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Current Biology : CB|April 27, 2016
Plant Signaling: HY5 Synchronizes Resource SupplyKlaus Palme, William Teale, Alexander DovzhenkoJournal of Experimental Botany|October 10, 2017
Naphthylphthalamic acid and the mechanism of polar auxin transportWilliam Teale, Klaus PalmePlant Signaling & Behavior|September 20, 2012
Intracellular auxin transport in pollen: PIN8, PIN5 and PILS5Cristina Dal Bosco, Alexander Dovzhenko, Klaus PalmeMethods in Molecular Biology (Clifton, N.J.)|May 9, 2018
A PLA-iRoCS Pipeline for the Localization of Protein-Protein Interactions In SituTaras Pasternak, William Teale, Thorsten Falk, et al.Trends in Plant Science|January 30, 2017
The Systems Biology of Auxin in Developing EmbryosVictoria Mironova, William Teale, Mojgan Shahriari, et al.The Plant Journal : for Cell and Molecular Biology|January 15, 2014
The iRoCS Toolbox--3D analysis of the plant root apical meristem at cellular resolutionThorsten Schmidt, Taras Pasternak, Kun Liu, et al.Frontiers in Plant Science|April 24, 2020
Butylated Hydroxytoluene (BHT) Inhibits PIN1 Exocytosis From BFA Compartments in Arabidopsis RootsIvan A Paponov, Vadym Budnyk, Martina Paponov, et al.The Plant Cell|November 3, 2009
NO VEIN mediates auxin-dependent specification and patterning in the Arabidopsis embryo, shoot, and rootRyuji Tsugeki, Franck Anicet Ditengou, Yoshinori Sumi, et al.Scientific Reports|April 12, 2016
Hydrolases of the ILR1-like family of Arabidopsis thaliana modulate auxin response by regulating auxin homeostasis in the endoplasmic reticulumAna Paula Sanchez Carranza, Aparajita Singh, Karoline Steinberger, et al.Journal of Experimental Botany|December 2, 2020
Auxin biosynthesis and cellular efflux act together to regulate leaf vein patterningIrina Kneuper, William Teale, Jonathan Edward Dawson, et al.Pageof 13