Background: Trees belonging to the Casuarinaceae and Betulaceae families play an important ecological role and are useful tools in forestry for degraded land rehabilitation and reforestation. These functions are linked to their capacity to establish symbiotic relationships with a nitrogen-fixing soil bacterium of the genus Frankia. However, the molecular mechanisms controlling the establishment of these symbioses are poorly understood. The aim of this work was to identify potential transcription factors involved in the establishment and functioning of actinorhizal symbioses. Results: We identified 202 putative transcription factors by in silico analysis in 40 families in Casuarina glauca (Casuarinaceae) and 195 in 35 families in Alnus glut...
Actinorhizal multilobe nodules are induced by actinomycetes of the genus Frankia on the roots of sev...
Actinorhizal multilobe nodules are induced by actinomycetes of the genus Frankia on the roots of sev...
International audienceThe actinobacteria Frankia spp. are able to induce the formation of nodules on...
Background: Trees belonging to the Casuarinaceae and Betulaceae families play an important ecologica...
Comparative transcriptomics of two actinorhizal symbiotic plants, Casuarina glauca and Alnus glutino...
L'article original est publié par The American Society of Plant BiologistsInternational audienceComp...
Casuarina glauca is a fast-growing multipurpose tree belonging to the Casuarinaceae family and nativ...
Plants that can be nodulated by actinomycetes of the genus Frankia are collectively called actinorhi...
The Casuarinaceae family is a group of 96 species of trees and shrubs that are tolerant to adverse s...
Plants that can be nodulated by actinomycetes of the genus Frankia are collectively called actinorhi...
International audienceActinorhizal root nodules result from the interaction between a nitrogen-fixin...
Actinorhizal plants are capable of high rates of nitrogen fixation, due to their capacity to establi...
Actinorhizal hosts are non-leguminous perennial plants belonging to 8 angiosperm families. They are ...
Actinorhizal plants are able to establish a symbiotic relationship with Frankia bacteria leading to ...
Actinorhizal multilobe nodules are induced by actinomycetes of the genus Frankia on the roots of sev...
Actinorhizal multilobe nodules are induced by actinomycetes of the genus Frankia on the roots of sev...
International audienceThe actinobacteria Frankia spp. are able to induce the formation of nodules on...
Background: Trees belonging to the Casuarinaceae and Betulaceae families play an important ecologica...
Comparative transcriptomics of two actinorhizal symbiotic plants, Casuarina glauca and Alnus glutino...
L'article original est publié par The American Society of Plant BiologistsInternational audienceComp...
Casuarina glauca is a fast-growing multipurpose tree belonging to the Casuarinaceae family and nativ...
Plants that can be nodulated by actinomycetes of the genus Frankia are collectively called actinorhi...
The Casuarinaceae family is a group of 96 species of trees and shrubs that are tolerant to adverse s...
Plants that can be nodulated by actinomycetes of the genus Frankia are collectively called actinorhi...
International audienceActinorhizal root nodules result from the interaction between a nitrogen-fixin...
Actinorhizal plants are capable of high rates of nitrogen fixation, due to their capacity to establi...
Actinorhizal hosts are non-leguminous perennial plants belonging to 8 angiosperm families. They are ...
Actinorhizal plants are able to establish a symbiotic relationship with Frankia bacteria leading to ...
Actinorhizal multilobe nodules are induced by actinomycetes of the genus Frankia on the roots of sev...
Actinorhizal multilobe nodules are induced by actinomycetes of the genus Frankia on the roots of sev...
International audienceThe actinobacteria Frankia spp. are able to induce the formation of nodules on...