Pôles

Biomasse, Environnement, Adaptation et Métabolisme

BEAM 11 équipes de recherche

Publications IJPB (2006-présent)
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Fontaine JX, Saladino F, Agrimonti C, Bedu M, Terce-Laforgue T, Tétu T, Hirel B, Restivo FM, Dubois F (2006). Control of the synthesis and subcellular targeting of the two GDH genes products in leaves and stems of Nicotiana plumbaginifolia and Arabidopsis thaliana. Plant Cell Physiol, 47:410-418. PubMed | DOI
Kichey T, Heumez E, Pocholle D, Pageau K, Vanacker H, Dubois F, Le Gouis J, Hirel B (2006). Combined agronomic and physiological aspects of nitrogen management in wheat highlight a central role for glutamine synthetase. New Phytol, 169:265-278. PubMed | DOI
Martin A, Lee J, Kichey T, Gerentes D, Zivy M, Tatout C, Dubois F, Balliau T, Valot B, Davanture M, Terce-Laforgue T, Quilleré I, Coque M, Gallais A, Gonzalez-Moro MB, Bethencourt L, Habash DZ, Lea PJ, Charcosset A, Perez P, Murigneux A, Sakakibara H, Edwards KJ, Hirel B (2006). Two cytosolic glutamine synthetase isoforms of maize are specifically involved in the control of grain production. Plant Cell, 18:3252-3274. PubMed | DOI
Pommel B, Gallais A, Coque M, Quilleré I, Hirel B, Prioul J, Andrieu B, Floriot M (2006). Carbon and nitrogen allocation and grain filling in three maize hybrids differing in leaf senescence. European Journal of Agronomy, 24:203-211. PubMed | DOI
Calenge F, Saliba-Colombani V, Mahieu S, Loudet O, Daniel-Vedele F, Krapp A (2006). Natural variation for carbohydrate content in Arabidopsis. Interaction with complex traits dissected by quantitative genetics. Plant Physiol, 141:1630-1643. PubMed | DOI
Diaz C, Saliba-Colombani V, Loudet O, Belluomo P, Moreau L, Daniel-Vedele F, Morot-Gaudry JF, Masclaux-Daubresse C (2006). Leaf yellowing and anthocyanin accumulation are two genetically independent strategies in response to nitrogen limitation in Arabidopsis thaliana. Plant Cell Physiol, 47:74-83. PubMed | DOI
Orsel M, Chopin F, Leleu O, Smith SJ, Krapp A, Daniel-Vedele F, Miller AJ (2006). Characterization of a two-component high-affinity nitrate uptake system in Arabidopsis. Physiology and protein-protein interaction. Plant Physiol, 142:1304-1317. PubMed | DOI
Pouteau S, Ferret V, Lefebvre D (2006). Comparison of environmental and mutational variation in flowering time in Arabidopsis. J Exp Bot, 57:4099-4109. PubMed | DOI
Chibani K, Ali-Rachedi S, Job C, Job D, Jullien M, Grappin P (2006). Proteomic analysis of seed dormancy in Arabidopsis. Plant Physiol, 142:1493-1510. PubMed | DOI
De Diego JG, David Rodriguez F, Rodriguez Lorenzo JL, Grappin P, Cervantes E (2006). cDNA-AFLP analysis of seed germination in Arabidopsis thaliana identifies transposons and new genomic sequences. J Plant Physiol, 163:452-462. PubMed | DOI
Seo M, Hanada A, Kuwahara A, Endo A, Okamoto M, Yamauchi Y, North HM, Marion-Poll A, Sun TP, Koshiba T, Kamiya Y, Yamaguchi S, Nambara E (2006). Regulation of hormone metabolism in Arabidopsis seeds: phytochrome regulation of abscisic acid metabolism and abscisic acid regulation of gibberellin metabolism. Plant J, 48:354-366. PubMed | DOI
Schjoerring JK, Mack G, Nielsen KH, Husted S, Suzuki A, Driscoll S, Boldt R, Bauwe H (2006). Antisense reduction of serine hydroxymethyltransferase results in diurnal displacement of NH4+ assimilation in leaves of Solanum tuberosum. Plant J, 45:71-82. PubMed | DOI
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