Équipes de recherche

Développement et Qualité de la Graine

SEEDEV 15 membres

Publications IJPB (2006-présent)
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Raimondi D, Passemiers A, Verplaetse N, Corso M, Ferrero-Serrano A, Nazzicari N, Biscarini F, Fariselli P, Moreau Y (2024). Biologically meaningful genome interpretation models to address data underdetermination for the leaf and seed ionome prediction in Arabidopsis thaliana. Sci Rep, 14(1):13188. PubMed | DOI
Bianchetti G, Clouet V, Legeai F, Baron C, Gazengel K, Vu BL, Baud S, To A, Manzanares-Dauleux MJ, Buitink J, Nesi N (2024). Identification of transcriptional modules linked to the drought response of Brassica napus during seed development and their mitigation by early biotic stress. Physiol Plant, 176(1):e14130. PubMed | DOI
Bellec A, Sow MD, Pont C, Civan P, Mardoc E, Duchemin W, Armisen D, Huneau C, Thévenin J, Vernoud V, Depege-Fargeix N, Maunas L, Escale B, Dubreucq B, Rogowsky PM, Berges H, Salse J (2023). Tracing 100 million years of grass genome evolutionary plasticity. Plant J, doi: 10.1111/tpj.16185. PubMed | DOI
Rivarola Sena AC, Andres-Robin A, Vialette AC, Just J, Launay-Avon A, Borrega N, Dubreucq B, Scutt CP (2022). Custom methods to identify conserved genetic modules applied to novel transcriptomic data from Amborella trichopoda. J Exp Bot, erac044. PubMed | DOI
Rivière Q, Corso M, Ciortan M, Noël G, Verbruggen N, Defrance M (2022). Exploiting Genomic Features to Improve the Prediction of Transcription Factor Binding Sites in Plants. Plant Cell Physiol, pcac095. PubMed | DOI
Corso M, An X, Jones CY, Gonzalez-Doblas V, Schvartzman MS, Malkowski E, Willats WGT, Hanikenne M, Verbruggen N (2021). Adaptation of Arabidopsis halleri to extreme metal pollution through limited metal accumulation involves changes in cell wall composition and metal homeostasis. New Phytol, 230(2):669-682. PubMed | DOI
Jacob P, Brisou G, Dalmais M, Thévenin J, Van der Wal F, Latrasse D, Suresh Devani R, Benhamed M, Dubreucq B, Boualem A, Lepiniec L, Immink RGH, Hirt H, Bendahmane A (2021). The Seed Development Factors TT2 and MYB5 Regulate Heat Stress Response in Arabidopsis. Genes, 12(5):746. PubMed | DOI
Lu J, Le Hir R, Gómez-Páez DM, Coen O, Péchoux C, Jasinski S, Magnani E (2021). The nucellus: between cell elimination and sugar transport. Plant Physiol, 185(2):478-490. PubMed | DOI
Zarattini M, Corso M, Kadowaki MA, Monclaro A, Magri S, Milanese I, Jolivet S, De Godoy MO, Hermans C, Fagard M, Cannella D (2021). LPMO-oxidized cellulose oligosaccharides evoke immunity in Arabidopsis conferring resistance towards necrotrophic fungus B. cinerea. Commun Biol, 4(1):727. PubMed | DOI
Parry G, Provart NJ, Brady SM, Uzilday B, [...], Rajjou L, Lepiniec L, Multinational Arabidopsis Steering Committee (2020). White Paper: Current status of the multinational Arabidopsis community. Plant Direct, 4(7):e00248. PubMed | DOI
Miller C, Wells R, Mckenzie N, Trick M, Ball J, Fatihi A, Dubreucq B, Chardot T, Lepiniec L, Bevan MW (2019). Variation in expression of the HECT E3 ligase UPL3 modulates LEC2 levels, seed size and crop yield in Brassica napus. Plant Cell, D1419tpc.00577.02018:. PubMed | DOI
Roscoe TJ, Vaissayre V, Paszkiewicz G, Clavijo F, Kelemen Z, Michaud C, Lepiniec LC, Dubreucq B, Zhou DX, Devic M (2019). Regulation of FUSCA3 Expression During Seed Development in Arabidopsis. Plant Cell Physiol, 60:476-487. PubMed | DOI
Baud S (2018). Seeds as oil factories. Plant Reprod, 31:213-235. PubMed | DOI
Boulard C, Thévenin J, Tranquet O, Laporte V, Lepiniec L, Dubreucq B (2018). LEC1 (NF-YB9) directly interacts with LEC2 to control gene expression in seed. Biochim Biophys Acta Gene Regul Mech, 1861:443-450. PubMed | DOI
Magnani E (2018). Seed Evolution, A 'Simpler' Story. Trends Plant Sci, 23:654-656. PubMed | DOI
Troncoso-Ponce MA, Rivoal J, Dorion S, Sanchez R, Venegas-Caleron M, Moreno-Perez AJ, Baud S, Garces R, Martinez-Force E (2018). Molecular and biochemical characterization of the sunflower (Helianthus annuus L.) cytosolic and plastidial enolases in relation to seed development. Plant Sci, 272:117-130. PubMed | DOI
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