De Saint Germain A, Clavé G, Schouveiler P,
Pillot JP,
Singh AV, Chevalier A, Daignan Fornier S,
Guillory A,
Bonhomme S,
Rameau C,
Boyer FD (2022).
Expansion of the Strigolactone Profluorescent Probes Repertory: The Right Probe for the Right Application.
Front Plant Sci, 13:887347.
PubMed
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DOI
Fiorilli V, Forgia M,
De Saint Germain A, D'Arrigo G, Cornu D,
Le Bris P, Al-Babili S, Cardinale F, Prandi C, Spyrakis F,
Boyer FD, Turina M, Lanfranco L (2022).
A structural homologue of the plant receptor D14 mediates responses to strigolactones in the fungal phytopathogen Cryphonectria parasitica.
New Phytol, 234(3):1003-1017.
PubMed
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DOI
Fornier SD,
De Saint Germain A, Retailleau P,
Pillot JP, Taulera Q, Andna L, Miesch L, Rochange S, Pouvreau JB,
Boyer FD (2022).
Noncanonical Strigolactone Analogues Highlight Selectivity for Stimulating Germination in Two Phelipanche ramosa Populations.
J Nat Prod, 85(8):1976-1992.
PubMed
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DOI
Guercio AM, Torabi S, Cornu D, Dalmais M, Bendahmane A, Le Signor C,
Pillot JP,
Le Bris P,
Boyer FD,
Rameau C, Gutjahr C,
De Saint Germain A, Shabek N (2022).
Structural and functional analyses explain Pea KAI2 receptor diversity and reveal stereoselective catalysis during signal perception.
Commun Biol, 5(1):126.
PubMed
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DOI
Struk S, Braem L, Matthys C, Walton A, Vangheluwe N, Van Praet S, Jiang L, Baster P, De Cuyper C,
Boyer FD, Stes E, Beeckman T, Friml J, Gevaert K, Goormachtig S (2022).
Transcriptional Analysis in the Arabidopsis Roots Reveals New Regulators that Link rac-GR24 Treatment with Changes in Flavonol Accumulation, Root Hair Elongation and Lateral Root Density.
Plant Cell Physiol, 63(1):104-119.
PubMed
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DOI
Temmerman A, Marquez-Garcia B, Depuydt S, Bruznican S, De Cuyper C, De Keyser A,
Boyer FD, Vereecke D, Struk S, Goormachtig S (2022).
MAX2-dependent competence for callus formation and shoot regeneration from Arabidopsis thaliana root explants.
J Exp Bot, erac281.
PubMed
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DOI
Arellano-Saab A, Bunsick M, Al Galib H, Zhao W, Schuetz S, Bradley JM, Xu Z, Adityani C, Subha A, McKay H,
De Saint Germain A,
Boyer FD, McErlean CSP, Toh S, McCourt P, Stogios PJ, Lumba S (2021).
Three mutations repurpose a plant karrikin receptor to a strigolactone receptor.
Proc Natl Acad Sci U S A, 118(30):e2103175118.
PubMed
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DOI
De Saint Germain A, Jacobs A, Brun G, Pouvreau JB, Braem L, Cornu D, Clavé G, Baudu E, Steinmetz V, Servajean V, Wicke S, Gevaert K, Simier P, Goormachtig S, Delavault P,
Boyer FD (2021).
A Phelipanche ramosa KAI2 protein perceives strigolactones and isothiocyanates enzymatically.
Plant Commun, 2(5):100166.
PubMed
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DOI
Lopez-Obando M,
Guillory A,
Boyer FD, Cornu D,
Hoffmann B,
Le Bris P, Pouvreau JB, Delavault P,
Rameau C,
De Saint Germain A,
Bonhomme S (2021).
The Physcomitrium (Physcomitrella) patens PpKAI2L receptors for strigolactones and related compounds function via MAX2-dependent and -independent pathways.
Plant Cell, 33(11):3487-3512.
PubMed
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DOI
Struk S, De Cuyper C, Jacobs A, Braem L, Walton A, De Keyser A, Depuydt S, Vu LD, De Smet I,
Boyer FD, Eeckhout D, Persiau G, Gevaert K, De Jaeger G, Goormachtig S (2021).
