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Nature Plants|August 4, 2015
Untethering the TIR1 auxin receptor from the SCF complex increases its stability and inhibits auxin responseHong Yu, Yi Zhang, Britney L Moss, et al.Development (Cambridge, England)|October 17, 2023
Abscisic acid biosynthesis is necessary for full auxin effects on hypocotyl elongationRyan J Emenecker, Joseph Cammarata, Irene Yuan, et al.Nature Communications|October 31, 2018
The DNA binding landscape of the maize AUXIN RESPONSE FACTOR familyMary Galli, Arjun Khakhar, Zefu Lu, et al.The Plant Cell|March 17, 2011
Multiple facets of Arabidopsis seedling development require indole-3-butyric acid-derived auxinLucia C Strader, Dorthea L Wheeler, Sarah E Christensen, et al.Nature Communications|March 28, 2026
Thermosensory reconfiguration of the auxin transcriptional pathway to drive root cell growthMaría Belén Borniego, Matías Ezequiel Pereyra, Katelyn Sageman-Furnas, et al.The Plant Cell|May 2, 2003
The Arabidopsis SLEEPY1 gene encodes a putative F-box subunit of an SCF E3 ubiquitin ligaseKaren M McGinnis, Stephen G Thomas, Jonathan D Soule, et al.Nucleic Acids Research|February 19, 2025
Allovalent scavenging of activation domains in the transcription factor ANAC013 gears transcriptional regulationElise Delaforge, Amanda D Due, Frederik Friis Theisen, et al.Development (Cambridge, England)|January 31, 2015
Auxin-induced degradation dynamics set the pace for lateral root developmentJessica M Guseman, Antje Hellmuth, Amy Lanctot, et al.Nucleic Acids Research|February 11, 2025
Allovalent scavenging of activation domains in the transcription factor ANAC013 gears transcriptional regulationElise Delaforge, Amanda D Due, Frederik Friis Theisen, et al.The Plant Cell|June 6, 2025
Core biological principles and tools stemming from basic Arabidopsis researchLucia C Strader, David Edwards, Sridevi Sureshkumar, et al.Pageof 15