Publications des scientifiques de l'IRD

Bournaud C., James E. K., de Faria S. M., Lebrun Michel, Melkonian R., Duponnois Robin, Tisseyre Pierre, Moulin Lionel, Prin Y. (2018). Interdependency of efficient nodulation and arbuscular mycorrhization in Piptadenia gonoacantha, a Brazilian legume tree. Plant Cell and Environment, 41 (9), p. 2008-2020. ISSN 0140-7791.

Titre du document
Interdependency of efficient nodulation and arbuscular mycorrhization in Piptadenia gonoacantha, a Brazilian legume tree
Année de publication
2018
Type de document
Article référencé dans le Web of Science WOS:000442221200006
Auteurs
Bournaud C., James E. K., de Faria S. M., Lebrun Michel, Melkonian R., Duponnois Robin, Tisseyre Pierre, Moulin Lionel, Prin Y.
Source
Plant Cell and Environment, 2018, 41 (9), p. 2008-2020 ISSN 0140-7791
Tripartite interactions between legumes and their root symbionts (rhizobia and arbuscular mycorrhizal fungi, AMF) are poorly understood, although it is well established that only specific combinations of symbionts lead to optimal plant growth. A classic example in which to investigate such interactions is the Brazilian legume tree Piptadenia gonoacantha (Caesalpinioideae), for which efficient nodulation has been described as dependent on the presence of AMF symbiosis. In this study, we compared the nodulation behaviour of several rhizobial strains with or without AMF inoculation, and performed analyses on nodulation, nodule cytology, N-fixing efficiency, and plant growth response. Nodulation of P.gonoacantha does not rely on the presence of AMF, but mycorrhization was rhizobial strain-dependent, and nodule effectiveness and plant growth were dependent on the presence of specific combinations of rhizobial strains and AMF. The co-occurrence of both symbionts within efficient nodules and the differentiation of bacteroids within nodule cells were also demonstrated. Novel close interactions and interdependency for the establishment and/or functioning of these symbioses were also revealed in Piptadenia, thanks to immunocytochemical analyses. These data are discussed in terms of the evolutionary position of the newly circumscribed mimosoid clade within the Caesalpinioid subfamily and its relative proximity to non-nodulated (but AMF-associated) basal subfamilies. The context of this work is based on the observation that among the Caesalpinioideae, in a basal position of the legume phylogeny, are grouped together, nodulated and non-nodulated clades of plants. All these plants are considered to be arbuscular mycorrhizal (AM), so we focused our attention on a group that includes the genus Piptadenia for which nodulation efficiency has been previously suggested to be directly linked to the presence of the AM symbiosis, taking into consideration the evolutionary relationship between both AM and rhizobial symbioses. On the nodulated tree Piptadenia gonoacantha, our hypothesis was that for optimum efficiency both nitrogen-fixing and AM symbioses have to share a common niche to closely interact with each other, that is, the nodule. We showed that both symbioses not only coexist, but that they interdependently exist, with both microsymbionts interacting to specifically promote the establishment or functioning of the other, and then leading to improved growth of the host plant.
Plan de classement
Sciences du monde végétal [076] ; Biotechnologies [084]
Description Géographique
BRESIL
Localisation
Fonds IRD [F B010073803]
Identifiant IRD
fdi:010073803
Contact