Baier MC, Barsch A, Kuester H, Hohnjec N. Antisense repression of the Medicago truncatula nodule-enhanced sucrose synthase leads to a handicapped nitrogen fixation mirrored by specific alterations in the symbiotic transcriptome and metabolome(1[W]). PLANT PHYSIOLOGY. 2007;145(4):1600-1618.We analyzed the role of the sucrose (Suc) synthase MtSucS1 during nodulation of the model legume Medicago truncatula, integrating data for the developmental, transcriptional, and metabolic processes affected downstream of an impaired Suc cleavage in root nodules. To reduce carbohydrate supply to nodule tissues, transgenic plants expressing a p35S-driven MtSucS1antisense fusion were constructed. These plants displayed an up to 90% reduction of MtSucS1 prote...
Transgenic Medicago truncatula plants were produced harboring chimeric gene constructs of the glutam...
Thanks to the symbiotic interaction with rhizobia many legumes are important natural fertilizers and...
The root system architecture is crucial to adapt plant growth to changing soil environmental conditi...
Hohnjec N, Becker JD, Pühler A, Perlick AM, Küster H. Genomic organization and expression properties...
Glutamine synthetase (GS) is a vital enzyme for the assimilation of ammonia into amino acids in high...
Baier M. Symbiotic gene expression in the model legume Medicago truncatula: the sucrose synthase MtS...
Hohnjec N, Perlick AM, Pühler A, Küster H. The Medicago truncatula sucrose synthase gene MtSucS1 is ...
Sucrose synthase is central to carbon metabolism in roots and nodules of legumes. In order to analyz...
The symbiotic association between Medicago truncatula and Sinorhizobium meliloti is a well-establish...
Regulation of symbiotic nitrogen fixation (SNF) during drought stress is complex and not yet fully u...
International audienceIn legumes interacting with rhizobia, the formation of symbiotic organs involv...
In symbiotic root nodules of legumes, terminally differentiated rhizobia fix atmospheric N-2 produci...
Regulation of symbiotic nitrogen fixation (SNF) during drought stress is complex and not yet fully u...
International audienceAdaptation of Medicago truncatula to local nitrogen (N) limitation was investi...
Leguminous plants are able to fix nitrogen by establishing a symbiotic relationship with soil dwelli...
Transgenic Medicago truncatula plants were produced harboring chimeric gene constructs of the glutam...
Thanks to the symbiotic interaction with rhizobia many legumes are important natural fertilizers and...
The root system architecture is crucial to adapt plant growth to changing soil environmental conditi...
Hohnjec N, Becker JD, Pühler A, Perlick AM, Küster H. Genomic organization and expression properties...
Glutamine synthetase (GS) is a vital enzyme for the assimilation of ammonia into amino acids in high...
Baier M. Symbiotic gene expression in the model legume Medicago truncatula: the sucrose synthase MtS...
Hohnjec N, Perlick AM, Pühler A, Küster H. The Medicago truncatula sucrose synthase gene MtSucS1 is ...
Sucrose synthase is central to carbon metabolism in roots and nodules of legumes. In order to analyz...
The symbiotic association between Medicago truncatula and Sinorhizobium meliloti is a well-establish...
Regulation of symbiotic nitrogen fixation (SNF) during drought stress is complex and not yet fully u...
International audienceIn legumes interacting with rhizobia, the formation of symbiotic organs involv...
In symbiotic root nodules of legumes, terminally differentiated rhizobia fix atmospheric N-2 produci...
Regulation of symbiotic nitrogen fixation (SNF) during drought stress is complex and not yet fully u...
International audienceAdaptation of Medicago truncatula to local nitrogen (N) limitation was investi...
Leguminous plants are able to fix nitrogen by establishing a symbiotic relationship with soil dwelli...
Transgenic Medicago truncatula plants were produced harboring chimeric gene constructs of the glutam...
Thanks to the symbiotic interaction with rhizobia many legumes are important natural fertilizers and...
The root system architecture is crucial to adapt plant growth to changing soil environmental conditi...