Plants assimilate carbon in their photosynthetic tissues in the light. However, carbon is required during the night and in nonphotosynthetic organs. It is therefore essential that plants manage their carbon resources spatially and temporally and coordinate growth with carbon availability. In growing maize (Zea mays) leaf blades, a defined developmental gradient facilitates analyses in the cell division, elongation, and mature zones. We investigated the responses of the metabolome and transcriptome and polysome loading, as a qualitative proxy for protein synthesis, at dusk, dawn, and 6, 14, and 24 h into an extended night, and tracked whole-leaf elongation over this time course. Starch and sugars are depleted by dawn in the mature zone, but ...
For many plants, growth in elevated CO2 leads to reduced rates of photosynthesis. To examine the rol...
Background Abiotic stress causes disturbances in the cellular homeostasis. Re-adjustment of balance ...
Plants need to avoid carbon starvation and resultant growth inhibition under fluctuating light envir...
Plants assimilate carbon in their photosynthetic tissues in the light. However, carbon is required d...
International audiencePlants alternate between a net surplus of carbon in the light and a net defici...
The balance between the supply and utilization of carbon (C) changes continually. It has been propos...
Diurnal cycles provide a tractable system to study the response of metabolism and growth to fluctuat...
Plant leaves exhibit differentiated patterns of photosynthesis rates under diurnal light regulation....
UMR BFP - Equipe MétabolismeInternational audienceMaize can grow in cool temperate climates but is o...
Energy resources in plants are managed in continuously changing environments, such as changes occurr...
We systematically analyzed a developmental gradient of the third maize (Zea mays) leaf from the poin...
Energy resources in plants are managed in continuously changing environments, such as changes occurr...
The responses of C3 plants to rising atmospheric CO2 levels are considered to be largely dependent o...
Endogenous regulation of translocation and of carbon partitioning, major factors for integrating pla...
International audienceIn plants, the partitioning of carbon resources between growth and defense is ...
For many plants, growth in elevated CO2 leads to reduced rates of photosynthesis. To examine the rol...
Background Abiotic stress causes disturbances in the cellular homeostasis. Re-adjustment of balance ...
Plants need to avoid carbon starvation and resultant growth inhibition under fluctuating light envir...
Plants assimilate carbon in their photosynthetic tissues in the light. However, carbon is required d...
International audiencePlants alternate between a net surplus of carbon in the light and a net defici...
The balance between the supply and utilization of carbon (C) changes continually. It has been propos...
Diurnal cycles provide a tractable system to study the response of metabolism and growth to fluctuat...
Plant leaves exhibit differentiated patterns of photosynthesis rates under diurnal light regulation....
UMR BFP - Equipe MétabolismeInternational audienceMaize can grow in cool temperate climates but is o...
Energy resources in plants are managed in continuously changing environments, such as changes occurr...
We systematically analyzed a developmental gradient of the third maize (Zea mays) leaf from the poin...
Energy resources in plants are managed in continuously changing environments, such as changes occurr...
The responses of C3 plants to rising atmospheric CO2 levels are considered to be largely dependent o...
Endogenous regulation of translocation and of carbon partitioning, major factors for integrating pla...
International audienceIn plants, the partitioning of carbon resources between growth and defense is ...
For many plants, growth in elevated CO2 leads to reduced rates of photosynthesis. To examine the rol...
Background Abiotic stress causes disturbances in the cellular homeostasis. Re-adjustment of balance ...
Plants need to avoid carbon starvation and resultant growth inhibition under fluctuating light envir...