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dc.creatorGaragounis C., Tsikou D., Plitsi P.K., Psarrakou I.S., Avramidou M., Stedel C., Anagnostou M., Georgopoulou M.E., Papadopoulou K.K.en
dc.date.accessioned2023-01-31T07:39:37Z
dc.date.available2023-01-31T07:39:37Z
dc.date.issued2019
dc.identifier10.1111/tpj.14207
dc.identifier.issn09607412
dc.identifier.urihttp://hdl.handle.net/11615/71943
dc.description.abstractGlycogen synthase kinase/SHAGGY-like kinases (SKs) are a highly conserved family of signaling proteins that participate in many developmental, cell-differentiation, and metabolic signaling pathways in plants and animals. Here, we investigate the involvement of SKs in legume nodulation, a process requiring the integration of multiple signaling pathways. We describe a group of SKs in the model legume Lotus japonicus (LSKs), two of which respond to inoculation with the symbiotic nitrogen-fixing bacterium Mesorhizobium loti. RNAi knock-down plants and an insertion mutant for one of these genes, LSK1, display increased nodulation. Ηairy-root lines overexpressing LSK1 form only marginally fewer mature nodules compared with controls. The expression levels of genes involved in the autoregulation of nodulation (AON) mechanism are affected in LSK1 knock-down plants at low nitrate levels, both at early and late stages of nodulation. At higher levels of nitrate, these same plants show the opposite expression pattern of AON-related genes and lose the hypernodulation phenotype. Our findings reveal an additional role for the versatile SK gene family in integrating the signaling pathways governing legume nodulation, and pave the way for further study of their functions in legumes. © 2018 The Authors The Plant Journal © 2018 John Wiley & Sons Ltden
dc.language.isoenen
dc.sourcePlant Journalen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85061430373&doi=10.1111%2ftpj.14207&partnerID=40&md5=04220fcbd3c69289c1388fd43f80430e
dc.subjectEnzymesen
dc.subjectGene expressionen
dc.subjectNitratesen
dc.subjectNitrogen fixationen
dc.subjectSignalingen
dc.subjectAuto-regulation of nodulationen
dc.subjectCell differentiationen
dc.subjectExpression patternsen
dc.subjectGlycogen synthase kinaseen
dc.subjectLotus japonicusen
dc.subjectNitrogen fixing bacteriaen
dc.subjectSHAGGY-like kinaseen
dc.subjectSignaling proteinsen
dc.subjectCell signalingen
dc.subjectEnzymesen
dc.subjectGenesen
dc.subjectInoculationen
dc.subjectIntegrationen
dc.subjectNitratesen
dc.subjectNitrogenen
dc.subjectPlantsen
dc.subjectProcessesen
dc.subjectglycogen synthase kinase 3betaen
dc.subjectnitric acid derivativeen
dc.subjectplant proteinen
dc.subjectprotein serine threonine kinaseen
dc.subjectclassificationen
dc.subjectgene expression regulationen
dc.subjectgene knockdownen
dc.subjectgeneticsen
dc.subjectLotus (genus)en
dc.subjectMesorhizobiumen
dc.subjectmetabolismen
dc.subjectnitrogen-fixing bacteriumen
dc.subjectnodulationen
dc.subjectphenotypeen
dc.subjectphysiologyen
dc.subjectplant rooten
dc.subjectRhizobiumen
dc.subjectRNA interferenceen
dc.subjectsymbiosisen
dc.subjecttransgenic planten
dc.subjectGene Expression Regulation, Planten
dc.subjectGene Knockdown Techniquesen
dc.subjectGlycogen Synthase Kinase 3 betaen
dc.subjectLotusen
dc.subjectMesorhizobiumen
dc.subjectNitratesen
dc.subjectNitrogen-Fixing Bacteriaen
dc.subjectPhenotypeen
dc.subjectPlant Proteinsen
dc.subjectPlant Root Nodulationen
dc.subjectPlant Rootsen
dc.subjectPlants, Genetically Modifieden
dc.subjectProtein-Serine-Threonine Kinasesen
dc.subjectRhizobiumen
dc.subjectRNA Interferenceen
dc.subjectRoot Nodules, Planten
dc.subjectSymbiosisen
dc.subjectBlackwell Publishing Ltden
dc.titleLotus SHAGGY-like kinase 1 is required to suppress nodulation in Lotus japonicusen
dc.typejournalArticleen


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