Plants maintain pools of totipotent stem cells throughout their entire life. These stem cells are embedded within specialized tissues called meristems, which form the growing points of the organism. The shoot apical meristem of the reference plant Arabidopsis thaliana is subdivided into several distinct domains, which execute diverse biological functions, such as tissue organization, cell-proliferation and differentiation. The number of cells required for growth and organ formation changes over the course of a plants life, while the structure of the meristem remains remarkably constant. Thus, regulatory systems must be in place, which allow for an adaptation of cell proliferation within the shoot apical meristem, while maintaining the organ...
The shoot apical meristem of Arabidopsis thaliana is an example of a developmental system which can ...
Cell size and growth kinetics are fundamental cellular properties with important physiological impli...
Coordination of fate transition and cell division is crucial to maintain the plant architecture and ...
Plants maintain pools of totipotent stem cells throughout their entire life. These stem cells are em...
Plants maintain pools of totipotent stem cells throughout their entire life. These stem cells are em...
Plants maintain stem cells in their meristems as a source for new undifferentiated cells throughout ...
Plants maintain stem cells in their meristems as a source for new undifferentiated cells throughout ...
Plants maintain stem cells in their meristems as a source for new undifferentiated cells throughout ...
One of the fundamental differences between plant and animal development is that plants produce new o...
One of the fundamental differences between plant and animal development is that plants produce new o...
Cell size and growth kinetics are fundamental cellular properties with important physiological impli...
Stem cells in the plant shoot are maintained via a gene regulatory feedback network, and perturbatio...
Plant post-embryonic development takes place in the meristems. In the root of the model plant Arabid...
The shoot apical meristem of Arabidopsis thaliana is an example of a developmental system which can ...
Cell size and growth kinetics are fundamental cellular properties with important physiological impli...
The shoot apical meristem of Arabidopsis thaliana is an example of a developmental system which can ...
Cell size and growth kinetics are fundamental cellular properties with important physiological impli...
Coordination of fate transition and cell division is crucial to maintain the plant architecture and ...
Plants maintain pools of totipotent stem cells throughout their entire life. These stem cells are em...
Plants maintain pools of totipotent stem cells throughout their entire life. These stem cells are em...
Plants maintain stem cells in their meristems as a source for new undifferentiated cells throughout ...
Plants maintain stem cells in their meristems as a source for new undifferentiated cells throughout ...
Plants maintain stem cells in their meristems as a source for new undifferentiated cells throughout ...
One of the fundamental differences between plant and animal development is that plants produce new o...
One of the fundamental differences between plant and animal development is that plants produce new o...
Cell size and growth kinetics are fundamental cellular properties with important physiological impli...
Stem cells in the plant shoot are maintained via a gene regulatory feedback network, and perturbatio...
Plant post-embryonic development takes place in the meristems. In the root of the model plant Arabid...
The shoot apical meristem of Arabidopsis thaliana is an example of a developmental system which can ...
Cell size and growth kinetics are fundamental cellular properties with important physiological impli...
The shoot apical meristem of Arabidopsis thaliana is an example of a developmental system which can ...
Cell size and growth kinetics are fundamental cellular properties with important physiological impli...
Coordination of fate transition and cell division is crucial to maintain the plant architecture and ...