Research map: Fire blight research: 2026 and beyond
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- Current Status of the Gene-For-Gene Concept · H. H. Flor · 1971 · 3202 citations · Cited by this paper
- Genome resources of Pseudomonas sp. CFBP 5748 and Pseudomonas sp. CFBP 5750, fluorescent pseudomonads associated with tomato pith necrosis (FPTPN), clarify their position within the P. corrugata phylogenetic subgroup · 2026 · Related
- A NTIBIOTIC U SE IN P LANT A GRICULTURE · Patricia S. McManus · 2002 · 851 citations · Cited by this paper
- First report of cherry green ring mottle virus in sweet cherry in Bulgaria · 2026 · Related
- Type III Secretion Systems and Disease · Bryan A. Coburn · 2007 · 664 citations · Cited by this paper
- First report of Colletotrichum nymphaeae causing anthracnose on strawberry (Fragaria ananassa) in Greece · 2026 · Related
- Antibiotic Resistance in Plant-Pathogenic Bacteria · George W. Sundin · 2018 · 402 citations · Cited by this paper
- First report of Rhizoctonia solani AG-11 from Phaseolus vulgaris in Iran · 2026 · Related
- Type III Protein Secretion in Plant Pathogenic Bacteria · Daniela Büttner · 2009 · 393 citations · Cited by this paper
- Sustainable management of citrus canker pathogenesis using Panchagavya and Jeevamrut: exploiting the fermented organic biofertilizers in plant protection · 2026 · Related
- A family of conserved bacterial effectors inhibits salicylic acid-mediated basal immunity and promotes disease necrosis in plants · Sruti DebRoy · 2004 · 365 citations · Cited by this paper
- Characterization of a new isolate of tomato zonate spot virus from Vaccinium uliginosum L. in China · 2026 · Related
- Quantitative Resistance to Plant Pathogens in Pyramiding Strategies for Durable Crop Protection · Marie‐Laure Pilet‐Nayel · 2017 · 306 citations · Cited by this paper
- Baseline sensitivity of South African Fusarium circinatum to tebuconazole · 2026 · Related
- Contribution of Erwinia amylovora Exopolysaccharides Amylovoran and Levan to Biofilm Formation: Implications in Pathogenicity · Jessica M. Koczan · 2009 · 257 citations · Cited by this paper
- Fire blight forecasting: history, regional considerations, limitations, and future directions · 2026 · Related
- DspA, an essential pathogenicity factor of Erwinia amylovora showing homology with AvrE of Pseudomonas syringae, is secreted via the Hrp secretion pathway in a DspB‐dependent way · Sophie Gaudriault · 1997 · 216 citations · Cited by this paper
- Small RNA regulation of virulence in Erwinia amylovora · 2026 · Related
- Molecular genetics of Erwinia amylovora involved in the development of fire blight · Chang‐Sik Oh · 2005 · 210 citations · Cited by this paper
- Large scale evaluation of susceptibility/resistance of pear varieties to fire blight (Erwinia amylovora) by artificial shoot inoculation · 2026 · Related
- Homology and functional similarity of an hrp -linked pathogenicity locus, dspEF , of Erwinia amylovora and the avirulence locus avrE of Pseudomonas syringae pathovar tomato · Adam Joseph Bogdanove · 1998 · 187 citations · Cited by this paper
- Reduced fire blight susceptibility in apple cultivars using a high‐efficiency CRISPR/Cas9‐FLP/FRT‐based gene editing system · Valerio Pompili · 2019 · 175 citations · Cited by this paper
- The Role of the Stigma in Fire Blight Infections · Sherman V. Thomson · 1986 · 160 citations · Cited by this paper
- Strong evidence for a fire blight resistance gene of Malus robusta located on linkage group 3 · Andreas Peil · 2007 · 149 citations · Cited by this paper
- Identification of Erwinia amylovora Genes Induced during Infection of Immature Pear Tissue · Youfu Frank Zhao · 2005 · 148 citations · Cited by this paper
- Identification of a major QTL together with several minor additive or epistatic QTLs for resistance to fire blight in apple in two related progenies · Fanny Calenge · 2005 · 145 citations · Cited by this paper
- Erwinia amylovora Secretes DspE, a Pathogenicity Factor and Functional AvrE Homolog, through the Hrp (Type III Secretion) Pathway · Adam Joseph Bogdanove · 1998 · 145 citations · Cited by this paper
- Cell Surface Attachment Structures Contribute to Biofilm Formation and Xylem Colonization by Erwinia amylovora · Jessica M. Koczan · 2011 · 137 citations · Cited by this paper
- Two distinct major QTL for resistance to fire blight co-localize on linkage group 12 in apple genotypes ‘Evereste’ and Malus floribunda clone 821 · Charles-Éric Durel · 2009 · 119 citations · Cited by this paper
- The Hrp pathogenicity island of Erwinia amylovora and identification of three novel genes required for systemic infection‡ · Chang‐Sik Oh · 2005 · 114 citations · Cited by this paper
- QTL mapping of fire blight resistance in apple · Muhammad Awais Khan · 2006 · 114 citations · Cited by this paper
- Gene‐for‐gene relationship in the host–pathogen system M alus × robusta 5– E rwinia amylovora · Isabelle Vogt · 2013 · 114 citations · Cited by this paper
- Putative resistance gene markers associated with quantitative trait loci for fire blight resistance in Malus ‘Robusta 5’ accessions · Susan E. Gardiner · 2012 · 101 citations · Cited by this paper
- An automated apple harvesting robot—From system design to field evaluation · Kaixiang Zhang · 2023 · 100 citations · Cited by this paper
- Colonization of Host Plants by the Fire Blight Pathogen Erwinia amylovora Marked with Genes for Bioluminescence and Fluorescence · Jochen Bogs · 1998 · 99 citations · Cited by this paper
- DspA/E, a Type III Effector Essential for Erwinia amylovora Pathogenicity and Growth In Planta, Induces Cell Death in Host Apple and Nonhost Tobacco Plants · Tristan Boureau · 2006 · 98 citations · Cited by this paper
- The Erwinia amylovora avrRpt2 EA Gene Contributes to Virulence on Pear and AvrRpt2 EA Is Recognized by Arabidopsis RPS2 When Expressed in Pseudomonas syringae · Youfu Frank Zhao · 2006 · 94 citations · Cited by this paper
- Discovery of Plant Phenolic Compounds That Act as Type III Secretion System Inhibitors or Inducers of the Fire Blight Pathogen, Erwinia amylovora · Devanshi Khokhani · 2013 · 92 citations · Cited by this paper
- Engineering fire blight resistance into the apple cultivar ‘Gala’ using the FB _ MR 5 CC ‐ NBS ‐ LRR resistance gene of Malus × robusta 5 · Giovanni A. L. Broggini · 2014 · 91 citations · Cited by this paper
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