| 2:00 pm - 2:20 pm |
Comparative transcriptomics in Aeschynomene legumes reveals a unique rhizobial infection underlying Nod-independent symbiosis
Comparative transcriptomics in Aeschynomene legumes reveals a unique rhizobial infection underlying Nod-independent symbiosis |
| 2:20 pm - 2:40 pm |
NAD1 Orchestrates Immune Suppression to Enable Rhizobial Intracellular Accommodation during Nodulation
NAD1 Orchestrates Immune Suppression to Enable Rhizobial Intracellular Accommodation during Nodulation |
| 2:40 pm - 3:00 pm |
Across Species and Cell Types: A Single-Cell Atlas for Root Nodule Symbiosis
Across Species and Cell Types: A Single-Cell Atlas for Root Nodule Symbiosis |
| 3:00 pm - 3:10 pm |
The NSP1/NSP2/RHD6La pathway controls the formation of axillary root hairs that mediate rhizobial infection in the tropical legume Aeschynomene Evenia
The NSP1/NSP2/RHD6La pathway controls the formation of axillary root hairs that mediate rhizobial infection in the tropical legume Aeschynomene Evenia |
| 3:10 pm - 3:20 pm |
Novel proteins potentially involved in Sinorhizobium fredii NGR234-Cowpea symbiosis
Involvement of MucR proteins in the Sinorhizobium fredii NGR234 nodulation process |
| 3:20 pm - 3:30 pm |
Dynamics of the Sinorhizobium meliloti genome architecture during symbiotic differentiation
Dynamics of the Sinorhizobium meliloti genome architecture during symbiotic differentiation |