Heterotrimeric G-protein subunits regulate plant architecture, pod development, seed size, and symbiotic nodulation in <i>Medicago truncatula</i>. [PDF]
Sun F +5 more
europepmc +1 more source
Genome-Wide Characterization and Analysis of the <i>FH</i> Gene Family in <i>Medicago truncatula</i> Under Abiotic Stresses. [PDF]
Wang J, Zhou C.
europepmc +1 more source
TML1 and TML2 synergistically regulate nodulation and affect arbuscular mycorrhiza in Medicago truncatula. [PDF]
Chaulagain D +5 more
europepmc +1 more source
Correction: The Defective in Autoregulation (DAR) gene of Medicago truncatula encodes a protein involved in regulating nodulation and arbuscular mycorrhiza. [PDF]
Schnabel E +8 more
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Medicago truncatula genotype drives the plant nutritional strategy and its associated rhizosphere bacterial communities. [PDF]
Zancarini A +6 more
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Medicago PhosphoProtein Database: a repository for Medicago truncatula phosphoprotein data [PDF]
The ability of legume crops to fix atmospheric nitrogen via a symbiotic association with soil rhizobia makes them an essential component of many agricultural systems. Initiation of this symbiosis requires protein phosphorylation-mediated signaling in response to rhizobial signals named Nod factors. Medicago truncatula (Medicago) is the model system for
Muthusubramanian Venkateshwaran +2 more
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Comparative studies on tolerance of Medicago truncatula and Medicago falcata to freezing
Planta, 2011Medicago falcata is a legume species that exhibits great capacity of tolerance to abiotic stresses. To elucidate the mechanism underlying tolerance of M. falcata to freezing, we compared the characteristics of M. falcata in response to cold acclimation and freezing with those of the legume model plant Medicago truncatula. M. falcata seedlings were more
Zhang Wen-Hao
exaly +3 more sources
Medicago truncatula proteomics
Journal of Proteomics, 2010Legumes (Fabaceae) are unique in their ability to enter into an elaborate symbiosis with nitrogen-fixing rhizobial bacteria. Rhizobia-legume (RL) symbiosis represents one of the most productive nitrogen-fixing systems and effectively renders the host plants to be more or less independent of other nitrogen sources.
Frank, Colditz, Hans-Peter, Braun
openaire +2 more sources
A Snapshot of Functional Genetic Studies in Medicago truncatula [PDF]
In the current context of food security, increase of plant protein production in a sustainable manner represents one of the major challenges of agronomic research, which could be partially resolved by increased cultivation of legume crops. Medicago truncatula is now a well-established model for legume genomic and genetic studies. With the establishment
Yun Kang +2 more
exaly +7 more sources

