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Actin depolymerization is able to increase plant resistance against pathogens via activation of salicylic acid signalling pathway

dc.contributor.authorLeontovyčová, Hana
dc.contributor.authorKalachova, Tetiana
dc.contributor.authorTrdá, Lucie
dc.contributor.authorPospíchalová, Romana
dc.contributor.authorLamparová, Lucie
dc.contributor.authorDobrev, Petre Ivanov
dc.contributor.authorMalínská, Kateřina
dc.contributor.authorBurketová, Lenka
dc.contributor.authorValentová, Olga
dc.contributor.authorJanda, Martin
dc.date.issued2019
dc.identifier.urihttps://hdl.handle.net/20.500.14178/1622
dc.description.abstractThe integrity of the actin cytoskeleton is essential for plant immune signalling. Consequently, it is generally assumed that actin disruption reduces plant resistance to pathogen attack. Here, we demonstrate that actin depolymerization induced a dramatic increase in salicylic acid (SA) levels in Arabidopsis thaliana. Transcriptomic analysis showed that the SA pathway was activated due to the action of isochorismate synthase (ICS). The effect was also confirmed in Brassica napus. This raises the question of whether actin depolymerization could, under particular conditions, lead to increased resistance to pathogens. Thus, we explored the effect of pretreatment with actin-depolymerizing drugs on the resistance of Arabidopsis thaliana to the bacterial pathogen Pseudomonas syringae, and on the resistance of an important crop Brassica napus to its natural fungal pathogen Leptosphaeria maculans. In both pathosystems, actin depolymerization activated the SA pathway, leading to increased plant resistance. To our best knowledge, we herein provide the first direct evidence that disruption of the actin cytoskeleton can actually lead to increased plant resistance to pathogens, and that SA is crucial to this process.en
dc.language.isoen
dc.relation.urlhttps://doi.org/10.1038/s41598-019-46465-5
dc.rightsCreative Commons Uveďte původ 4.0 Internationalcs
dc.rightsCreative Commons Attribution 4.0 Internationalen
dc.titleActin depolymerization is able to increase plant resistance against pathogens via activation of salicylic acid signalling pathwayen
dcterms.accessRightsembargoedAccess
dcterms.licensehttps://creativecommons.org/licenses/by/4.0/legalcode
dc.date.updated2023-11-07T08:12:46Z
dc.subject.keywordage-related resistanceen
dc.subject.keywordnonhost resistanceen
dc.subject.keywordarabidopsisen
dc.subject.keyworddynamicsen
dc.subject.keywordplatformen
dc.subject.keywordsusceptibilityen
dc.subject.keywordaccumulationen
dc.subject.keywordcytoskeletonen
dc.subject.keywordinterplayen
dc.subject.keywordphaseen
dc.relation.fundingReferenceinfo:eu-repo/grantAgreement/UK/PROGRES/Q46
dc.relation.fundingReferenceinfo:eu-repo/grantAgreement/UK/SVV/SVV260427
dc.relation.fundingReferenceinfo:eu-repo/grantAgreement/UK/GAUK/GAUK992416
dc.relation.fundingReferenceinfo:eu-repo/grantAgreement/MSM/LM/LM2015062
dc.date.embargoStartDate2023-11-07
dc.date.embargoEndDate2019-07-19
dc.type.obd73
dc.type.versioninfo:eu-repo/semantics/publishedVersion
dc.identifier.doi10.1038/s41598-019-46465-5
dc.identifier.utWos000475845400001
dc.identifier.eidScopus2-s2.0-85069434886
dc.identifier.obd563188
dc.identifier.rivRIV/00216208:11310/19:10395533
dc.identifier.pubmed31320662
dc.subject.rivPrimary10000::10600::10608
dcterms.isPartOf.nameScientific Reports
dcterms.isPartOf.issn2045-2322
dcterms.isPartOf.journalYear2019
dcterms.isPartOf.journalVolume9
dcterms.isPartOf.journalIssue1
uk.faculty.primaryId115
uk.faculty.primaryNamePřírodovědecká fakultacs
uk.faculty.primaryNameFaculty of Scienceen
uk.department.primaryId1048
uk.department.primaryNameKatedra biochemiecs
uk.department.primaryNameDepartment of Biochemistryen
dc.description.pageRangenestránkováno
dc.type.obdHierarchyCsČLÁNEK V ČASOPISU::článek v časopisu::původní článekcs
dc.type.obdHierarchyEnJOURNAL ARTICLE::journal article::original articleen
dc.type.obdHierarchyCode73::152::206en
uk.displayTitleActin depolymerization is able to increase plant resistance against pathogens via activation of salicylic acid signalling pathwayen


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