Research article - Peer-reviewed, 2022
IPT9, a cis-zeatin cytokinin biosynthesis gene, promotes root growth
Antoniadi, Ioanna; Mateo-Bonmati, Eduardo; Pernisova, Marketa; Brunoni, Federica; Antoniadi, Mariana; Villalonga, Mauricio Garcia-Atance; Ament, Anita; Karady, Michal; Turnbull, Colin; Dolezal, Karel; Pencik, Ales; Ljung, Karin; Novak, OndrejAbstract
Cytokinin and auxin are plant hormones that coordinate many aspects of plant development. Their interactions in plant underground growth are well established, occurring at the levels of metabolism, signaling, and transport. Unlike many plant hormone classes, cytokinins are represented by more than one active molecule. Multiple mutant lines, blocking specific parts of cytokinin biosynthetic pathways, have enabled research in plants with deficiencies in specific cytokinin-types. While most of these mutants have confirmed the impeding effect of cytokinin on root growth, the ipt29 double mutant instead surprisingly exhibits reduced primary root length compared to the wild type. This mutant is impaired in cis-zeatin (cZ) production, a cytokinin-type that had been considered inactive in the past. Here we have further investigated the intriguing ipt29 root phenotype, opposite to known cytokinin functions, and the (bio)activity of cZ. Our data suggest that despite the ipt29 short-root phenotype, cZ application has a negative impact on primary root growth and can activate a cytokinin response in the stele. Grafting experiments revealed that the root phenotype of ipt29 depends mainly on local signaling which does not relate directly to cytokinin levels. Notably, ipt29 displayed increased auxin levels in the root tissue. Moreover, analyses of the differential contributions of ipt2 and ipt9 to the ipt29 short-root phenotype demonstrated that, despite its deficiency on cZ levels, ipt2 does not show any root phenotype or auxin homeostasis variation, while ipt9 mutants were indistinguishable from ipt29. We conclude that IPT9 functions may go beyond cZ biosynthesis, directly or indirectly, implicating effects on auxin homeostasis and therefore influencing plant growth.Keywords
cytokinin; auxin; plant hormones; root growth; metabolismPublished in
Frontiers in Plant Science2022, volume: 13, article number: 932008
Publisher: FRONTIERS MEDIA SA
Authors' information
Swedish University of Agricultural Sciences, Department of Forest Genetics and Plant Physiology
Mateo-Bonmatí, Eduardo (Bonmati, Eduardo Mateo)
Swedish University of Agricultural Sciences, Department of Forest Genetics and Plant Physiology
Pernisova, Marketa
Masaryk University Brno
Brunoni, Federica
Swedish University of Agricultural Sciences, Department of Forest Genetics and Plant Physiology
Brunoni, Federica
Czech Academy of Sciences
Brunoni, Federica
Palacky University Olomouc
Antoniadi, Mariana
No organisation
Villalonga, Mauricio Garcia-Atance
Imperial College London
Ament, Anita
Czech Academy of Sciences
Ament, Anita
Palacky University Olomouc
Karady, Michal
Institute of Experimental Botany of the Czech Academy of Sciences
Karady, Michal
Palacky University Olomouc
Turnbull, Colin
Imperial College London
Dolezal, Karel
Czech Academy of Sciences
Dolezal, Karel
Palacky University Olomouc
Pencik, Ales
Institute of Experimental Botany of the Czech Academy of Sciences
Pencik, Ales
Palacky University Olomouc
Swedish University of Agricultural Sciences, Department of Forest Genetics and Plant Physiology
Swedish University of Agricultural Sciences, Department of Forest Genetics and Plant Physiology
Institute of Experimental Botany of the Czech Academy of Sciences
UKÄ Subject classification
Animal and Dairy Science
Publication Identifiers
DOI: https://doi.org/10.3389/fpls.2022.932008
URI (permanent link to this page)
https://res.slu.se/id/publ/119939