Multicellular organisms develop their large variety of cell types from just one single cell, the zygote. Both plants and animals use asymmetric cell division to establish a multicellular body plan How different cell and tissue types are determined, how patterns are created and maintained, and which players are involved, are fundamental questions in developmental biology. Plants grow from their meristems, groups of dividing cells residing at foci of development. Within a meristem, stem cell niches are vital for maintaining the balance between stem cell self-renewal and differentiation. Stem cell divisions in Arabidopsis roots are asymmetric. Each root stem cell division gives rise to a new stem cell and a daughter cell that embarks on a traj...
The primary root of Arabidopsis has a simple cellular organisation. The fixed radial cell pattern re...
SummaryThe formation of different tissue systems in multicellular organisms depends on the activity ...
Asymmetric cell division generates cell types with different fates. Recent studies have improved our...
SummaryCell divisions generating daughter cells different in size, shape, identity, and function are...
Cell divisions generating daughter cells different in size, shape, identity, and function are indisp...
Cell divisions generating daughter cells different in size, shape, identity, and function are indisp...
Cell divisions generating daughter cells different in size, shape, identity, and function are indisp...
Cell divisions generating daughter cells different in size, shape, identity, and function are indisp...
Cell divisions generating daughter cells different in size, shape, identity, and function are indisp...
Cell divisions generating daughter cells different in size, shape, identity, and function are indisp...
SummaryCell divisions generating daughter cells different in size, shape, identity, and function are...
In this thesis I focus on SCHIZORIZA, a gene involved in tissue specification and cell fate segregat...
Asymmetric cell division is an essential and universal mechanism for generating diversity and patter...
SummaryRecently discovered regulators of asymmetric cell division highlight differences in the mecha...
The primary root of Arabidopsis has a simple cellular organisation. The fixed radial cell pattern re...
The primary root of Arabidopsis has a simple cellular organisation. The fixed radial cell pattern re...
SummaryThe formation of different tissue systems in multicellular organisms depends on the activity ...
Asymmetric cell division generates cell types with different fates. Recent studies have improved our...
SummaryCell divisions generating daughter cells different in size, shape, identity, and function are...
Cell divisions generating daughter cells different in size, shape, identity, and function are indisp...
Cell divisions generating daughter cells different in size, shape, identity, and function are indisp...
Cell divisions generating daughter cells different in size, shape, identity, and function are indisp...
Cell divisions generating daughter cells different in size, shape, identity, and function are indisp...
Cell divisions generating daughter cells different in size, shape, identity, and function are indisp...
Cell divisions generating daughter cells different in size, shape, identity, and function are indisp...
SummaryCell divisions generating daughter cells different in size, shape, identity, and function are...
In this thesis I focus on SCHIZORIZA, a gene involved in tissue specification and cell fate segregat...
Asymmetric cell division is an essential and universal mechanism for generating diversity and patter...
SummaryRecently discovered regulators of asymmetric cell division highlight differences in the mecha...
The primary root of Arabidopsis has a simple cellular organisation. The fixed radial cell pattern re...
The primary root of Arabidopsis has a simple cellular organisation. The fixed radial cell pattern re...
SummaryThe formation of different tissue systems in multicellular organisms depends on the activity ...
Asymmetric cell division generates cell types with different fates. Recent studies have improved our...