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Uncoupling high light responses from singlet oxygen retrograde signaling and spatial-temporal systemic acquired acclimation

dc.contributor.authorCarmody, Melanie
dc.contributor.authorCrisp, Peter A
dc.contributor.authord'Alessandro, Stefano
dc.contributor.authorGanguly, Diep
dc.contributor.authorGordon, Matthew
dc.contributor.authorHavaux, Michel
dc.contributor.authorAlbrecht-Borth, Verónica
dc.contributor.authorPogson, Barry
dc.date.accessioned2016-09-19T00:53:55Z
dc.date.available2016-09-19T00:53:55Z
dc.date.issued2016-07
dc.description.abstractDistinct ROS signaling pathways initiated by singlet oxygen (¹O₂) or superoxide and hydrogen peroxide have been attributed to either cell death or acclimation, respectively. Recent studies have revealed that more complex antagonistic and synergistic relationships exist within and between these pathways. As specific chloroplastic ROS signals are difficult to study, rapid systemic signaling experiments using localized high light (HL) stress or ROS treatments were used in this study to uncouple signals required for direct HL and ROS perception and distal systemic acquired acclimation (SAA). A qPCR approach was chosen to determine local perception and distal signal reception. Analysis of a thylakoidal ascorbate peroxidase mutant (tapx), the ¹O₂-retrograde signaling double mutant (ex1/ex2), and an apoplastic signaling double mutant (rbohD/F) revealed that tAPX and EXECUTER 1 are required for both HL and systemic acclimation stress perception. Apoplastic membrane-localized RBOHs were required for systemic spread of the signal but not for local signal induction in directly stressed tissues. Endogenous ROS treatments revealed a very strong systemic response induced by a localized 1 h induction of ¹O₂ using the conditional flu mutant. A qPCR time course of ¹O₂ induced systemic marker genes in directly and indirectly connected leaves revealed a direct vascular connection component of both immediate and longer term SAA signaling responses. These results reveal the importance of an EXECUTER-dependent ¹O₂ retrograde signal for both local and long distance RBOH-dependent acclimation signaling that is distinct from other HL signaling pathways, and that direct vascular connections have a role in spatial-temporal SAA induction.en_AU
dc.description.sponsorshipThis project was supported by the Australian Research Council Centre of Excellence in Plant Energy Biology (CE140100008) and a YFP student travel scholarship to attend FEBS 2015, Croatia.en_AU
dc.format16 pagesen_AU
dc.identifier.issn0032-0889en_AU
dc.identifier.urihttp://hdl.handle.net/1885/108901
dc.publisherAmerican Society of Plant Biologistsen_AU
dc.relationhttp://purl.org/au-research/grants/arc/CE140100008en_AU
dc.rights© 2016 American Society of Plant Biologistsen_AU
dc.sourcePlant physiologyen_AU
dc.subjectROSen_AU
dc.subjectsignalingen_AU
dc.subjectpathwaysen_AU
dc.subject¹O₂en_AU
dc.subjectex1/ex2en_AU
dc.subjectdouble mutanten_AU
dc.subjectsuperoxideen_AU
dc.subjecthydrogen peroxideen_AU
dc.subjectcell deathen_AU
dc.subjectacclimationen_AU
dc.subjectchloroplasticen_AU
dc.subjecthigh lighten_AU
dc.subjectsystemic acquired acclimationen_AU
dc.subjectqPCRen_AU
dc.subjectthylakoidal ascorbate peroxidase mutanten_AU
dc.subject¹O₂-retrograde signaling double mutanten_AU
dc.subjectpoplastic signaling double mutant (rbohD/F)en_AU
dc.subjecttAPXen_AU
dc.subjectEXECUTER 1en_AU
dc.subjectSAA signalingen_AU
dc.titleUncoupling high light responses from singlet oxygen retrograde signaling and spatial-temporal systemic acquired acclimationen_AU
dc.typeJournal articleen_AU
dcterms.accessRightsOpen Accessen_AU
dcterms.dateAccepted2016-06-09
local.bibliographicCitation.issue3en_AU
local.bibliographicCitation.startpage1734-49en_AU
local.contributor.affiliationPogson, Barry J., Division of Plant Sciences, CMBE Research School of Biology, The Australian National Universityen_AU
local.contributor.affiliationCarmody, Melanie, Division of Plant Sciences, CMBE Research School of Biology, The Australian National Universityen_AU
local.contributor.affiliationCrisp, Peter A., Division of Plant Sciences, CMBE Research School of Biology, The Australian National Universityen_AU
local.contributor.affiliationGanguly, Diep, Division of Plant Sciences, CMBE Research School of Biology, The Australian National Universityen_AU
local.contributor.affiliationGordon, Matthew, Division of Plant Sciences, CMBE Research School of Biology, The Australian National Universityen_AU
local.contributor.affiliationAlbrecht-Borth, Verónica, Division of Plant Sciences, CMBE Research School of Biology, The Australian National Universityen_AU
local.contributor.authoruidu9912751en_AU
local.identifier.citationvolume171en_AU
local.identifier.doi10.1104/pp.16.00404en_AU
local.identifier.essn1532-2548en_AU
local.publisher.urlhttp://www.aspbjournals.org/en_AU
local.type.statusPublished Versionen_AU

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