Cell-to-cell communication is crucial for multicellular development, and in plants occurs through specialized channels called plasmodesmata (PD). In our recent manuscript1 we reported the characterization of a PD trafficking mutant, 'gfp arrested trafficking 1' (gat1), which carries a mutation in the thioredoxin-m3 (TRX-m3) gene. gat1 mutants showed restricted GFP transport from the phloem to the root meristem that appears to result from structural modifications in the PD channel. We found accumulation of reactive oxygen species (ROS) and callose, as well as a reduction in starch granules in the gat1 root meristem. Application of oxidants to wildtype plants and expression of our GFP reporter in the mutant root meristemless 1 (rml1) mimic th...
Cell-to-cell communication via membranous channels called plasmodesmata (PD) plays critical roles du...
Intracellular redox status is a critical parameter determining plant development in response to biot...
Plant development requires communication on many levels, including between cells and between organel...
Cell-to-cell transport in plants occurs through cytoplasmic channels called "plasmodesmata'' and is ...
Plant cells communicate with each other via plasmodesmata (PDs) in order to orchestrate specific res...
Plasmodesmata are cytoplasmic channels crossing plant cell walls allowing cell-to-cell transport of ...
Plant cells transport molecules through small channels called plasmodesmata (PD); these nanoscopic c...
Thesis (Ph. D.)--University of Washington, 2006.Cell-to-cell communication through plasmodesmata (PD...
To identify potentially novel and essential components of plant membrane trafficking mechanisms we p...
Thioredoxins (TRXs) f and m are redox proteins that regulate key chloroplast processes. The existenc...
Plant cells are connected by nanoscopic channels in the cell wall called plasmodesmata (PD). PD all...
International audienceA highly negative glutathione redox potential (EGSH) is maintained in the cyto...
Plasmodesmata (PD) are cytoplasmic channels that connect neighboring cells for cell-to-cell communic...
Plasmodesmata (PD) are cytoplasmic channels that connect neighboring cells for cell-to-cell communic...
Plasmodesmata (PD) are channels in the walls of plant cells which enable cell-to-cell information tr...
Cell-to-cell communication via membranous channels called plasmodesmata (PD) plays critical roles du...
Intracellular redox status is a critical parameter determining plant development in response to biot...
Plant development requires communication on many levels, including between cells and between organel...
Cell-to-cell transport in plants occurs through cytoplasmic channels called "plasmodesmata'' and is ...
Plant cells communicate with each other via plasmodesmata (PDs) in order to orchestrate specific res...
Plasmodesmata are cytoplasmic channels crossing plant cell walls allowing cell-to-cell transport of ...
Plant cells transport molecules through small channels called plasmodesmata (PD); these nanoscopic c...
Thesis (Ph. D.)--University of Washington, 2006.Cell-to-cell communication through plasmodesmata (PD...
To identify potentially novel and essential components of plant membrane trafficking mechanisms we p...
Thioredoxins (TRXs) f and m are redox proteins that regulate key chloroplast processes. The existenc...
Plant cells are connected by nanoscopic channels in the cell wall called plasmodesmata (PD). PD all...
International audienceA highly negative glutathione redox potential (EGSH) is maintained in the cyto...
Plasmodesmata (PD) are cytoplasmic channels that connect neighboring cells for cell-to-cell communic...
Plasmodesmata (PD) are cytoplasmic channels that connect neighboring cells for cell-to-cell communic...
Plasmodesmata (PD) are channels in the walls of plant cells which enable cell-to-cell information tr...
Cell-to-cell communication via membranous channels called plasmodesmata (PD) plays critical roles du...
Intracellular redox status is a critical parameter determining plant development in response to biot...
Plant development requires communication on many levels, including between cells and between organel...