Durand M,
Bréhaut V,
Clément G,
Kelemen Z, Macé J, Feil R,
Duville G, Launay-Avon A, Paysant-Le Roux C, Lunn JE, Roudier F,
Krapp A (2023).
The Arabidopsis transcription factor NLP2 regulates early nitrate responses and integrates nitrate assimilation with energy and carbon skeleton supply.
Plant Cell, koad025.
PubMed
|
DOI
Zheng Y, Cabassa-Hourton C, Planchais S, Crilat E,
Clément G, Dacher M, Durand N, Bordenave-Jacquemin M, Guivarc'h A, Dourmap C, Carol P, Lebreton S, Savoure A (2022).
Pyrroline-5-carboxylate dehydrogenase is an essential enzyme for proline dehydrogenase function during dark-induced senescence in Arabidopsis thaliana.
Plant Cell Environ, doi: 10.1111/pce.14529.
PubMed
|
DOI
Nagel M, Arc E.,
Rajjou L,
Cueff G,
Bailly M,
Clément G, Sanchez-Vicente I, Bailly C, Seal CE, Roach T, Rolletschek H, Lorenzo O, Borner A, Kranner I (2022).
Impacts of drought and elevated temperature on the seeds of malting barley.
Front Plant Sci, 13:1049323.
PubMed
|
DOI
Jacquens L, Trouvelot S, Lemaître-Guillier C, Krzyzaniak Y,
Clément G,
Citerne S,
Mouille G, Moreau E, Heloir MC, Adrian M (2022).
Biostimulation can prime elicitor induced resistance of grapevine leaves to downy mildew.
Front Plant Sci, 13:998273.
PubMed
|
DOI
Launay A,
Jolivet S,
Clément G, Zarattini M, Dellero Y,
Le Hir R, Jossier M, Hodges M,
Expert D,
Fagard M (2022).
DspA/E-Triggered Non-Host Resistance against E. amylovora Depends on the Arabidopsis GLYCOLATE OXIDASE 2 Gene.
Int J Mol Sci, 23(8):4224.
PubMed
|
DOI
Sano N,
Lounifi I,
Cueff G,
Collet B,
Clément G, Balzergue S, Huguet S, Valot B,
Galland M,
Rajjou L (2022).
Multi-Omics Approaches Unravel Specific Features of Embryo and Endosperm in Rice Seed Germination.
Front Plant Sci, 13:867263.
PubMed
|
DOI
Farjad M,
Clément G,
Launay A,
Jeridi R,
Jolivet S,
Citerne S,
Rigault M,
Soulie MC,
Dinant S,
Fagard M (2021).
Plant nitrate supply regulates Erwinia amylovora virulence gene expression in Arabidopsis.
Mol Plant Pathol, 22(11):1332-1346.
PubMed
|
DOI
Wang M, Perez-Garcia MD, Davière JM, Barbier F,
Ogé L, Gentilhomme J, Voisine L, Péron T, Launay-Avon A,
Clément G, Baumberger N, Balzergue S, Macherel D,
Grappin P, Bertheloot J, Achard P, Hamama L, Sakr S (2021).
Outgrowth of the axillary bud in rose is controlled by sugar metabolism and signalling.
J Exp Bot, 72(8):3044-3060.
PubMed
|
DOI
Lambert I, Pervent M, Quere AL,
Clément G, Tauzin M, Severac D, Benezech C, Tillard P, Martin-Magniette ML, Colella S, Lepetit M (2020).
Responses of mature symbiotic nodules to the whole plant systemic nitrogen signaling.
J Exp Bot, .
PubMed
|
DOI
Chauffour F,
Bailly M,
Perreau F,
Cueff G,
Suzuki H,
Collet B,
Frey A,
Clément G, Soubigou-Taconnat L, Balliau T, Krieger-Liszkay A,
Rajjou L,
Marion-Poll A (2019).
Multi-omics Analysis Reveals Sequential Roles for ABA during Seed Maturation.
Plant Physiol, 180:1198-1218.
PubMed
|
DOI
Forzani C, Duarte GT, Van Leene J,
Clément G, Huguet S, Paysant-Le Roux C,
Mercier R, De Jaeger G,
Leprince AS,
Meyer C (2019).
Mutations of the AtYAK1 Kinase Suppress TOR Deficiency in Arabidopsis.
Cell Rep, 27:3696-3708 e3695.
PubMed
|
DOI
Schaufelberger M, Galbier F, Herger A, De Brito Francisco R, Roffler S,
Clément G, Diet A, Hortensteiner S, Wicker T, Ringli C (2019).
Mutations in the Arabidopsis ROL17/isopropylmalate synthase 1 locus alter amino acid content, modify the TOR network, and suppress the root hair cell development mutant lrx1.
J Exp Bot, 70:2313-2323.
PubMed
|
DOI
Moret F, Lemaître-Guillier C, Grosjean C,
Clément G, Coelho C, Negrel J, Jacquens L, Morvan G,
Mouille G, Trouvelot S,
Fontaine F, Adrian M (2018).
Clone-Dependent Expression of Esca Disease Revealed by Leaf Metabolite Analysis.
Front Plant Sci, 9:1960.
PubMed
|
DOI
Thierry M,
Majira A, Pégot B,
Cézard L, Bourdreux F,
Clément G,
Perreau F,
Boutet S, Diter P, Vo-Thanh G,
Lapierre C,
Ducrot PH, Magnier E,
Baumberger S,
Cottyn B (2018).
Imidazolium-Based Ionic Liquids as Efficient Reagents for the C-O Bond Cleavage of Lignin.
ChemSusChem, 11:439-448.
