Mikael Courbot
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Explore the profile of Mikael Courbot including associated specialties, affiliations and a list of published articles.
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15
Citations
559
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Recent Articles
1.
Kettles G, Hofinger B, Hu P, Bayon C, Rudd J, Balmer D, et al.
Front Plant Sci
. 2019 Jul;
10:892.
PMID: 31333714
Cross-kingdom small RNA (sRNA) silencing has recently emerged as a mechanism facilitating fungal colonization and disease development. Here we characterized RNAi pathways in , a major fungal pathogen of wheat,...
2.
Palma-Guerrero J, Torriani S, Zala M, Carter D, Courbot M, Rudd J, et al.
Mol Plant Pathol
. 2015 Nov;
17(6):845-59.
PMID: 26610174
Zymoseptoria tritici causes Septoria tritici blotch (STB) on wheat. The disease interaction is characterized by clearly defined temporal phases of infection, ultimately resulting in the death of host tissue. Zymoseptoria...
3.
Torriani S, Melichar J, Mills C, Pain N, Sierotzki H, Courbot M
Fungal Genet Biol
. 2015 Jun;
79:8-12.
PMID: 26092783
Syngenta is one of the major agrochemical companies with enormous breadth of technologies in Crop Protection, Seeds and Seed Care. Through an exceptionally broad product range and research investment, we...
4.
Derbyshire M, Michaelson L, Parker J, Kelly S, Thacker U, Powers S, et al.
Fungal Genet Biol
. 2015 Jun;
82:69-84.
PMID: 26074495
Septoria tritici blotch (STB) caused by the Ascomycete fungus Zymoseptoria tritici is one of the most economically damaging diseases of wheat worldwide. Z. tritici is currently a major target for...
5.
Rudd J, Kanyuka K, Hassani-Pak K, Derbyshire M, Andongabo A, Devonshire J, et al.
Plant Physiol
. 2015 Jan;
167(3):1158-85.
PMID: 25596183
The hemibiotrophic fungus Zymoseptoria tritici causes Septoria tritici blotch disease of wheat (Triticum aestivum). Pathogen reproduction on wheat occurs without cell penetration, suggesting that dynamic and intimate intercellular communication occurs...
6.
Lamberth C, Trah S, Wendeborn S, Dumeunier R, Courbot M, Godwin J, et al.
Bioorg Med Chem
. 2012 Apr;
20(9):2803-10.
PMID: 22494843
Special tetrasubstituted pyridazines are potent fungicides by promoting the tubulin polymerisation, hereby disrupting the microtubule dynamics in the fungus. They are monocyclic analogs of similar substituted triazolopyrimidines and pyridopyrazines with...
7.
Meyer C, Peisker D, Courbot M, Craciun A, Cazale A, Desgain D, et al.
Planta
. 2011 Mar;
234(1):83-95.
PMID: 21369921
The synthesis of phytochelatins (PC) represents a major metal and metalloid detoxification mechanism in various species. PC most likely play a role in the distribution and accumulation of Cd and...
8.
Antony E, Taybi T, Courbot M, Mugford S, Smith J, Borland A
J Exp Bot
. 2008 Apr;
59(7):1895-908.
PMID: 18408220
In photosynthetic tissues of the CAM plant pineapple (Ananas comosus), storage of soluble sugars in the central vacuole during the daytime and their remobilization at night is required to provide...
9.
Courbot M, Willems G, Motte P, Arvidsson S, Roosens N, Saumitou-Laprade P, et al.
Plant Physiol
. 2007 Apr;
144(2):1052-65.
PMID: 17434989
Cadmium (Cd) tolerance seems to be a constitutive species-level trait in Arabidopsis halleri sp. halleri. Therefore, an interspecific cross was made between A. halleri and its closest nontolerant interfertile relative,...
10.
Willems G, Drager D, Courbot M, Gode C, Verbruggen N, Saumitou-Laprade P
Genetics
. 2007 Apr;
176(1):659-74.
PMID: 17409091
The species Arabidopsis halleri, an emerging model for the study of heavy metal tolerance and accumulation in plants, has evolved a high level of constitutive zinc tolerance. Mapping of quantitative...