The Top 10 fungal pathogens in molecular plant pathology R Dean, JAL Van Kan, ZA Pretorius, KE Hammond‐Kosack, A Di Pietro, ... Molecular plant pathology 13 (4), 414-430, 2012 | 4827 | 2012 |
Genome expansion and gene loss in powdery mildew fungi reveal tradeoffs in extreme parasitism PD Spanu, JC Abbott, J Amselem, TA Burgis, DM Soanes, K Stüber, ... Science 330 (6010), 1543-1546, 2010 | 896 | 2010 |
The wheat powdery mildew genome shows the unique evolution of an obligate biotroph T Wicker, S Oberhaensli, F Parlange, JP Buchmann, M Shatalina, ... Nature genetics 45 (9), 1092-1096, 2013 | 275 | 2013 |
Structure and evolution of barley powdery mildew effector candidates C Pedersen, EVL van Themaat, LJ McGuffin, JC Abbott, TA Burgis, ... BMC genomics 13, 1-21, 2012 | 245 | 2012 |
Chitinase in roots of mycorrhizal Allium porrum: regulation and localization P Spanu, T Boller, A Ludwig, A Wiemken, A Faccio, P Bonfante-Fasolo Planta 177, 447-455, 1989 | 235 | 1989 |
Host-induced gene silencing in barley powdery mildew reveals a class of ribonuclease-like effectors C Pliego, D Nowara, G Bonciani, DM Gheorghe, R Xu, P Surana, ... Molecular Plant-Microbe Interactions 26 (6), 633-642, 2013 | 216 | 2013 |
Analysis and cloning of the ethylene‐forming enzyme from tomato by functional expression of its mRNA in Xenopus laevis oocytes. P Spanu, D Reinhardt, T Boller The EMBO Journal 10 (8), 2007-2013, 1991 | 212 | 1991 |
The genomics of obligate (and nonobligate) biotrophs PD Spanu Annual review of Phytopathology 50 (1), 91-109, 2012 | 192 | 2012 |
Gene Expression Profiles of Blumeria graminis Indicate Dynamic Changes to Primary Metabolism during Development of an Obligate Biotrophic Pathogen M Both, M Csukai, MPH Stumpf, PD Spanu The Plant Cell 17 (7), 2107-2122, 2005 | 192 | 2005 |
Cell‐wall‐bound peroxidase activity in roots of mycorrhizal Allium porrum P Spanu, P Bonfante‐Fasolo New Phytologist 109 (1), 119-124, 1988 | 192 | 1988 |
The apparent turnover of 1-aminocyclopropane-1-carboxylate synthase in tomato cells is regulated by protein phosphorylation and dephosphorylation P Spanu, DG Grosskopf, G Felix, T Boller Plant Physiology 106 (2), 529-535, 1994 | 170 | 1994 |
The protein phosphatase inhibitor calyculin A mimics elicitor action in plant cells and induces rapid hyperphosphorylation of specific proteins as revealed by pulse labeling … G Felix, M Regenass, P Spanu, T Boller Proceedings of the National Academy of Sciences 91 (3), 952-956, 1994 | 168 | 1994 |
Hydrophobins and the interactions between fungi and plants JR Whiteford, PD Spanu Molecular Plant Pathology 3 (5), 391-400, 2002 | 166 | 2002 |
Signatures of host specialization and a recent transposable element burst in the dynamic one-speed genome of the fungal barley powdery mildew pathogen L Frantzeskakis, B Kracher, S Kusch, M Yoshikawa-Maekawa, S Bauer, ... BMC genomics 19, 1-23, 2018 | 145 | 2018 |
Brown rot fungal early stage decay mechanism as a biological pretreatment for softwood biomass in biofuel production MJ Ray, DJ Leak, PD Spanu, RJ Murphy Biomass and bioenergy 34 (8), 1257-1262, 2010 | 127 | 2010 |
The fungal ribonuclease-like effector protein CSEP0064/BEC1054 represses plant immunity and interferes with degradation of host ribosomal RNA HG Pennington, R Jones, S Kwon, G Bonciani, H Thieron, T Chandler, ... PLoS pathogens 15 (3), e1007620, 2019 | 121 | 2019 |
Stable transformation of Erysiphe graminis an obligate biotrophic pathogen of barley P Chaure, SJ Gurr, P Spanu Nature Biotechnology 18 (2), 205-207, 2000 | 120 | 2000 |
In planta proteomics and proteogenomics of the biotrophic barley fungal pathogen Blumeria graminis f. sp. hordei LV Bindschedler, TA Burgis, DJS Mills, JTC Ho, R Cramer, PD Spanu Molecular & cellular proteomics 8 (10), 2368-2381, 2009 | 113 | 2009 |
Biotrophic plant-microbe interactions PD Spanu, R Panstruga Frontiers in plant science 8, 192, 2017 | 103 | 2017 |
Transcript Profiles of Blumeria graminis Development During Infection Reveal a Cluster of Genes That Are Potential Virulence Determinants M Both, SE Eckert, M Csukai, E Müller, G Dimopoulos, PD Spanu Molecular plant-microbe interactions 18 (2), 125-133, 2005 | 103 | 2005 |