PubMed
|
DOI
Galland M, He D,
Lounifi I,
Arc E,
Clément G, Balzergue S, Huguet S,
Cueff G,
Godin B,
Collet B,
Granier F,
Morin H, Tran J, Valot B,
Rajjou L (2017).
An Integrated "Multi-Omics" Comparison of Embryo and Endosperm Tissue-Specific Features and Their Impact on Rice Seed Quality.
Front Plant Sci, 8:1984.
PubMed
|
DOI
Gaufichon L,
Marmagne A,
Belcram K, Yoneyama T, Sakakibara Y, Hase T,
Grandjean O,
Clément G,
Citerne S,
Boutet S,
Masclaux-Daubresse C,
Chardon F,
Soulay F, Xu X, Trassaert M, Shakiebaei M, Najihi A,
Suzuki A (2017).
ASN1-encoded asparagine synthetase in floral organs contributes to nitrogen filling in Arabidopsis seeds.
Plant J, 91:371-393.
PubMed
|
DOI
Gaufichon L,
Marmagne A, Yoneyama T, Hase T,
Clément G, Trassaert M, Xu X, Shakibaei M, Najihi A,
Suzuki A (2016).
Impact of the Disruption of ASN3-Encoding Asparagine Synthetase on Arabidopsis Development.
Agronomy, 6:12.
PubMed
|
DOI
Juma G,
Clément G, Ahuya P, Hassanali A, Derridj S,
Gaertner C, Linard R, Le Ru B, Frerot B, Calatayud PA (2016).
Influence of Host-Plant Surface Chemicals on the Oviposition of the Cereal Stemborer Busseola Fusca.
J Chem Ecol, 42:394-403.
PubMed
|
DOI
Amiour N, Imbaud S,
Clément G, Agier N, Zivy M, Valot B, Balliau T,
Quilleré I, Terce-Laforgue T,
Dargel-Graffin C,
Hirel B (2014).
An integrated "omics" approach to the characterization of maize (Zea mays L.) mutants deficient in the expression of two genes encoding cytosolic glutamine synthetase.
BMC Genomics, 15:1005.
PubMed
|
DOI
Masclaux-Daubresse C,
Clément G,
Anne P,
Routaboul JM,
Guiboileau A,
Soulay F, Shirasu K,
Yoshimoto K (2014).
Stitching together the Multiple Dimensions of Autophagy Using Metabolomics and Transcriptomics Reveals Impacts on Metabolism, Development, and Plant Responses to the Environment in Arabidopsis.
Plant Cell, 26:1857-1877.
PubMed
|
DOI
Simons M, Saha R,
Amiour N, Kumar A, Guillard L,
Clément G,
Miquel M, Li Z,
Mouille G, Lea PJ,
Hirel B, Maranas CD (2014).
Assessing the metabolic impact of nitrogen availability using a compartmentalized maize leaf genome-scale model.
Plant Physiol, 166:1659-1674.
PubMed
|
DOI
Chardon F,
Bedu M, Calenge F, Klemens PA,
Spinner L,
Clément G,
Chietera G, Leran S,
Ferrand M, Lacombe B,
Loudet O,
Dinant S,
Bellini C, Neuhaus HE, Daniel-Vedele F,
Krapp A (2013).
Leaf fructose content is controlled by the vacuolar transporter SWEET17 in Arabidopsis.
Curr Biol, 23:697-702.
PubMed
|
DOI
Denance N, Ranocha P, Oria N, Barlet X, Riviere MP, Yadeta KA, Hoffmann L,
Perreau F,
Clément G,
Maia-Grondard A, Van Den Berg GC, Savelli B, Fournier S, Aubert Y, Pelletier S, Thomma BP, Molina A, Jouanin L, Marco Y, Goffner D (2013).
Arabidopsis wat1 (walls are thin1)-mediated resistance to the bacterial vascular pathogen, Ralstonia solanacearum, is accompanied by cross-regulation of salicylic acid and tryptophan metabolism.
Plant J, 73:225-239.
PubMed
|
DOI
Gaufichon L,
Masclaux-Daubresse C, Tcherkez G,
Reisdorf-Cren M, Sakakibara Y, Hase T,
Clément G, Avice JC,
Grandjean O,
Marmagne A,
Boutet S,
Azzopardi M,
Soulay F,
Suzuki A (2013).
Arabidopsis thaliana ASN2 encoding asparagine synthetase is involved in the control of nitrogen assimilation and export during vegetative growth.
Plant Cell Environ, 36:328-342.
PubMed
|
DOI
Amiour N, Imbaud S,
Clément G, Agier N, Zivy M, Valot B, Balliau T,
Armengaud P,
Quilleré I, Canas R, Tercet-Laforgue T,
Hirel B (2012).
The use of metabolomics integrated with transcriptomic and proteomic studies for identifying key steps involved in the control of nitrogen metabolism in crops such as maize.
J Exp Bot, 63:5017-5033.
PubMed
|
DOI
Fontaine JX, Terce-Laforgue T,
Armengaud P,
Clément G, Renou JP, Pelletier S, Catterou M,
Azzopardi M, Gibon Y, Lea PJ,
Hirel B, Dubois F (2012).
Characterization of a NADH-dependent glutamate dehydrogenase mutant of Arabidopsis demonstrates the key role of this enzyme in root carbon and nitrogen metabolism.
Plant Cell, 24:4044-4065.
PubMed
|
DOI
Moreau M,
Azzopardi M,
Clément G,
Dobrenel T,
Marchive C,
Renne C, Martin-Magniette ML, Taconnat L, Renou JP, Robaglia C,
Meyer C (2012).
Mutations in the Arabidopsis homolog of LST8/GbetaL, a partner of the target of Rapamycin kinase, impair plant growth, flowering, and metabolic adaptation to long days.
Plant Cell, 24:463-481.
PubMed
|
DOI