Literature DB >> 20615110

Methods to study PAMP-triggered immunity using tomato and Nicotiana benthamiana.

Hanh P Nguyen1, Suma Chakravarthy, André C Velásquez, Heather L McLane, Lirong Zeng, Hitoshi Nakayashiki, Duck-Hwan Park, Alan Collmer, Gregory B Martin.   

Abstract

Understanding the molecular basis of plant responses to pathogen-associated molecular patterns (PAMPs) is an active area of research in the field of plant-microbe interactions. A growing number of plant genes involved in various steps of PAMP-triggered immunity (PTI) pathways and microbial factors involved in the elicitation or suppression of PTI have been identified. These studies have largely relied on Arabidopsis thaliana and, therefore, most of the PTI assays have been developed and optimized for that model plant system. Although PTI is a conserved feature among plants, the response spectra vary across different species. Thus, there is a need for robust PTI assays in other pathosystems, such as those involving Solanaceae plant-pathogen interactions, which include many economically important plants and their diseases. We have optimized molecular, cellular, and whole-plant methods to measure PTI responses in two widely studied solanaceous species, tomato (Solanum lycopersicum) and Nicotiana benthamiana. Here, we provide detailed protocols for measuring various PTI-associated phenotypes, including bacterial populations after pretreatment of leaves with PAMPs, induction of reporter genes, callose deposition, activation of mitogen-activated protein kinases, and a luciferase-based reporter system. These methods will facilitate limited genetic screens and detailed characterization of potential PTI-related genes in model and economically important Solanaceae spp.-pathogen interactions.

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Year:  2010        PMID: 20615110     DOI: 10.1094/MPMI-23-8-0991

Source DB:  PubMed          Journal:  Mol Plant Microbe Interact        ISSN: 0894-0282            Impact factor:   4.171


  64 in total

1.  Contribution of a harpin protein from Xanthomonas axonopodis pv. citri to pathogen virulence.

Authors:  Germán G Sgro; Florencia A Ficarra; Germán Dunger; Telma E Scarpeci; Estela M Valle; Adriana Cortadi; Elena G Orellano; Natalia Gottig; Jorgelina Ottado
Journal:  Mol Plant Pathol       Date:  2012-07-12       Impact factor: 5.663

2.  A tomato LysM receptor-like kinase promotes immunity and its kinase activity is inhibited by AvrPtoB.

Authors:  Lirong Zeng; André C Velásquez; Kathy R Munkvold; Jingwei Zhang; Gregory B Martin
Journal:  Plant J       Date:  2011-10-14       Impact factor: 6.417

3.  Functional Analysis of Plant Defense Suppression and Activation by the Xanthomonas Core Type III Effector XopX.

Authors:  William Stork; Jung-Gun Kim; Mary Beth Mudgett
Journal:  Mol Plant Microbe Interact       Date:  2015-02       Impact factor: 4.171

4.  The novel GrCEP12 peptide from the plant-parasitic nematode Globodera rostochiensis suppresses flg22-mediated PTI.

Authors:  Shiyan Chen; Demosthenis Chronis; Xiaohong Wang
Journal:  Plant Signal Behav       Date:  2013-06-27

5.  Tomato PEPR1 ORTHOLOG RECEPTOR-LIKE KINASE1 Regulates Responses to Systemin, Necrotrophic Fungi, and Insect Herbivory.

Authors:  Siming Xu; Chao-Jan Liao; Namrata Jaiswal; Sanghun Lee; Dae-Jin Yun; Sang Yeol Lee; Michael Garvey; Ian Kaplan; Tesfaye Mengiste
Journal:  Plant Cell       Date:  2018-08-21       Impact factor: 11.277

6.  XacFhaB adhesin, an important Xanthomonas citri ssp. citri virulence factor, is recognized as a pathogen-associated molecular pattern.

Authors:  Betiana S Garavaglia; Tamara Zimaro; Luciano A Abriata; Jorgelina Ottado; Natalia Gottig
Journal:  Mol Plant Pathol       Date:  2016-06-09       Impact factor: 5.663

7.  Antiviral ARGONAUTEs Against Turnip Crinkle Virus Revealed by Image-Based Trait Analysis.

Authors:  Xingguo Zheng; Noah Fahlgren; Arash Abbasi; Jeffrey C Berry; James C Carrington
Journal:  Plant Physiol       Date:  2019-05-01       Impact factor: 8.340

8.  Tomato Wall-Associated Kinase SlWak1 Depends on Fls2/Fls3 to Promote Apoplastic Immune Responses to Pseudomonas syringae.

Authors:  Ning Zhang; Marina A Pombo; Hernan G Rosli; Gregory B Martin
Journal:  Plant Physiol       Date:  2020-05-05       Impact factor: 8.340

9.  Hierarchy and roles of pathogen-associated molecular pattern-induced responses in Nicotiana benthamiana.

Authors:  Cécile Segonzac; Doreen Feike; Selena Gimenez-Ibanez; Dagmar R Hann; Cyril Zipfel; John P Rathjen
Journal:  Plant Physiol       Date:  2011-04-08       Impact factor: 8.340

10.  DOTAP, a lipidic transfection reagent, triggers Arabidopsis plant defense responses.

Authors:  Carolina Grandellis; Betiana S Garavaglia; Natalia Gottig; Caroline Lonez; Jean-Marie Ruysschaert; Jorgelina Ottado
Journal:  Planta       Date:  2018-09-25       Impact factor: 4.116

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