Recent studies in yeast, animals and plants have provided major breakthroughs in unraveling the molecular mechanism of higher-order gene regulation. In conjunction with the DNA code, proteins that are involved in chromatin remodeling, histone modification and epigenetic imprinting form a large network of interactions that control the nuclear programming of cell identity. New insight into how chromatin conformations are regulated in plants sheds light on the relationships between chromosome function, cell differentiation and developmental patterns
Plants are sessile organisms that must constantly adjust to their environment. In contrast to animal...
Genetic information in the cell nucleus controls organismal development, responses to the environmen...
The finely regulated series of events that span from the birth of a cell to the production of two ne...
Recent studies in yeast, animals and plants have provided major breakthroughs in unraveling the mole...
International audienceIn plants, environment-adaptable organogenesis extends throughout the lifespan...
International audienceThe plant life cycle involves a series of developmental phase transitions. The...
International audienceThe plant life cycle involves a series of developmental phase transitions. The...
International audienceThe plant life cycle involves a series of developmental phase transitions. The...
AbstractStudies in organisms belonging to different eukaryotic kingdoms have revealed that the struc...
A large number of recent studies have demonstrated that many important aspects of plant development ...
International audienceThe three-dimensional organization of the eukaryotic nucleus and its chromosom...
CRISPR-based epigenome editing uses dCas9 as a platform to recruit transcription or chromatin regula...
Abstract Chromatin is not a uniform macromolecular entity; it contains different domains characteriz...
Genetic information in the cell nucleus controls organismal development, responses to the environmen...
Genetic information in the cell nucleus controls organismal development, responses to the environmen...
Plants are sessile organisms that must constantly adjust to their environment. In contrast to animal...
Genetic information in the cell nucleus controls organismal development, responses to the environmen...
The finely regulated series of events that span from the birth of a cell to the production of two ne...
Recent studies in yeast, animals and plants have provided major breakthroughs in unraveling the mole...
International audienceIn plants, environment-adaptable organogenesis extends throughout the lifespan...
International audienceThe plant life cycle involves a series of developmental phase transitions. The...
International audienceThe plant life cycle involves a series of developmental phase transitions. The...
International audienceThe plant life cycle involves a series of developmental phase transitions. The...
AbstractStudies in organisms belonging to different eukaryotic kingdoms have revealed that the struc...
A large number of recent studies have demonstrated that many important aspects of plant development ...
International audienceThe three-dimensional organization of the eukaryotic nucleus and its chromosom...
CRISPR-based epigenome editing uses dCas9 as a platform to recruit transcription or chromatin regula...
Abstract Chromatin is not a uniform macromolecular entity; it contains different domains characteriz...
Genetic information in the cell nucleus controls organismal development, responses to the environmen...
Genetic information in the cell nucleus controls organismal development, responses to the environmen...
Plants are sessile organisms that must constantly adjust to their environment. In contrast to animal...
Genetic information in the cell nucleus controls organismal development, responses to the environmen...
The finely regulated series of events that span from the birth of a cell to the production of two ne...