To investigate whether the transcriptional response to carbon (C) depletion and sucrose resupply depends on the duration and severity of the C depletion, Arabidopsis seedlings were grown in liquid culture and harvested 3, 6, 12, 24, 48 and 72 h after removing sucrose from the medium and 30 min after resupplying sucrose at each time. Expression profiling revealed early transcriptional inhibition of cell wall synthesis and remodelling of signalling, followed by induction of C recycling and photosynthesis and general inhibition of growth. The temporal sequence differed from the published response to progressive exhaustion of C during a night and extended night in vegetatively growing plants. The response to sucrose readdition was conserved acr...
Plant growth and development are tightly controlled by photosynthetic carbon availability. The under...
International audiencePlant growth and development are tightly controlled by photosynthetic carbon a...
SUMMARY The acclimation of plants to changes in light intensity requires rapid responses at several ...
The balance between the supply and utilization of carbon (C) changes continually. It has been propos...
The balance between the supply and utilization of carbon (C) changes continually. It has been propos...
International audiencePlants alternate between a net surplus of carbon in the light and a net defici...
Senescence is genetically controlled and activated in mature tissues during aging. However, immature...
Senescence is genetically controlled and activated in mature tissues during aging. However, immature...
Senescence is genetically controlled and activated in mature tissues during aging. However, immature...
Senescence is genetically controlled and activated in mature tissues during aging. However, immature...
Senescence is genetically controlled and activated in mature tissues during aging. However, immature...
Senescence is genetically-controlled and activated in mature tissues during ageing. However, immatur...
Already a proven mechanism for drought resilience, crassulacean acid metabolism (CAM) is a specializ...
Already a proven mechanism for drought resilience, crassulacean acid metabolism (CAM) is a specializ...
Photosynthetic carbon metabolism was investigated in antisense Arabidopsis lines with decreased expr...
Plant growth and development are tightly controlled by photosynthetic carbon availability. The under...
International audiencePlant growth and development are tightly controlled by photosynthetic carbon a...
SUMMARY The acclimation of plants to changes in light intensity requires rapid responses at several ...
The balance between the supply and utilization of carbon (C) changes continually. It has been propos...
The balance between the supply and utilization of carbon (C) changes continually. It has been propos...
International audiencePlants alternate between a net surplus of carbon in the light and a net defici...
Senescence is genetically controlled and activated in mature tissues during aging. However, immature...
Senescence is genetically controlled and activated in mature tissues during aging. However, immature...
Senescence is genetically controlled and activated in mature tissues during aging. However, immature...
Senescence is genetically controlled and activated in mature tissues during aging. However, immature...
Senescence is genetically controlled and activated in mature tissues during aging. However, immature...
Senescence is genetically-controlled and activated in mature tissues during ageing. However, immatur...
Already a proven mechanism for drought resilience, crassulacean acid metabolism (CAM) is a specializ...
Already a proven mechanism for drought resilience, crassulacean acid metabolism (CAM) is a specializ...
Photosynthetic carbon metabolism was investigated in antisense Arabidopsis lines with decreased expr...
Plant growth and development are tightly controlled by photosynthetic carbon availability. The under...
International audiencePlant growth and development are tightly controlled by photosynthetic carbon a...
SUMMARY The acclimation of plants to changes in light intensity requires rapid responses at several ...