Asymmetric cell division generates two cells with different fates and has an important role in plant development. It produces distinct cell types and new organs, and maintains stem cell niches. To handle the constraints of having immobile cells, plants possess numerous unique features to obtain asymmetry, such as specific regulators of intrinsic polarity. Although several components have not yet been identified, new findings, together with knowledge from different developmental systems, now allow us to take an important step towards a mechanistic overview of asymmetric cell division in plants and algae. Strikingly, several key regulators are used for different developmental processes, and common mechanisms can be recognized
BackgroundAsymmetric cell divisions are formative divisions that generate daughter cells of distinct...
In unicellular and multicellular organisms, cell polarity is essential for a wide range of biologica...
The orientation of cell division is a major determinant of plant morphogenesis. In spite of consider...
Asymmetric cell division generates two cells with different fates and has an important role in plant...
All complex multicellular organisms must solve the problem of generating diverse and appropriately p...
Asymmetric cell division generates cell types with different specialized functions or fates. This ty...
Although little is known about how asymmetric cell division in plants is regulated, recent discoveri...
Although little is known about how asymmetric cell division in plants is regulated, recent discoveri...
Plant embryogenesis creates a seedling with a basic body plan. Post-embryonically the seedling elabo...
SummaryDevelopment in multicellular organisms requires the organized generation of differences. A un...
Asymmetric cell division generates cell types with different fates. Recent studies have improved our...
A central question in biology is how cell fate is specified during development of a multicellular or...
Organisms as diverse as bacteria, fungi, plants, and animals manifest a property called polarity. ...
Background: Asymmetric cell divisions are formative divisions that generate daughter cells of distin...
Background Asymmetric cell divisions are formative divisions that generate daughter cells of distinc...
BackgroundAsymmetric cell divisions are formative divisions that generate daughter cells of distinct...
In unicellular and multicellular organisms, cell polarity is essential for a wide range of biologica...
The orientation of cell division is a major determinant of plant morphogenesis. In spite of consider...
Asymmetric cell division generates two cells with different fates and has an important role in plant...
All complex multicellular organisms must solve the problem of generating diverse and appropriately p...
Asymmetric cell division generates cell types with different specialized functions or fates. This ty...
Although little is known about how asymmetric cell division in plants is regulated, recent discoveri...
Although little is known about how asymmetric cell division in plants is regulated, recent discoveri...
Plant embryogenesis creates a seedling with a basic body plan. Post-embryonically the seedling elabo...
SummaryDevelopment in multicellular organisms requires the organized generation of differences. A un...
Asymmetric cell division generates cell types with different fates. Recent studies have improved our...
A central question in biology is how cell fate is specified during development of a multicellular or...
Organisms as diverse as bacteria, fungi, plants, and animals manifest a property called polarity. ...
Background: Asymmetric cell divisions are formative divisions that generate daughter cells of distin...
Background Asymmetric cell divisions are formative divisions that generate daughter cells of distinc...
BackgroundAsymmetric cell divisions are formative divisions that generate daughter cells of distinct...
In unicellular and multicellular organisms, cell polarity is essential for a wide range of biologica...
The orientation of cell division is a major determinant of plant morphogenesis. In spite of consider...