Arabidopsis leaf growth consists of a complex sequence of interconnected events involving cell division and cell expansion, and requiring multiple levels of genetic regulation. With classical genetics, numerous leaf growth regulators have been identified, but the picture is far from complete. With the recent advances made in quantitative phenotyping, the study of the quantitative, dynamic, and multifactorial features of leaf growth is now facilitated. The use of high-throughput phenotyping technologies to study large numbers of natural accessions or mutants, or to screen for the effects of large sets of chemicals will allow for further identification of the additional players that constitute the leaf growth regulatory networks. Only a tight...
We have analyzed the link between the gene regulation and growth during the early stages of flower d...
International audienceUnderstanding how dynamic molecular networks affect whole-organism physiology,...
International audienceUnderstanding how dynamic molecular networks affect whole-organism physiology,...
We have analyzed the link between the gene regulation and growth during the early stages of flower d...
International audienceWe have analyzed the link between the gene regulation and growth during the ea...
International audienceWe have analyzed the link between the gene regulation and growth during the ea...
International audienceWe have analyzed the link between the gene regulation and growth during the ea...
International audienceWe have analyzed the link between the gene regulation and growth during the ea...
Insight into the genetic control of leaf development has been gained over the last years thanks to m...
Insight into the genetic control of leaf development has been gained over the last years thanks to m...
In Arabidopsis, leaves contribute to the largest part of the aboveground biomass. In these organs, l...
Insight into the genetic control of leaf development has been gained over the last years thanks to m...
In Arabidopsis, leaves contribute to the largest part of the aboveground biomass. In these organs, l...
Understanding how dynamic molecular networks affect whole-organism physiology, analogous to mapping ...
Understanding how dynamic molecular networks affect whole-organism physiology, analogous to mapping ...
We have analyzed the link between the gene regulation and growth during the early stages of flower d...
International audienceUnderstanding how dynamic molecular networks affect whole-organism physiology,...
International audienceUnderstanding how dynamic molecular networks affect whole-organism physiology,...
We have analyzed the link between the gene regulation and growth during the early stages of flower d...
International audienceWe have analyzed the link between the gene regulation and growth during the ea...
International audienceWe have analyzed the link between the gene regulation and growth during the ea...
International audienceWe have analyzed the link between the gene regulation and growth during the ea...
International audienceWe have analyzed the link between the gene regulation and growth during the ea...
Insight into the genetic control of leaf development has been gained over the last years thanks to m...
Insight into the genetic control of leaf development has been gained over the last years thanks to m...
In Arabidopsis, leaves contribute to the largest part of the aboveground biomass. In these organs, l...
Insight into the genetic control of leaf development has been gained over the last years thanks to m...
In Arabidopsis, leaves contribute to the largest part of the aboveground biomass. In these organs, l...
Understanding how dynamic molecular networks affect whole-organism physiology, analogous to mapping ...
Understanding how dynamic molecular networks affect whole-organism physiology, analogous to mapping ...
We have analyzed the link between the gene regulation and growth during the early stages of flower d...
International audienceUnderstanding how dynamic molecular networks affect whole-organism physiology,...
International audienceUnderstanding how dynamic molecular networks affect whole-organism physiology,...