Guidelines for the use and interpretation of assays for monitoring autophagy (4th edition)1 DJ Klionsky, AK Abdel-Aziz, S Abdelfatah, M Abdellatif, A Abdoli, S Abel, ... autophagy 17 (1), 1-382, 2021 | 8605 | 2021 |
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 | 2962 | 2012 |
Comparative genomics reveals mobile pathogenicity chromosomes in Fusarium LJ Ma, HC Van Der Does, KA Borkovich, JJ Coleman, MJ Daboussi, ... Nature 464 (7287), 367-373, 2010 | 1430 | 2010 |
The Fusarium graminearum Genome Reveals a Link Between Localized Polymorphism and Pathogen Specialization CA Cuomo, U Güldener, JR Xu, F Trail, BG Turgeon, A Di Pietro, ... Science 317 (5843), 1400-1402, 2007 | 905 | 2007 |
Chitinolytic enzymes produced by Trichoderma harzianum: antifungal activity of purified endochitinase and chitobiosidase M Lorito, GE Harman, CK Hayes, RM Broadway, A Tronsmo, SL Woo, ... Phytopathology 83 (3), 302-307, 1993 | 626 | 1993 |
Chitinolytic enzymes produced by Trichoderma harzianum: antifungal activity of purified endochitinase and chitobiosidase M Lorito, GE Harman, CK Hayes, RM Broadway, A Tronsmo, SL Woo, ... Phytopathology 83 (3), 302-307, 1993 | 626 | 1993 |
Chitinolytic enzymes of Trichoderma harzianum: purification of chitobiosidase and endochitinase GE Harman, CK Hayes, M Lorito, RM Broadway, A Di Pietro, ... Phytopathology 83 (3), 313-318, 1993 | 491 | 1993 |
Fusarium oxysporum: exploring the molecular arsenal of a vascular wilt fungus A Di Pietro, MP Madrid, Z Caracuel, J Delgado-Jarana, MIG Roncero Mol. Plant Pathol 4 (5), 315-325, 2003 | 487 | 2003 |
Data quality aware analysis of differential expression in RNA-seq with NOISeq R/Bioc package S Tarazona, P Furió-Tarí, D Turrà, AD Pietro, MJ Nueda, A Ferrer, ... Nucleic acids research 43 (21), e140-e140, 2015 | 483 | 2015 |
A MAP kinase of the vascular wilt fungus Fusarium oxysporum is essential for root penetration and pathogenesis A Di Pietro, FI García‐Maceira, E Meglecz, MIG Roncero Molecular microbiology 39 (5), 1140-1152, 2001 | 455 | 2001 |
Purification, characterization, and synergistic activity of a glucan 1, 3-beta-glucosidase and an N-acetyl-beta-glucosaminidase from Trichoderma harzianum M Lorito, CK Hayes, A Di Pietro, SL Woo, GE Harman Phytopathology (USA), 1994 | 380 | 1994 |
Purification, characterization, and synergistic activity of a glucan 1, 3-beta-glucosidase and an N-acetyl-beta-glucosaminidase from Trichoderma harzianum M Lorito, CK Hayes, A Di Pietro, SL Woo, GE Harman Phytopathology (USA), 1994 | 380 | 1994 |
Endochitinase from Gliocladium virens: Isolation, characterization, and synergistic antifungal activity in combination with gliotoxin. A Di Pietro, M Lorito, CK Hayes, RM Broadway, GE Harman Phytopathology, 1993 | 340 | 1993 |
Cloning, expression, and role in pathogenicity of pg1 encoding the major extracellular endopolygalacturonase of the vascular wilt pathogen Fusarium oxysporum A Di Pietro, MIG Roncero Molecular plant-microbe interactions 11 (2), 91-98, 1998 | 313 | 1998 |
Comparative genomics of MAP kinase and calcium–calcineurin signalling components in plant and human pathogenic fungi N Rispail, DM Soanes, C Ant, R Czajkowski, A Grünler, R Huguet, ... Fungal Genetics and Biology 46 (4), 287-298, 2009 | 293 | 2009 |
Fusarium oxysporum as a Multihost Model for the Genetic Dissection of Fungal Virulence in Plants and Mammals M Ortoneda, J Guarro, MP Madrid, Z Caracuel, MIG Roncero, E Mayayo, ... Infection and immunity 72 (3), 1760-1766, 2004 | 240 | 2004 |
The pH signalling transcription factor PacC controls virulence in the plant pathogen Fusarium oxysporum Z Caracuel, MIG Roncero, EA Espeso, CI González‐Verdejo, ... Molecular microbiology 48 (3), 765-779, 2003 | 227 | 2003 |
One Fungus, One Name: Defining the Genus Fusarium in a Scientifically Robust Way That Preserves Longstanding Use DM Geiser, T Aoki, CW Bacon, SE Baker, MK Bhattacharyya, ME Brandt, ... Phytopathology 103 (5), 400-408, 2013 | 208 | 2013 |
A Nitrogen Response Pathway Regulates Virulence Functions in Fusarium oxysporum via the Protein Kinase TOR and the bZIP Protein MeaB MS López-Berges, N Rispail, RC Prados-Rosales, A Di Pietro The Plant Cell 22 (7), 2459-2475, 2010 | 196 | 2010 |
Class V chitin synthase determines pathogenesis in the vascular wilt fungus Fusarium oxysporum and mediates resistance to plant defence compounds MP Madrid, A Di Pietro, MIG Roncero Molecular microbiology 47 (1), 257-266, 2003 | 193 | 2003 |