Parents
Sign in to add mentorYves Marco | grad student | 1996 | Toulouse 3 | |
(Caractérisation et régulation transcriptionnelle de gènes de tabac actives lors des étapes précoces d'une interaction avec la bactérie phytopathogène Pseudomonas solanacearum) |
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Publications
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King E, Wallner A, Rimbault I, et al. (2019) Monitoring of Rice Transcriptional Responses to Contrasted Colonizing Patterns of Phytobeneficial Reveals a Temporal Shift in JA Systemic Response. Frontiers in Plant Science. 10: 1141 |
Gully D, Czernic P, Cruveiller S, et al. (2018) Transcriptome Profiles of Nod Factor-independent Symbiosis in the Tropical Legume Aeschynomene evenia. Scientific Reports. 8: 10934 |
Chaintreuil C, Rivallan R, Bertioli DJ, et al. (2016) A gene-based map of the Nod factor-independent Aeschynomene evenia sheds new light on the evolution of nodulation and legume genomes. Dna Research : An International Journal For Rapid Publication of Reports On Genes and Genomes |
Mirouze M, Sels J, Richard O, et al. (2006) A putative novel role for plant defensins: a defensin from the zinc hyper-accumulating plant, Arabidopsis halleri, confers zinc tolerance. The Plant Journal : For Cell and Molecular Biology. 47: 329-42 |
Pianelli K, Mari S, Marquès L, et al. (2005) Nicotianamine over-accumulation confers resistance to nickel in Arabidopsis thaliana. Transgenic Research. 14: 739-48 |
Keller H, Czernic P, Ponchet M, et al. (1998) Sesquiterpene cyclase is not a determining factor for elicitor- and pathogen-induced capsidiol accumulation in tobacco Planta. 205: 467-476 |
Czernic P, Huang HC, Marco Y. (1996) Characterization of hsr201 and hsr515, two tobacco genes preferentially expressed during the hypersensitive reaction provoked by phytopathogenic bacteria. Plant Molecular Biology. 31: 255-65 |
Froissard D, Gough C, Czernic P, et al. (1994) Structural organization of str 246C and str 246N, plant defense-related genes from Nicotiana tabacum. Plant Molecular Biology. 26: 515-21 |