SMAX1-LIKE/D53 family members enable distinct MAX2-dependent responses to strigolactones and karrikins in Arabidopsis I Soundappan, T Bennett, N Morffy, Y Liang, JP Stanga, A Abbas, ... The Plant Cell 27 (11), 3143-3159, 2015 | 401 | 2015 |
SUPPRESSOR OF MORE AXILLARY GROWTH2 1 Controls Seed Germination and Seedling Development in Arabidopsis JP Stanga, SM Smith, WR Briggs, DC Nelson Plant physiology 163 (1), 318-330, 2013 | 305 | 2013 |
ε-Tubulin is an essential component of the centriole SK Dutcher, NS Morrissette, AM Preble, C Rackley, J Stanga Molecular biology of the cell 13 (11), 3859-3869, 2002 | 168 | 2002 |
Functional redundancy in the control of seedling growth by the karrikin signaling pathway JP Stanga, N Morffy, DC Nelson Planta 243, 1397-1406, 2016 | 130 | 2016 |
A role for the TOC complex in Arabidopsis root gravitropism JP Stanga, K Boonsirichai, JC Sedbrook, MS Otegui, PH Masson Plant physiology 149 (4), 1896-1905, 2009 | 96 | 2009 |
Structure–function analysis of SMAX1 reveals domains that mediate its karrikin-induced proteolysis and interaction with the receptor KAI2 A Khosla, N Morffy, Q Li, L Faure, SH Chang, J Yao, J Zheng, ML Cai, ... Plant Cell 32 (8), 2639-2659, 2020 | 95 | 2020 |
Effect of interleukin-3 on ovine trophoblast interferon during early conceptus development K Imakawa, K Tamura, WJ McGuire, S Khan, LA Harbison, JP Stanga, ... Endocrine 3 (7), 511-517, 1995 | 49 | 1995 |
Joining forces: the interface of gravitropism and plastid protein import J Stanga, K Baldwin, PH Masson Plant Signaling & Behavior 4 (10), 933-941, 2009 | 12 | 2009 |
An assessment of transgenomics as a tool for identifying genes involved in the evolutionary differentiation of closely related plant species R Correa, J Stanga, B Larget, A Roznowski, B Shu, G, Dilkes, DA Baum New Phytologist 193 (2), 494-503, 2012 | 11 | 2012 |
Signaling in plant gravitropism J Stanga, C Neal, L Vaughn, K Baldwin, G Jia Signaling in plants, 209-237, 2009 | 11 | 2009 |
Studying starch content and sedimentation of amyloplast statoliths in Arabidopsis roots J Stanga, A Strohm, PH Masson Chloroplast Research in Arabidopsis: Methods and Protocols, Volume I, 103-111, 2011 | 6 | 2011 |
How the Cereal Crumbles: A Hands-On Activity for Enzyme Kinetics and Thermodynamics in Introductory Biology JP Stanga, TR Nash, MD Pannell The American Biology Teacher 85 (5), 252-258, 2023 | 2 | 2023 |
Ten minutes a semester: evaluation of a short wellness intervention for undergraduate chemistry and biology courses MK Meadows, KM Strickland, LE Simon, AN Chaffin, KD Kloepper, ... Journal of Chemical Education 100 (2), 638-646, 2022 | 2 | 2022 |
Basal body/centriole assembly requires delta and epsilon tubulin S Dutcher, J Esparza, NS Morrissette, E O'Toole, JP Stanga CELL MOTILITY AND THE CYTOSKELETON 54 (2), 156-156, 2003 | 1 | 2003 |
Epsilon tubulin is required for basal body/centriole assembly SK Dutcher, J Stanga, C Rackley, AM Preble MOLECULAR BIOLOGY OF THE CELL 12, 440A-440A, 2001 | 1 | 2001 |
Recent developments in parasitic plant biology JP Stanga CABI Reviews, 2022 | | 2022 |
A Role for Translocon of the Outer Envelope of Chloroplasts-complex in Arabidopsis Root Gravitropism JP Stanga ProQuest, 2008 | | 2008 |
ARG1 and ARL2 contribute to gravity signal transduction in the statocytes of Arabidopsis thaliana roots and hypocotyls P Masson, B Harrison, J Stanga, M Otegui, J Sedbrook 37th COSPAR Scientific Assembly 37, 1942, 2008 | | 2008 |
Analyse moléculaire du comportement des racines P Masson, BR Harrison, J Stanga, C Neal, L Vaughn, G Jia, ... Bulletins de l'Académie Royale de Belgique 18 (1), 81-92, 2007 | | 2007 |
Genetic and Proteomic Analysis of Gravity Signal Transduction in Arabidopsis Roots PH Masson, LS Young, NM UM, G Sabat, BR Harrison, J Stanga, C Neal, ... Proceeding for the Second International Symposium on Plant Neurobiology, 2006 | | 2006 |