Formative cell divisions are critical for multicellular patterning. In the early plant embryo, such divisions follow from orienting the division plane. A major unanswered question is how division plane orientation is genetically controlled, and in particular whether this relates to cell geometry. We have generated a complete 4D map of early Arabidopsis embryogenesis and used computational analysis to demonstrate that several divisions follow a rule that uses the smallest wall area going through the center of the cell. In other cases, however, cell division clearly deviates from this rule, which invariably leads to asymmetric cell division. By analyzing mutant embryos and through targeted genetic perturbation, we show that response to the ho...
Plant tissue architecture and organ morphogenesis rely on the proper orientation of cell divisions. ...
Land plants can grow to exceptional body sizes, with the most complex specialized structures. Direct...
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 ...
Formative cell divisions are critical for multicellular patterning. In the early plant embryo, such ...
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...
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...
Premitotic control of cell division orientation is critical for plant development, as cell walls pre...
Multicellular plant development requires strict control of cell division orientation. A key unanswer...
Multicellular plant development requires strict control of cell division orientation. A key unanswer...
Multicellular plant development requires strict control of cell division orientation. A key unanswer...
Plant tissue architecture and organ morphogenesis rely on the proper orientation of cell divisions. ...
Plant tissue architecture and organ morphogenesis rely on the proper orientation of cell divisions. ...
Plant tissue architecture and organ morphogenesis rely on the proper orientation of cell divisions. ...
Land plants can grow to exceptional body sizes, with the most complex specialized structures. Direct...
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 ...
Formative cell divisions are critical for multicellular patterning. In the early plant embryo, such ...
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...
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...
Premitotic control of cell division orientation is critical for plant development, as cell walls pre...
Multicellular plant development requires strict control of cell division orientation. A key unanswer...
Multicellular plant development requires strict control of cell division orientation. A key unanswer...
Multicellular plant development requires strict control of cell division orientation. A key unanswer...
Plant tissue architecture and organ morphogenesis rely on the proper orientation of cell divisions. ...
Plant tissue architecture and organ morphogenesis rely on the proper orientation of cell divisions. ...
Plant tissue architecture and organ morphogenesis rely on the proper orientation of cell divisions. ...
Land plants can grow to exceptional body sizes, with the most complex specialized structures. Direct...
Land plants can grow to exceptional body sizes, with the most complex specialized structures. Direct...