Arbuscular mycorrhiza‐specific enzymes FatM and RAM 2 fine‐tune lipid biosynthesis to promote development of arbuscular mycorrhiza A Bravo, M Brands, V Wewer, P Dörmann, MJ Harrison New Phytologist 214 (4), 1631-1645, 2017 | 317 | 2017 |
Plant signaling and metabolic pathways enabling arbuscular mycorrhizal symbiosis AM MacLean, A Bravo, MJ Harrison The Plant Cell 29 (10), 2319-2335, 2017 | 293 | 2017 |
Suppression of Arbuscule Degeneration in Medicago truncatula phosphate transporter4 Mutants Is Dependent on the Ammonium Transporter 2 Family Protein … F Breuillin-Sessoms, DS Floss, SK Gomez, N Pumplin, Y Ding, ... The Plant Cell 27 (4), 1352-1366, 2015 | 237 | 2015 |
Genes conserved for arbuscular mycorrhizal symbiosis identified through phylogenomics A Bravo, T York, N Pumplin, LA Mueller, MJ Harrison Nature Plants 2 (2), 1-6, 2016 | 221 | 2016 |
A comprehensive draft genome sequence for lupin (Lupinus angustifolius), an emerging health food: insights into plant–microbe interactions and legume evolution JK Hane, Y Ming, LG Kamphuis, MN Nelson, G Garg, CA Atkins, PE Bayer, ... Plant biotechnology journal 15 (3), 318-330, 2017 | 210 | 2017 |
Hyphal Branching during Arbuscule Development Requires Reduced Arbuscular Mycorrhiza1 HJ Park, DS Floss, V Levesque-Tremblay, A Bravo, MJ Harrison Plant Physiology 169 (4), 2774-2788, 2015 | 143 | 2015 |
Diversity of morphology and function in arbuscular mycorrhizal symbioses in Brachypodium distachyon JJ Hong, YS Park, A Bravo, KK Bhattarai, DA Daniels, MJ Harrison Planta 236, 851-865, 2012 | 103 | 2012 |
Specialization of the Golden2‐like regulatory pathway during land plant evolution A Bravo‐Garcia, Y Yasumura, JA Langdale New Phytologist 183 (1), 133-141, 2009 | 48 | 2009 |
AtMCP1b, a chloroplast-localised metacaspase, is induced in vascular tissue after wounding or pathogen infection L Castillo-Olamendi, A Bravo-Garcìa, J Morán, M Rocha-Sosa, H Porta Functional Plant Biology 34 (12), 1061-1071, 2007 | 29 | 2007 |
Constitutive Overexpression of RAM1 Leads to an Increase in Arbuscule Density in Brachypodium distachyon LM Müller, L Campos-Soriano, V Levesque-Tremblay, A Bravo, ... Plant physiology 184 (3), 1263-1272, 2020 | 15 | 2020 |
Information theory and machine learning illuminate large‐scale metabolomic responses of Brachypodium distachyon to environmental change EH Mahood, AA Bennett, K Komatsu, LH Kruse, V Lau, M Rahmati Ishka, ... The Plant Journal 114 (3), 463-481, 2023 | 3 | 2023 |
Lab-based X-ray Microscopy for in situ 3D Visualization of Mycorrhizal Fungal Structures Associated with Roots K Duncan, C Lebow, D Daniels, M DeVore, A Bravo, D Floss, C Topp Microscopy and Microanalysis 29 (Supplement_1), 872-873, 2023 | 1 | 2023 |
The receptor-like kinase ARK controls symbiotic balance across land plants M Sgroi, D Hoey, K Medina Jimenez, SL Bowden, M Hope, EJ Wallington, ... Proceedings of the National Academy of Sciences 121 (30), e2318982121, 2024 | | 2024 |
Characterization and visualization of global metabolomic responses of Brachypodium distachyon to environmental changes EH Mahood, AA Bennett, K Komatsu, LH Kruse, V Lau, MR Ishka, Y Jiang, ... bioRxiv, 2022.05. 11.491395, 2022 | | 2022 |
Data for EMSL Project 51375 from October 2021 S Baker, H Olson, N Tolic, C Nicora, S Leichty, M Harrison, A Bravo, ... Pacific Northwest National Laboratory (PNNL), Richland, WA (United States …, 2021 | | 2021 |
Constitutive overexpression of RAM1 increases arbuscule density during arbuscular mycorrhizal symbiosis in Brachypodium distachyon LM Müller, L Campos-Soriano, V Levesque-Tremblay, A Bravo, ... bioRxiv, 2020.06. 15.146233, 2020 | | 2020 |
Hyphal branching during arbuscule development requires Reduced Arbuscular Mycorrhiza. PHJ Park HeeJin, DS Floss, V Levesque-Tremblay, A Bravo, MJ Harrison | | 2015 |