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187 Publications

2021 | Journal Article | IST-REx-ID: 8992 | OA
Pho-view of auxin: Reversible protein phosphorylation in auxin biosynthesis, transport and signaling
S. Tan, C. Luschnig, J. Friml, Molecular Plant 14 (2021) 151–165.
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2021 | Journal Article | IST-REx-ID: 8993
Naphthylphthalamic acid associates with and inhibits PIN auxin transporters
L. Abas, M. Kolb, J. Stadlmann, D.P. Janacek, K. Lukic, C. Schwechheimer, L.A. Sazanov, L. Mach, J. Friml, U.Z. Hammes, PNAS 118 (2021).
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2020 | Journal Article | IST-REx-ID: 6997 | OA
Auxin guides roots to avoid obstacles during gravitropic growth
Y. Zhang, J. Friml, New Phytologist 225 (2020) 1049–1052.
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2020 | Journal Article | IST-REx-ID: 7142 | OA
Auxin signalling in growth: Schrödinger's cat out of the bag
M.C. Gallei, C. Luschnig, J. Friml, Current Opinion in Plant Biology 53 (2020) 43–49.
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2020 | Journal Article | IST-REx-ID: 7204 | OA
Root growth adaptation is mediated by PYLs ABA receptor-PP2A protein phosphatase complex
Y. Li, Y. Wang, S. Tan, Z. Li, Z. Yuan, M. Glanc, D. Domjan, K. Wang, W. Xuan, Y. Guo, Z. Gong, J. Friml, J. Zhang, Advanced Science 7 (2020).
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2020 | Journal Article | IST-REx-ID: 7219
Adaptive growth: Shaping auxin-mediated root system architecture
G. Xiao, Y. Zhang, Trends in Plant Science 25 (2020) 121–123.
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2020 | Journal Article | IST-REx-ID: 7695 | OA
High temporal resolution reveals simultaneous plasma membrane recruitment of TPLATE complex subunits
J. Wang, E. Mylle, A.J. Johnson, N. Besbrugge, G. De Jaeger, J. Friml, R. Pleskot, D. van Damme, Plant Physiology 183 (2020) 986–997.
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2020 | Journal Article | IST-REx-ID: 7697 | OA
Directional auxin fluxes in plants by intramolecular domain‐domain co‐evolution of PIN auxin transporters
Y. Zhang, C. Hartinger, X. Wang, J. Friml, New Phytologist 227 (2020) 1406–1416.
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2020 | Journal Article | IST-REx-ID: 7686
Neo-gibberellin signaling: Guiding the next generation of the green revolution
H. Xue, Y. Zhang, G. Xiao, Trends in Plant Science 25 (2020) 520–522.
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2020 | Journal Article | IST-REx-ID: 7949 | OA
The CEP5 peptide promotes abiotic stress tolerance, as revealed by quantitative proteomics, and attenuates the AUX/IAA equilibrium in Arabidopsis
S. Smith, S. Zhu, L. Joos, I. Roberts, N. Nikonorova, L. Vu, E. Stes, H. Cho, A. Larrieu, W. Xuan, B. Goodall, B. van de Cotte, J. Waite, A. Rigal, S. R Harborough, G. Persiau, S. Vanneste, G. Kirschner, E. Vandermarliere, L. Martens, Y. Stahl, D. Audenaert, J. Friml, G. Felix, R. Simon, M. Bennett, A. Bishopp, G. De Jaeger, K. Ljung, S. Kepinski, S. Robert, J. Nemhauser, I. Hwang, K. Gevaert, T. Beeckman, I. De Smet, Molecular & Cellular Proteomics 19 (2020) 1248–1262.
View | DOI | Download Submitted Version (ext.) | PubMed | Europe PMC
 

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