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      Thienopyrimidine-type compounds protect Arabidopsis plants against the hemibiotrophic fungal pathogen Colletotrichum higginsianum and bacterial pathogen Pseudomonas syringae pv. maculicola

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          ABSTRACT

          Plant activators activate systemic acquired resistance-like defense responses or induced systemic resistance, and thus protect plants from pathogens. We screened a chemical library composed of structurally diverse small molecules. We isolated six plant immune-inducing thienopyrimidine-type compounds and their analogous compounds. It was observed that the core structure of thienopyrimidine plays a role in induced resistance in plants. Furthermore, we highlight the protective effect of thienopyrimidine-type compounds against both hemibiotrophic fungal pathogen, Colletotrichum higginsianum, and bacterial pathogen, Pseudomonas syringae pv. maculicola, in Arabidopsis thaliana. We suggest that thienopyrimidine-type compounds could be potential lead compounds as novel plant activators, and can be useful and effective agrochemicals against various plant diseases.

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          Most cited references16

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          Systemic Acquired Resistance and Induced Systemic Resistance in Conventional Agriculture

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            A benzothiadiazole derivative induces systemic acquired resistance in tobacco

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              Novel plant immune-priming compounds identified via high-throughput chemical screening target salicylic acid glucosyltransferases in Arabidopsis.

              Plant activators are compounds, such as analogs of the defense hormone salicylic acid (SA), that protect plants from pathogens by activating the plant immune system. Although some plant activators have been widely used in agriculture, the molecular mechanisms of immune induction are largely unknown. Using a newly established high-throughput screening procedure that screens for compounds that specifically potentiate pathogen-activated cell death in Arabidopsis thaliana cultured suspension cells, we identified five compounds that prime the immune response. These compounds enhanced disease resistance against pathogenic Pseudomonas bacteria in Arabidopsis plants. Pretreatments increased the accumulation of endogenous SA, but reduced its metabolite, SA-O-β-d-glucoside. Inducing compounds inhibited two SA glucosyltransferases (SAGTs) in vitro. Double knockout plants that lack both SAGTs consistently exhibited enhanced disease resistance. Our results demonstrate that manipulation of the active free SA pool via SA-inactivating enzymes can be a useful strategy for fortifying plant disease resistance and may identify useful crop protectants.
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                Author and article information

                Journal
                Plant Signal Behav
                Plant Signal Behav
                KPSB
                kpsb20
                Plant Signaling & Behavior
                Taylor & Francis
                1559-2316
                1559-2324
                2017
                21 February 2017
                21 February 2017
                : 12
                : 3
                : e1293222
                Affiliations
                Research Institute for Biological Sciences Okayama , Okayama, Japan
                Author notes
                CONTACT Yoshihiro Narusaka yo_narusaka@ 123456bio-ribs.com Research Institute for Biological Sciences Okayama , 7549-1 Yoshikawa, Kibityuo-town, Kaga-gun, Okayama 716–1241, Japan
                Article
                1293222
                10.1080/15592324.2017.1293222
                5399894
                28277972
                e61b247d-7549-4ed1-92b6-0c9dcd36a781
                © 2017 The Author(s). Published with license by Taylor & Francis Group, LLC

                This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License ( http://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited, and is not altered, transformed, or built upon in any way.

                History
                : 24 January 2017
                : 5 February 2017
                Page count
                Figures: 4, Tables: 0, Equations: 0, References: 21, Pages: 4
                Categories
                Short Communication

                Plant science & Botany
                arabidopsis,colletotrichum higginsianum,plant activator,pr-1 gene,pseudomonas syringae,salicylic acid,thienopyrimidine

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