Thierry C Marcel
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Explore the profile of Thierry C Marcel including associated specialties, affiliations and a list of published articles.
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28
Citations
607
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Recent Articles
1.
Thauvin J, Gelisse S, Cambon F, Langin T, Marcel T, Saintenac C
BMC Plant Biol
. 2024 Dec;
24(1):1212.
PMID: 39701973
Background: Septoria tritici blotch (STB) is one of the most damaging wheat diseases worldwide, and the development of resistant cultivars is of paramount importance for sustainable crop management. However, the...
2.
Amezrou R, Ducasse A, Compain J, Lapalu N, Pitarch A, Dupont L, et al.
Nat Commun
. 2024 Mar;
15(1):1933.
PMID: 38431601
Knowledge of genetic determinism and evolutionary dynamics mediating host-pathogen interactions is essential to manage fungal plant diseases. Studies on the genetic architecture of fungal pathogenicity often focus on large-effect effector...
3.
Mathieu L, Reder M, Siah A, Ducasse A, Langlands-Perry C, Marcel T, et al.
Plant Methods
. 2024 Jan;
20(1):18.
PMID: 38297386
Background: Investigations on plant-pathogen interactions require quantitative, accurate, and rapid phenotyping of crop diseases. However, visual assessment of disease symptoms is preferred over available numerical tools due to transferability challenges....
4.
Langlands-Perry C, Pitarch A, Lapalu N, Cuenin M, Bergez C, Noly A, et al.
Front Plant Sci
. 2023 May;
14:1128546.
PMID: 37235026
Septoria leaf blotch is a foliar wheat disease controlled by a combination of plant genetic resistances and fungicides use. gene-based qualitative resistance durability is limited due to gene-for-gene interactions with...
5.
Amezrou R, Audeon C, Compain J, Gelisse S, Ducasse A, Saintenac C, et al.
PLoS Pathog
. 2023 May;
19(5):e1011376.
PMID: 37172036
Zymoseptoria tritici is the fungal pathogen responsible for Septoria tritici blotch on wheat. Disease outcome in this pathosystem is partly determined by isolate-specific resistance, where wheat resistance genes recognize specific...
6.
Feurtey A, Lorrain C, McDonald M, Milgate A, Solomon P, Warren R, et al.
Nat Commun
. 2023 Feb;
14(1):1059.
PMID: 36828814
Human activity impacts the evolutionary trajectories of many species worldwide. Global trade of agricultural goods contributes to the dispersal of pathogens reshaping their genetic makeup and providing opportunities for virulence...
7.
Bellah H, Gazeau G, Gelisse S, Amezrou R, Marcel T, Croll D
PLoS One
. 2023 Feb;
18(2):e0281181.
PMID: 36745583
Crop pathogens pose severe risks to global food production due to the rapid rise of resistance to pesticides and host resistance breakdowns. Predicting future risks requires monitoring tools to identify...
8.
Langlands-Perry C, Cuenin M, Bergez C, Krima S, Gelisse S, Sourdille P, et al.
Genes (Basel)
. 2022 Jan;
13(1).
PMID: 35052440
Quantitative resistance is considered more durable than qualitative resistance as it does not involve major resistance genes that can be easily overcome by pathogen populations, but rather a combination of...
9.
Ouaja M, Bahri B, Aouini L, Ferjaoui S, Medini M, Marcel T, et al.
BMC Genom Data
. 2021 Feb;
22(1):3.
PMID: 33568058
Background: Tunisia is considered a secondary center of diversification of durum wheat and has a large number of abandoned old local landraces. An accurate investigation and characterization of the morphological...
10.
Jiang G, Marcel T, Martinez F, Niks R
Plant Dis
. 2019 Feb;
91(3):301-307.
PMID: 30780564
In plant breeding and germplasm evaluation, large-scale assessment of quantitative resistance is desirable, but feasible only if a simple and accurate measure is available. In several plant-pathogen systems, latent period...