Abstract During the life cycle, a plant undergoes a series of developmental phase changes. The first phase change is the transition from the initial juvenile vegetative stage into the adult vegetative phase. During the juvenile phase plants produce leaves and axillary buds, whereas during the adult phase the initiation of reproductive structures occurs. The next developmental change is the switch from vegetative to reproductive growth, when the shoot apical meristem acquires the identity of an inflorescence meristem that will then produce floral meristems. Arabidopsis floral meristems produce four concentric whorls of floral organs: sepals, petals, stamens and carpels. Each developmental change is controlled by coordinated network of regula...
[EN] Unravelling the basis of variation in inflorescence architecture is important to understanding ...
Nucleosomes comprise the most basic repeating unit of chromatin and provide hubs for the regulation ...
The timing of reproductive development determines spike architecture and thus yield in temperate gra...
A protein may perform various functions inside a cell through multiple signaling networks and help i...
Over the last decade, the amount of data generated by a single run of a NGS sequencer outperforms d...
Developmental processes are controlled by regulatory networks (GRNs), which are tightly coordinated ...
Size and shape are intrinsic characteristics of any given plant organ and, therefore, are inherently...
Signaling processes mediated by secreted peptides are of eminently importance in cell-cell-communica...
Seed development in flowering plants requires coordination between the two genetically different fer...
Phosphorus (P) is an essential plant macronutrient vital to fundamental metabolic processes. Plant-a...
The flower development of angiosperms is controlled by floral homeotic MIKCC-type MADS-domain transc...
The genes that control mouse embryonic development are tightly regulated spatially and temporally by...
The development of any multicellular organism involves the coordinated expression of different genes...
Post-translational modification of histones play essential roles in the transcriptional regulation o...
Fertilization and seed formation are key events in the life cycle of flowering plants. The seed repr...
[EN] Unravelling the basis of variation in inflorescence architecture is important to understanding ...
Nucleosomes comprise the most basic repeating unit of chromatin and provide hubs for the regulation ...
The timing of reproductive development determines spike architecture and thus yield in temperate gra...
A protein may perform various functions inside a cell through multiple signaling networks and help i...
Over the last decade, the amount of data generated by a single run of a NGS sequencer outperforms d...
Developmental processes are controlled by regulatory networks (GRNs), which are tightly coordinated ...
Size and shape are intrinsic characteristics of any given plant organ and, therefore, are inherently...
Signaling processes mediated by secreted peptides are of eminently importance in cell-cell-communica...
Seed development in flowering plants requires coordination between the two genetically different fer...
Phosphorus (P) is an essential plant macronutrient vital to fundamental metabolic processes. Plant-a...
The flower development of angiosperms is controlled by floral homeotic MIKCC-type MADS-domain transc...
The genes that control mouse embryonic development are tightly regulated spatially and temporally by...
The development of any multicellular organism involves the coordinated expression of different genes...
Post-translational modification of histones play essential roles in the transcriptional regulation o...
Fertilization and seed formation are key events in the life cycle of flowering plants. The seed repr...
[EN] Unravelling the basis of variation in inflorescence architecture is important to understanding ...
Nucleosomes comprise the most basic repeating unit of chromatin and provide hubs for the regulation ...
The timing of reproductive development determines spike architecture and thus yield in temperate gra...