SummaryCell-to-cell communication coordinates the behavior of individual cells to establish organ patterning and development. Although mobile signals are known to be important in lateral root development, the role of plasmodesmata (PD)-mediated transport in this process has not been investigated. Here, we show that changes in symplastic connectivity accompany and regulate lateral root organogenesis in Arabidopsis. This connectivity is dependent upon callose deposition around PD affecting molecular flux through the channel. Two plasmodesmal-localized β-1,3 glucanases (PdBGs) were identified that regulate callose accumulation and the number and distribution of lateral roots. The fundamental role of PD-associated callose in this process was il...
Lateral roots are formed postembryonically and determine the final shape of the root system, a deter...
Lateral roots (LRs) are crucial for increasing the surface area of root systems to explore heterogen...
SummaryIn plants, auxin functions as a master controller of development, pattern formation, morphoge...
Cell-to-cell communication coordinates the behavior of individual cells to establish organ patternin...
SummaryCell-to-cell communication coordinates the behavior of individual cells to establish organ pa...
Root growth is critical for the effective exploitation of the rhizosphere and productive plant growt...
SummaryPlant cells are connected through plasmodesmata (PD), membrane-lined channels that allow symp...
Plasmodesmata (PD) are cytoplasmic channels that connect neighboring cells for cell-to-cell communic...
The formation of lateral root primordia along the main root axis is controlled by interconnected sig...
Plasmodesmata (PD) are cytoplasmic channels that connect neighboring cells for cell-to-cell communic...
Plant cells are connected through plasmodesmata (PD), membrane-lined channels that allow symplastic ...
In plant development, cell-to-cell signaling is mediated by mobile signals, including transcription ...
Thesis (Ph. D.)--University of Washington, 2006.Cell-to-cell communication through plasmodesmata (PD...
Plasmodesmata are membrane-lined channels that are located in the plant cell wall and that physicall...
© 2020, The Author(s). Lateral roots originate from initial cells deep within the main root and must...
Lateral roots are formed postembryonically and determine the final shape of the root system, a deter...
Lateral roots (LRs) are crucial for increasing the surface area of root systems to explore heterogen...
SummaryIn plants, auxin functions as a master controller of development, pattern formation, morphoge...
Cell-to-cell communication coordinates the behavior of individual cells to establish organ patternin...
SummaryCell-to-cell communication coordinates the behavior of individual cells to establish organ pa...
Root growth is critical for the effective exploitation of the rhizosphere and productive plant growt...
SummaryPlant cells are connected through plasmodesmata (PD), membrane-lined channels that allow symp...
Plasmodesmata (PD) are cytoplasmic channels that connect neighboring cells for cell-to-cell communic...
The formation of lateral root primordia along the main root axis is controlled by interconnected sig...
Plasmodesmata (PD) are cytoplasmic channels that connect neighboring cells for cell-to-cell communic...
Plant cells are connected through plasmodesmata (PD), membrane-lined channels that allow symplastic ...
In plant development, cell-to-cell signaling is mediated by mobile signals, including transcription ...
Thesis (Ph. D.)--University of Washington, 2006.Cell-to-cell communication through plasmodesmata (PD...
Plasmodesmata are membrane-lined channels that are located in the plant cell wall and that physicall...
© 2020, The Author(s). Lateral roots originate from initial cells deep within the main root and must...
Lateral roots are formed postembryonically and determine the final shape of the root system, a deter...
Lateral roots (LRs) are crucial for increasing the surface area of root systems to explore heterogen...
SummaryIn plants, auxin functions as a master controller of development, pattern formation, morphoge...