Unraveling the MAX2 Protein Network in Arabidopsis thaliana: Identification of the Protein Phosphatase PAPP5 as a Novel MAX2 Interactor.
Mol Cell Proteomics, 20:100040.
PubMed
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DOI
De Saint Germain A, Retailleau P, Norsikian S, Servajean V, Pelissier F, Steinmetz V,
Pillot JP, Rochange S, Pouvreau JB,
Boyer FD (2019).
Contalactone, a contaminant formed during chemical synthesis of the strigolactone reference GR24 is also a strigolactone mimic.
Phytochemistry, 168:112112.
PubMed
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DOI
Van Overtveldt M, Braem L, Struk S, Kaczmarek AM,
Boyer FD, Van Deun R, Gevaert K, Goormachtig S, Heugebaert TSA, Stevens CV (2019).
Design and visualization of second-generation cyanoisoindole-based fluorescent strigolactone analogs.
Plant J, 98:165-180.
PubMed
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DOI
Boutet S,
Perreau F, Roux A, Clavé G,
Pillot JP, Schmitz-Afonso I, Touboul D,
Mouille G,
Rameau C,
Boyer FD (2018).
Validated Method for Strigolactone Quantification by Ultra High-Performance Liquid Chromatography - Electrospray Ionisation Tandem Mass Spectrometry Using Novel Deuterium Labelled Standards.
Phytochem Anal, 29:59-68.
PubMed
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DOI
Struk S, Braem L, Walton A, De Keyser A,
Boyer FD, Persiau G, De Jaeger G, Gevaert K, Goormachtig S (2018).
Quantitative Tandem Affinity Purification, an Effective Tool to Investigate Protein Complex Composition in Plant Hormone Signaling: Strigolactones in the Spotlight.
Front Plant Sci, 9:528.
PubMed
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DOI
Berthelot N, Brossay A,
Gasciolli V, Bono JJ, Baron A, Beau JM, Urban D,
Boyer FD, Vauzeilles B (2017).
Synthesis of lipo-chitooligosaccharide analogues and their interaction with LYR3, a high affinity binding protein for Nod factors and Myc-LCOs.
Org Biomol Chem, 15:7802-7812.
PubMed
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DOI
De Saint Germain A, Clavé G, Badet-Denisot MA,
Pillot JP, Cornu D, Le Caer JP, Burger M, Pelissier F, Retailleau P, Turnbull C,
Bonhomme S, Chory J,
Rameau C,
Boyer FD (2016).
An histidine covalent receptor and butenolide complex mediates strigolactone perception.
Nat Chem Biol, 12:787-794.
PubMed
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DOI
Jiang L, Matthys C, Marquez-Garcia B, De Cuyper C, Smet L, De Keyser A,
Boyer FD, Beeckman T, Depuydt S, Goormachtig S (2016).
Strigolactones spatially influence lateral root development through the cytokinin signaling network.
J Exp Bot, 67:379-389.
PubMed
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DOI
Walton A, Stes E, Goeminne G, Braem L, Vuylsteke M, Matthys C, De Cuyper C, Staes A, Vandenbussche J,
Boyer FD, Vanholme R, Fromentin J, Boerjan W, Gevaert K, Goormachtig S (2016).
The Response of the Root Proteome to the Synthetic Strigolactone GR24 in Arabidopsis.
Mol Cell Proteomics, 15:2744-2755.
PubMed
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DOI
Boyer FD,
De Saint Germain A, Pouvreau JB, Clavé G,
Pillot JP, Roux A, Rasmussen A, Depuydt S, Lauressergues D, Frei Dit Frey N, Heugebaert TS, Stevens CV, Geelen D, Goormachtig S,
Rameau C (2014).
New strigolactone analogs as plant hormones with low activities in the rhizosphere.
Mol Plant, 7:675-690.
PubMed
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DOI
Boyer FD,
De Saint Germain A,
Pillot JP, Pouvreau JB, Chen VX, Ramos S, Stévenin A, Simier P, Delavault P, Beau JM,
Rameau C (2012).
Structure-activity relationship studies of strigolactone-related molecules for branching inhibition in garden pea: molecule design for shoot branching.
Plant Physiol, 159:1524-1544.
PubMed
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DOI