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Physiologia Plantarum|March 20, 2025
A suitable strategy to find IAA metabolism mutantsRubén Casanova-Sáez, Aleš Pěnčík, Rafael Muñoz-Viana, et al.Journal of Experimental Botany|March 25, 2025
Phenylacetic acid metabolism in land plants: novel pathways and metabolitesPavel Hladík, Federica Brunoni, Asta Žukauskaitė, et al.Plant Physiology|June 19, 2026
GH3 phylogenetic subgroups define divergent routes of auxin inactivation via aspartate and glutamine conjugationLenka Helusová, David Ušák, Zuzana Havránková, et al.Phytochemistry|September 10, 2023
Synthetic and analytical routes to the L-amino acid conjugates of cis-OPDA and their identification and quantification in plantsVáclav Mik, Tomáš Pospíšil, Federica Brunoni, et al.Communications Biology|June 4, 2026
Comprehensive characterisation of IAA inactivation pathways reveals the impact of glycosylation on auxin metabolism and plant development in ArabidopsisRubén Casanova-Sáez, Aleš Pěnčík, Federica Brunoni, et al.Journal of Experimental Botany|March 24, 2022
Molecular basis of differential adventitious rooting competence in poplar genotypesAlok Ranjan, Irene Perrone, Sanaria Alallaq, et al.Frontiers in Plant Science|October 31, 2022
IPT9, a cis-zeatin cytokinin biosynthesis gene, promotes root growthIoanna Antoniadi, Eduardo Mateo-Bonmatí, Markéta Pernisová, et al.Plant Physiology|October 7, 2021
DIOXYGENASE FOR AUXIN OXIDATION 1 catalyzes the oxidation of IAA amino acid conjugatesKarel Müller, Petre Ivanov Dobrev, Aleš Pěnčík, et al.Plant Physiology|November 28, 2024
Amide conjugates of the jasmonate precursor cis-(+)-12-oxo-phytodienoic acid regulate its homeostasis during plant stress responsesJitka Široká, Anita Ament, Václav Mik, et al.Nature Plants|November 16, 2021
Non-cell autonomous and spatiotemporal signalling from a tissue organizer orchestrates root vascular developmentBaoJun Yang, Max Minne, Federica Brunoni, et al.Pageof 2