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151. A Medicago truncatula Cystathionine-β-Synthase-like Domain-Containing Protein Is Required for Rhizobial Infection and Symbiotic Nitrogen Fixation.

152. Over-expression of the rice OsAMT1-1 gene increases ammonium uptake and content, but impairs growth and development of plants under high ammonium nutrition

153. Medicago truncatulaDNF2 is aPI‐PLC‐XD‐containing protein required for bacteroid persistence and prevention of nodule early senescence and defense‐like reactions

155. The Integral Membrane Protein SEN1 is Required for Symbiotic Nitrogen Fixation in Lotus japonicus Nodules

161. Vapyrin, a gene essential for intracellular progression of arbuscular mycorrhizal symbiosis, is also essential for infection by rhizobia in the nodule symbiosis of Medicago truncatula

166. Dissection of Symbiosis and Organ Development by Integrated Transcriptome Analysis of Lotus japonicus Mutant and Wild-Type Plants

169. A gene expression atlas of the model legumeMedicago truncatula

170. A community resource for high-throughput quantitative RT-PCR analysis of transcription factor gene expression in Medicago truncatula

171. Identification with Proteomics of Novel Proteins Associated with the Peribacteroid Membrane of Soybean Root Nodules

173. Identification and overexpression of gibberellin 2-oxidase ( GA2ox) in switchgrass ( Panicum virgatum L.) for improved plant architecture and reduced biomass recalcitrance.

178. The Sulfate Transporter SST1 Is Crucial for Symbiotic Nitrogen Fixation in Lotus japonicus Root Nodules

180. Localization of H+-ATPases in soybean root nodules

185. Characterization of Three Functional High-Affinity Ammonium Transporters in Lotus japonicus with Differential Transcriptional Regulation and Spatial Expression

193. Global reprogramming of transcription and metabolism in M edicago truncatula during progressive drought and after rewatering.

194. Lignin Modification Leads to Increased Nodule Numbers in Alfalfa.

196. Legume genomes and discoveries in symbiosis research

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