Publications des scientifiques de l'IRD

Gully Djamel, Czernic P., Cruveiller S., Mahe F., Longin C., Vallenet D., Francois P., Nidelet S., Rialle S., Giraud Eric, Arrighi Jean-François, DasGupta M., Cartieaux Fabienne. (2018). Transcriptome profiles of Nod factor-independent symbiosis in the tropical legume Aeschynomene evenia. Scientific Reports - Nature, 8, p. art. 10934 [12 p.]. ISSN 2045-2322.

Titre du document
Transcriptome profiles of Nod factor-independent symbiosis in the tropical legume Aeschynomene evenia
Année de publication
2018
Type de document
Article référencé dans le Web of Science WOS:000439101600033
Auteurs
Gully Djamel, Czernic P., Cruveiller S., Mahe F., Longin C., Vallenet D., Francois P., Nidelet S., Rialle S., Giraud Eric, Arrighi Jean-François, DasGupta M., Cartieaux Fabienne
Source
Scientific Reports - Nature, 2018, 8, p. art. 10934 [12 p.] ISSN 2045-2322
Nod factors (NF) were assumed to be indispensable for the establishment of a rhizobium-legume symbiosis until the discovery that certain Bradyrhizobium strains interacting with certain Aeschynomene species lack the canonical nodABC genes required for their synthesis. So far, the molecular dialogue between Aeschynomene and its symbionts remains an open question. Here we report a time course transcriptional analysis of Aeschynomene evenia in response to inoculation with Bradyrhizobium ORS278. The NF-independent symbiotic process was monitored at five time points between bacterial infection and nodule maturity. The five time points correspond to three specific events, root infection by crack entry, nodule organogenesis, and the establishment of the nitrogen fixing process. During the third stage, about 80 NCR-like genes and eight symbiotic genes known to be involved in signaling, bacterial infection or nodulation regulation were highly expressed. Comparative gene expression analyses at the five time points also enabled the selection of genes with an expression profile that makes them promising markers to monitor early plant responses to bacteria. Such markers could be used in bioassays to identify the nature of the bacterial signal(s). Our data represent valuable resources for investigation of this Nod factor-independent symbiosis.
Plan de classement
Biotechnologies [084]
Localisation
Fonds IRD [F B010073654]
Identifiant IRD
fdi:010073654
Contact