Evolution of Lipochitooligosaccharide Binding to a LysM-RLK for Nodulation in Medicago truncatula - INRAE - Institut national de recherche pour l’agriculture, l’alimentation et l’environnement Accéder directement au contenu
Article Dans Une Revue Plant and Cell Physiology Année : 2023

Evolution of Lipochitooligosaccharide Binding to a LysM-RLK for Nodulation in Medicago truncatula

Résumé

Lysin motif receptor–like kinases (LysM-RLKs) are involved in the perception of chitooligosaccharides (COs) and related lipochitooligosaccharides (LCOs) in plants. Expansion and divergence of the gene family during evolution have led to various roles in symbiosis and defense. By studying proteins of the LYR-IA subclass of LysM-RLKs of the Poaceae, we show here that they are high-affinity LCO-binding proteins with a lower affinity for COs, consistent with a role in LCO perception to establish arbuscular mycorrhiza (AM). In Papilionoid legumes, whole-genome duplication has resulted in two LYR-IA paralogs, MtLYR1 and MtNFP in Medicago truncatula, with MtNFP playing an essential role in root nodule symbiosis with nitrogen-fixing rhizobia. We show that MtLYR1 has retained the ancestral LCO-binding characteristic and is dispensable for AM. Domain swapping between the three LysMs of MtNFP and MtLYR1 and mutagenesis in MtLYR1 suggest that the MtLYR1 LCO-binding site is on the second LysM and that divergence in MtNFP led to better nodulation, but surprisingly with decreased LCO binding. These results suggest that divergence of the LCO-binding site has been important for the evolution of a role of MtNFP in nodulation with rhizobia.
Fichier principal
Vignette du fichier
Lefebvre_accepted_HAL.pdf (2.03 Mo) Télécharger le fichier
Origine : Fichiers produits par l'(les) auteur(s)

Dates et versions

hal-04131801 , version 1 (11-10-2023)

Licence

Copyright (Tous droits réservés)

Identifiants

Citer

Julie Cullimore, Judith Fliegmann, Virginie Gasciolli, Chrystel Gibelin-Viala, Noémie Carles, et al.. Evolution of Lipochitooligosaccharide Binding to a LysM-RLK for Nodulation in Medicago truncatula. Plant and Cell Physiology, 2023, ⟨10.1093/pcp/pcad033⟩. ⟨hal-04131801⟩
96 Consultations
31 Téléchargements

Altmetric

Partager

Gmail Facebook X LinkedIn More