Claudine Balagué

Affiliations: 
Toulouse, INPT 
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"Claudine Balagué"
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Perchepied L, Balagué C, Riou C, et al. (2010) Nitric oxide participates in the complex interplay of defense-related signaling pathways controlling disease resistance to Sclerotinia sclerotiorum in Arabidopsis thaliana. Molecular Plant-Microbe Interactions : Mpmi. 23: 846-60
Bouchez O, Huard C, Lorrain S, et al. (2007) Ethylene is one of the key elements for cell death and defense response control in the Arabidopsis lesion mimic mutant vad1. Plant Physiology. 145: 465-77
Chaves AL, Rombaldi C, Araujo PJd, et al. (1998) Ripening cycle and ethylene production of transgenic tomatoes (Lycopersicon esculentum, Mill.) Food Science and Technology International. 18: 116-120
Bouquin T, Lasserre E, Pradier J, et al. (1997) Wound and ethylene induction of the ACC oxidase melon gene CM-ACO1 occurs via two direct and independent transduction pathways. Plant Molecular Biology. 35: 1029-1035
Lasserre E, Godard F, Bouquin T, et al. (1997) Differential activation of two ACC oxidase gene promoters from melon during plant development and in response to pathogen attack. Molecular Genetics and Genomics. 256: 211-222
Lasserre E, Bouquin T, Hernandez JA, et al. (1996) Structure and expression of three genes encoding ACC oxidase homologs from melon (Cucumis melo L.) Molecular Genetics and Genomics. 251: 81-90
Rombaldi CV, Chaves A, Silva J, et al. (1996) EXPRESSÃO DA ENZIMA ÁCIDO 1-CARBOXÍLICO-1-AMINO CICLOPROPANO OXIDASE EM TOMATE (Lycopersicon esculentum Mill.), CULTIVAR KADÁ Current Agricultural Science and Technology. 2
Lasserre E, Bouquin T, Hernandez JA, et al. (1996) Structure and expression of three genes encoding ACC oxidase homologs from melon ( Molecular Genetics and Genomics. 251: 81
Balagué C, Watson CF, Turner AJ, et al. (1993) Isolation of a ripening and wound‐induced cDNA from Cucumis melo L. encoding a protein with homology to the ethylene‐forming enzyme Febs Journal. 212: 27-34
Lelievre J, Balague C, Pech J, et al. (1987) Protein synthesis associated with quiescence and senescence in auxin-starved pear cells. Plant Physiology. 85: 400-406
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