Publications de la plateforme

Coline Pons et al., (2024) Priming for drought resistance: UV-C flashes triggered pipecolate accumulation and dehydration avoidance in Capsicum chinense Jacq. but induced no growth or metabolic costs. Environmental and Experimental Botany, 226.

Lacrampe N et al., (2024) Modelling metabolic fluxes of tomato stems reveals that nitrogen shapes central metabolism for defence against Botrytis cinerea. J Exp Bot. (13):4093-4110.

Soulié et al., (2024) Rigid Cyclic Fluorinated Detergents : Fine-tuning the hydrophilic-lipophilic Balance Controls Self-Assembling and Biochemical Properties. ACS Appl. Mater. Interfaces 16,26, 32971-32982

Mangin et al., (2024) Surfmer versus Polymer Effect toward Solubilization and Stabilization of Membrane Proteins, ACS Appl. Polym. Mater. 6,6, 3139-3149

Sadon P et al, (2023) Aphid adaptation to cucurbits: sugars, cucurbitacinand phloem structure in resistant and susceptible melons. BMC Plant Biol. (1) :239.

Lacrampe N et al., (2023) Nitrogen-mediated metabolic patterns of susceptibility to Botrytis cinerea infection in tomato (Solanum lycopersicum) stems. Planta. 257(2) :41.

Bineau E et al., (2022) Inheritance of Secondary Metabolites and Gene Expression Related to Tomato Fruit Quality. Int J Mol Sci. 23(11) :6163.

Le Boulch P et al., (2022). Molecular mechanisms of resistance to Myzus persicae conferred by the peach Rm2 gene: A multi-omics view. Front Plant Sci. 13 :992544.

Aksenov, A.A., Laponogov, I., Zhang, Z. et al. (2021) Auto-deconvolution and molecular networking of gas chromatography–mass spectrometry data. Nat Biotechnol 39, 169–173.

Lacrampe N et al. (2021) Regulation of sugar metabolism genes in the nitrogen-dependent susceptibility of tomato stems to Botrytis cinerea. Ann Bot. 127(1) :143-154.

Dumont, D et al (2020). Multi-Targeted Metabolic Profiling of Carotenoids, Phenolic Compounds and Primary Metabolites in Goji (Lycium spp.) Berry and Tomato (Solanum lycopersicum) Reveals Inter and Intra Genus Biomarkers. Metabolites 10, 422.

Dickson L et al (2018) Main Human Urinary Metabolites after Genipap (Genipa americana L.) Juice Intake. Nutrients. 10(9) :1155.