey; Vineet Kumar Srivastava; Narendra Tuteja
Journal:  Plant Mol Biol       Date:  2015-04-12       Impact factor: 4.076

3.  A gene cluster encoding lectin receptor kinases confers broad-spectrum and durable insect resistance in rice.

Authors:  Yuqiang Liu; Han Wu; Hong Chen; Yanling Liu; Jun He; Haiyan Kang; Zhiguang Sun; Gen Pan; Qi Wang; Jinlong Hu; Feng Zhou; Kunneng Zhou; Xiaoming Zheng; Yulong Ren; Liangming Chen; Yihua Wang; Zhigang Zhao; Qibing Lin; Fuqing Wu; Xin Zhang; Xiuping Guo; Xianian Cheng; Ling Jiang; Chuanyin Wu; Haiyang Wang; Jianmin Wan
Journal:  Nat Biotechnol       Date:  2014-12-08       Impact factor: 54.908

4.  Genome-wide identification and characterization of Lectin receptor-like kinase (LecRLK) genes in mungbean (Vigna radiata L. Wilczek).

Authors:  Poornima Singh; Awdhesh Kumar Mishra; Chandra Mohan Singh
Journal:  J Appl Genet       Date:  2021-01-20       Impact factor: 3.240

Review 5.  Stomatal Defense a Decade Later.

Authors:  Maeli Melotto; Li Zhang; Paula R Oblessuc; Sheng Yang He
Journal:  Plant Physiol       Date:  2017-03-24       Impact factor: 8.340

Review 6.  Receptor Kinases in Plant-Pathogen Interactions: More Than Pattern Recognition.

Authors:  Dingzhong Tang; Guoxun Wang; Jian-Min Zhou
Journal:  Plant Cell       Date:  2017-03-16       Impact factor: 11.277

7.  Genome-wide analysis of lectin receptor-like kinase family from Arabidopsis and rice.

Authors:  Neha Vaid; Prashant Kumar Pandey; Narendra Tuteja
Journal:  Plant Mol Biol       Date:  2012-08-31       Impact factor: 4.076

8.  A Lectin Receptor-Like Kinase Mediates Pattern-Triggered Salicylic Acid Signaling.

Authors:  Xuming Luo; Ning Xu; Junkai Huang; Feng Gao; Huasong Zou; Marie Boudsocq; Gitta Coaker; Jun Liu
Journal:  Plant Physiol       Date:  2017-07-10       Impact factor: 8.340

9.  The Arabidopsis LECTIN RECEPTOR KINASE-VI.2 is a functional protein kinase and is dispensable for basal resistance to Botrytis cinerea.

Authors:  Prashant Singh; Chih-Cheng Chien; Swati Mishra; Chia-Hong Tsai; Laurent Zimmerli
Journal:  Plant Signal Behav       Date:  2012-12-06

10.  Environmental History Modulates Arabidopsis Pattern-Triggered Immunity in a HISTONE ACETYLTRANSFERASE1-Dependent Manner.

Authors:  Prashant Singh; Shweta Yekondi; Po-Wen Chen; Chia-Hong Tsai; Chun-Wei Yu; Keqiang Wu; Laurent Zimmerli
Journal:  Plant Cell       Date:  2014-06-24       Impact factor: 11.277

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