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The New Phytologist|September 9, 2020
Studies of moss reproductive development indicate that auxin biosynthesis in apical stem cells may constitute an ancestral function for focal growth controlKatarina Landberg, Jan Šimura, Karin Ljung, et al.The New Phytologist|July 21, 2021
Broadening the roles of UDP-glycosyltransferases in auxin homeostasis and plant developmentEduardo Mateo-Bonmatí, Rubén Casanova-Sáez, Jan Šimura, et al.Plant Methods|November 9, 2019
A bacterial assay for rapid screening of IAA catabolic enzymesFederica Brunoni, Silvio Collani, Jan Šimura, et al.The New Phytologist|September 27, 2024
The Arabidopsis splicing factor PORCUPINE/SmE1 orchestrates temperature-dependent root development via auxin homeostasis maintenanceNabila El Arbi, Sarah Muniz Nardeli, Jan Šimura, et al.Physiologia Plantarum|December 29, 2025
L-Glutamine Modulates Root Architecture and Hormonal Balance in ArabidopsisBarbora Pařízková, Annika I Johansson, Marta Juvany, et al.Plant Physiology|November 4, 2022
Cytokinin signaling regulates two-stage inflorescence arrest in ArabidopsisCatriona H Walker, Alexander Ware, Jan Šimura, et al.Annals of Botany|April 22, 2016
Cytokinin, auxin and physiological polarity in the aquatic carnivorous plants Aldrovanda vesiculosa and Utricularia australisJan Šimura, Lukáš Spíchal, Lubomír Adamec, et al.Plant Physiology|April 29, 2018
Plant Hormonomics: Multiple Phytohormone Profiling by Targeted MetabolomicsJan Šimura, Ioanna Antoniadi, Jitka Široká, et al.Communications Biology|September 30, 2022
The RPN12a proteasome subunit is essential for the multiple hormonal homeostasis controlling the progression of leaf senescenceClément Boussardon, Pushan Bag, Marta Juvany, et al.The New Phytologist|March 24, 2022
Inactivation of the entire Arabidopsis group II GH3s confers tolerance to salinity and water deficitRubén Casanova-Sáez, Eduardo Mateo-Bonmatí, Jan Šimura, et al.Pageof 4