Annuaire

Isabelle QUILLERÉ Ingénieure de recherche

Acquisition d'Azote dans les Systèmes Symbiotiques Plantes-Microbes

Publications IJPB (2006-présent) [21]
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Chowdhury NB, Simons-Senftle M, Decouard B, Quilleré I, Rigault M, Sajeevan KA, Acharya B, Chowdhury R, Hirel B, Dellagi A, Maranas CD, Saha R (2023). A multi-organ maize metabolic model connects temperature stress with energy production and reducing power generation. iScience, 26(12):108400. PubMed | DOI
Chowdhury NB, Schroeder WL, Sarkar D, Amiour N, Quilleré I, Hirel B, Maranas CD, Saha R (2022). Dissecting the metabolic reprogramming of maize root under nitrogen-deficient stress conditions. J Exp Bot, 73(1):275-291. PubMed | DOI
Amiour N, Décousset L, Rouster J, Quenard N, Buet C, Dubreuil P, Quilleré I, Brulé L, Cukier C, Dinant S, Sallaud C, Dubois F, Limami AM, Lea PJ, Hirel B (2021). Impacts of environmental conditions, and allelic variation of cytosolic glutamine synthetase on maize hybrid kernel production. Commun Biol, 4(1):1095. PubMed | DOI
Mérigout P, Gaudon V, Quilleré I, Briand X, Daniel-Vedele F (2008). Urea Use Efficiency of Hydroponically Grown Maize and Wheat. Journal of Plant Nutrition, 31:427-443. 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
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