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Isabelle Fudal

Explore the profile of Isabelle Fudal including associated specialties, affiliations and a list of published articles. Areas
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Articles 38
Citations 1737
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Recent Articles
11.
Petit-Houdenot Y, Degrave A, Meyer M, Blaise F, Ollivier B, Marais C, et al.
New Phytol . 2019 Feb; 223(1):397-411. PMID: 30802965
Interactions between Leptosphaeria maculans, causal agent of stem canker of oilseed rape, and its Brassica hosts are models of choice to explore the multiplicity of 'gene-for-gene' complementarities and how they...
12.
Fudal I, Balesdent M, Rouxel T
Trends Plant Sci . 2018 Jul; 23(9):753-755. PMID: 30041914
The recent finding of a novel fungal strategy to manipulate salicylic acid (SA) in a nonmodel plant pathogen interaction not only establishes the universality of the strategy to ensure the...
13.
Sanchez-Vallet A, Fouche S, Fudal I, Hartmann F, Soyer J, Tellier A, et al.
Annu Rev Phytopathol . 2018 May; 56:21-40. PMID: 29768136
Filamentous pathogens, including fungi and oomycetes, pose major threats to global food security. Crop pathogens cause damage by secreting effectors that manipulate the host to the pathogen's advantage. Genes encoding...
14.
Petit-Houdenot Y, Fudal I
Front Plant Sci . 2017 Jul; 8:1072. PMID: 28670324
During infection, pathogens secrete an arsenal of molecules, collectively called effectors, key elements of pathogenesis which modulate innate immunity of the plant and facilitate infection. Some of these effectors can...
15.
Tyler B, Kale S, Wang Q, Tao K, Clark H, Drews K, et al.
Mol Plant Microbe Interact . 2016 Nov; 2015(1):51-56. PMID: 27839069
No abstract available.
16.
Gervais J, Plissonneau C, Linglin J, Meyer M, Labadie K, Cruaud C, et al.
Mol Plant Pathol . 2016 Jul; 18(8):1113-1126. PMID: 27474899
Leptosphaeria maculans, the causal agent of stem canker disease, colonizes oilseed rape (Brassica napus) in two stages: a short and early colonization stage corresponding to cotyledon or leaf colonization, and...
17.
de Marchi R, Sorel M, Mooney B, Fudal I, Goslin K, Kwasniewska K, et al.
Sci Rep . 2016 May; 6:26020. PMID: 27173012
To efficiently counteract pathogens, plants rely on a complex set of immune responses that are tightly regulated to allow the timely activation, appropriate duration and adequate amplitude of defense programs....
18.
Plissonneau C, Daverdin G, Ollivier B, Blaise F, Degrave A, Fudal I, et al.
New Phytol . 2015 Nov; 209(4):1613-24. PMID: 26592855
Extending the durability of plant resistance genes towards fungal pathogens is a major challenge. We identified and investigated the relationship between two avirulence genes of Leptosphaeria maculans, AvrLm3 and AvrLm4-7....
19.
Soyer J, Rouxel T, Fudal I
Curr Opin Plant Biol . 2015 Jun; 26:51-6. PMID: 26116976
Plant-associated fungi often present in their genome areas enriched in repeat sequences and effector genes, the latter being specifically induced in planta. The location of effector genes in regions enriched...
20.
Blondeau K, Blaise F, Graille M, Kale S, Linglin J, Ollivier B, et al.
Plant J . 2015 Jun; 83(4):610-24. PMID: 26082394
The avirulence gene AvrLm4-7 of Leptosphaeria maculans, the causal agent of stem canker in Brassica napus (oilseed rape), confers a dual specificity of recognition by two resistance genes (Rlm4 and...