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
Le Hir R, Sorin C, Chakraborti D, Moritz T, Schaller H,
Tellier F, Robert S,
Morin H, Bako L,
Bellini C (2013).
ABCG9, ABCG11 and ABCG14 ABC transporters are required for vascular development in Arabidopsis.
Plant J, 76:811-824.
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
Arkoun M, Jannin L, Laine P, Etienne P,
Masclaux-Daubresse C,
Citerne S, Garnica M, Garcia-Mina JM, Yvin JC, Ourry A (2012).
A physiological and molecular study of the effects of nickel deficiency and phenylphosphorodiamidate (PPD) application on urea metabolism in oilseed rape (Brassica napus L.).
Plant and Soil, 362:79-92.
PubMed
|
DOI
Braun N,
De Saint Germain A,
Pillot JP,
Boutet S, Dalmais M, Antoniadi I, Li X,
Maia-Grondard A, Le Signor C,
Bouteiller N, Luo D, Bendahmane A, Turnbull C,
Rameau C (2012).
The pea TCP transcription factor PsBRC1 acts downstream of Strigolactones to control shoot branching.
Plant Physiol, 158:225-238.
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
Peaucelle A, Louvet R, Johansen JN,
Salsac F,
Morin H, Fournet F,
Belcram K, Gillet F,
Höfte H,
Laufs P,
Mouille G, Pelloux J (2011).
The transcription factor BELLRINGER modulates phyllotaxis by regulating the expression of a pectin methylesterase in Arabidopsis.
Development, 138:4733-4741.
PubMed
|
DOI
Krapp A, Berthomé R, Orsel M,
Boutet S,
Yu A, Castaings L, Elftieh S, Major H, Renou JP, Daniel-Vedele F (2011).
Arabidopsis roots and shoots show distinct temporal adaptation patterns toward nitrogen starvation.
Plant Physiol, 157:1255-1282.
PubMed
|
DOI
Potel F, Valadier MH,
Ferrario-Méry S,
Grandjean O,
Morin H, Gaufichon L,
Boutet S, Lothier J, Rothstein SJ, Hirose N,
Suzuki A (2009).
Assimilation of excess ammonium into amino acids and nitrogen translocation in Arabidopsis thaliana--roles of glutamate synthases and carbamoylphosphate synthetase in leaves.
FEBS J, 276:4061-4076.
PubMed
|
DOI