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A Diffusible Factor from Arbuscular Mycorrhizal Fungi Induces Symbiosis-Specific MtENOD11 Expression in Roots ofMedicago truncatula

Authors :
Géraldine Lougnon
Sonja Kosuta
Guillaume Bécard
Mireille Chabaud
Jean Dénarié
David G. Barker
Clare Gough
Source :
Plant Physiology. 131:952-962
Publication Year :
2003
Publisher :
Oxford University Press (OUP), 2003.

Abstract

Using dual cultures of arbuscular mycorrhizal (AM) fungi andMedicago truncatula separated by a physical barrier, we demonstrate that hyphae from germinating spores produce a diffusible factor that is perceived by roots in the absence of direct physical contact. This AM factor elicits expression of the Nod factor-inducible gene MtENOD11, visualized using a pMtENOD11-gusA reporter. Transgene induction occurs primarily in the root cortex, with expression stretching from the zone of root hair emergence to the region of mature root hairs. All AM fungi tested (Gigaspora rosea,Gigaspora gigantea, Gigaspora margarita, and Glomus intraradices) elicit a similar response, whereas pathogenic fungi such as Phythophthora medicaginis, Phoma medicaginis var pinodella andFusarium solani f.sp. phaseoli do not, suggesting that the observed root response is specific to AM fungi. Finally, pMtENOD11-gusA induction in response to the diffusible AM fungal factor is also observed with all threeM. truncatulaNod−/Myc− mutants (dmi1,dmi2, and dmi3), whereas the same mutants are blocked in their response to Nod factor. This positive response of the Nod−/Myc− mutants to the diffusible AM fungal factor and the different cellular localization of pMtENOD11-gusA expression in response to Nod factor versus AM factor suggest that signal transduction occurs via different pathways and that expression of MtENOD11 is differently regulated by the two diffusible factors.

Details

ISSN :
15322548 and 00320889
Volume :
131
Database :
OpenAIRE
Journal :
Plant Physiology
Accession number :
edsair.doi...........4e3b3dafce840ced33a5482bd2851b38
Full Text :
https://doi.org/10.1104/pp.011882