Background Asymmetric cell divisions are formative divisions that generate daughter cells of distinct identity. These divisions are coordinated by either extrinsic (‘niche-controlled’) or intrinsic regulatory mechanisms and are fundamentally important in plant development. Scope This review describes how asymmetric cell divisions are regulated during development and in different cell types in both the root and the shoot of plants. It further highlights ways in which omics and modelling approaches have been used to elucidate these regulatory mechanisms. For example, the regulation of embryonic asymmetric divisions is described, including the first divisions of the zygote, formative vascular divisions and divisions that give rise to the root ...
SummaryDevelopment in multicellular organisms requires the organized generation of differences. A un...
Formative cell divisions are critical for multicellular patterning. In the early plant embryo, such ...
Although little is known about how asymmetric cell division in plants is regulated, recent discoveri...
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...
Background: Asymmetric cell divisions are formative divisions that generate daughter cells of distin...
Plant embryogenesis creates a seedling with a basic body plan. Post-embryonically the seedling elabo...
Asymmetric cell division generates cell types with different fates. Recent studies have improved our...
Plants are made up of a large number of distinct cell types that originate from a single fertilized ...
Premitotic control of cell division orientation is critical for plant development, as cell walls pre...
Asymmetric cell division generates cell types with different specialized functions or fates. This ty...
Asymmetric cell division generates two cells with different fates and has an important role in plant...
Land plants can grow to exceptional body sizes, with the most complex specialized structures. Direct...
Formative cell divisions are critical for multicellular patterning. In the early plant embryo, such ...
SummaryFormative cell divisions are critical for multicellular patterning. In the early plant embryo...
SummaryDevelopment in multicellular organisms requires the organized generation of differences. A un...
Formative cell divisions are critical for multicellular patterning. In the early plant embryo, such ...
Although little is known about how asymmetric cell division in plants is regulated, recent discoveri...
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...
Background: Asymmetric cell divisions are formative divisions that generate daughter cells of distin...
Plant embryogenesis creates a seedling with a basic body plan. Post-embryonically the seedling elabo...
Asymmetric cell division generates cell types with different fates. Recent studies have improved our...
Plants are made up of a large number of distinct cell types that originate from a single fertilized ...
Premitotic control of cell division orientation is critical for plant development, as cell walls pre...
Asymmetric cell division generates cell types with different specialized functions or fates. This ty...
Asymmetric cell division generates two cells with different fates and has an important role in plant...
Land plants can grow to exceptional body sizes, with the most complex specialized structures. Direct...
Formative cell divisions are critical for multicellular patterning. In the early plant embryo, such ...
SummaryFormative cell divisions are critical for multicellular patterning. In the early plant embryo...
SummaryDevelopment in multicellular organisms requires the organized generation of differences. A un...
Formative cell divisions are critical for multicellular patterning. In the early plant embryo, such ...
Although little is known about how asymmetric cell division in plants is regulated, recent discoveri...