Maud Bernoux
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Explore the profile of Maud Bernoux including associated specialties, affiliations and a list of published articles.
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22
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1296
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Recent Articles
1.
Demont H, Rembliere C, Culerrier R, Sauvaget M, Deslandes L, Bernoux M
Cell Rep
. 2025 Feb;
44(3):115326.
PMID: 39982818
Plant immunity and, in particular, immune responses induced by nucleotide-binding leucine-rich repeat receptors (NLRs) are often dampened above the optimal plant's growth range, but the underlying molecular mechanism remains elusive....
2.
Chen J, Zhang X, Bernoux M, Rathjen J, Dodds P
iScience
. 2024 Mar;
27(2):108817.
PMID: 38533452
Plant Toll/interleukin-1 receptor/resistance protein (TIR) type nucleotide-binding and leucine-rich repeat immune receptors (NLRs) require enhanced disease susceptibility 1 (EDS1) family proteins and the helper NLRs NRG1 and ADR1 for immune...
3.
Bernoux M, Chen J, Zhang X, Newell K, Hu J, Deslandes L, et al.
Plant J
. 2023 Mar;
114(6):1319-1337.
PMID: 36932864
Recent work shed light on how plant intracellular immune receptors of the nucleotide-binding leucine-rich repeat (NLR) family are activated upon pathogen effector recognition to trigger immune responses. Activation of Toll-interleukin-1...
4.
Bernoux M, Zetzsche H, Stuttmann J
Curr Opin Plant Biol
. 2022 Aug;
69:102276.
PMID: 36001920
Plants can detect microbial molecules via surface-localized pattern-recognition receptors (PRRs) and intracellular immune receptors from the nucleotide-binding, leucine-rich repeat receptor (NLR) family. The corresponding pattern-triggered (PTI) and effector-triggered (ETI) immunity...
5.
Tasset C, Bernoux M, Jauneau A, Pouzet C, Briere C, Kieffer-Jacquinod S, et al.
PLoS Pathog
. 2022 Mar;
18(3):e1010368.
PMID: 35235614
[This corrects the article DOI: 10.1371/journal.ppat.1001202.].
6.
Duxbury Z, Wang S, MacKenzie C, Tenthorey J, Zhang X, Huh S, et al.
Proc Natl Acad Sci U S A
. 2020 Jul;
117(31):18832-18839.
PMID: 32709746
Plant and animal intracellular nucleotide-binding, leucine-rich repeat (NLR) immune receptors detect pathogen-derived molecules and activate defense. Plant NLRs can be divided into several classes based upon their N-terminal signaling domains,...
7.
Chen J, Upadhyaya N, Ortiz D, Sperschneider J, Li F, Bouton C, et al.
Science
. 2017 Dec;
358(6370):1607-1610.
PMID: 29269475
Race-specific resistance genes protect the global wheat crop from stem rust disease caused by f. sp. () but are often overcome owing to evolution of new virulent races of the...
8.
Zhang X, Farah N, Rolston L, Ericsson D, Catanzariti A, Bernoux M, et al.
Mol Plant Pathol
. 2017 Aug;
19(5):1196-1209.
PMID: 28817232
The effector protein AvrP is secreted by the flax rust fungal pathogen (Melampsora lini) and recognized specifically by the flax (Linum usitatissimum) P disease resistance protein, leading to effector-triggered immunity....
9.
Zhang X, Dodds P, Bernoux M
Annu Rev Phytopathol
. 2017 Jun;
55:205-229.
PMID: 28637398
The first plant disease resistance (R) genes were identified and cloned more than two decades ago. Since then, many more R genes have been identified and characterized in numerous plant...
10.
Zhang X, Bernoux M, Bentham A, Newman T, Ve T, Casey L, et al.
Proc Natl Acad Sci U S A
. 2017 Feb;
114(10):E2046-E2052.
PMID: 28159890
The self-association of Toll/interleukin-1 receptor/resistance protein (TIR) domains has been implicated in signaling in plant and animal immunity receptors. Structure-based studies identified different TIR-domain dimerization interfaces required for signaling of...