Plasmodesmata spread their influence
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Summary
Recent findings that broaden the potential impact of PDs, by revealing their contribution to auxin movement and as potential sites of receptor signaling, should prompt a reassessment of symplasmic connectivity and its importance to plant development, defense, and physiology.
- Type
- review
- Published
- 2015-03-03
- Cited by
- 9
- References
- 47
- Access
- Open access
- OpenAlex
- https://openalex.org/W1972885848
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:14388111
Keywords
Plasmodesma, Phloem, Biology, Plant development, Auxin
References
- Callose deposition during gravitropism ofZea mays andPisum sativum and its inhibition by 2-deoxy-D-glucose
- Computational analysis of live cell images of the Arabidopsis thaliana plant.
- Symplasmic fields in the tunica of the shoot apical meristem coordinate morphogenetic events.
- Two Plant–Viral Movement Proteins Traffic in the Endocytic Recycling Pathwayw⃞
- Subcellular dynamics and role of Arabidopsis β-1,3-glucanases in cell-to-cell movement of tobamoviruses.
- Control of Arabidopsis meristem development by thioredoxin-dependent regulation of intercellular transport
- Plasmodesmata dynamics are coordinated by intracellular signaling pathways
- Receptor-mediated signaling at plasmodesmata
- Signaling in the Arabidopsis shoot meristem stem cell niche correlates with ligand-dependent trafficking of the CLV1 receptor kinase
- Transcription factors on the move.
- Symplastic intercellular connectivity regulates lateral root patterning.
- Lights at the end of the tunnel: new views of plasmodesmal structure and function.
- ANGUSTIFOLIA3 signaling coordinates proliferation between clonally distinct cells in leaves.
- Specific Targeting of a Plasmodesmal Protein Affecting Cell-to-Cell Communication
- Plasmodesmata “in Communicado”
- Moderation of Arabidopsis root stemness by CLAVATA1 and ARABIDOPSIS CRINKLY4 receptor kinase complexes.
- New and old roles of plasmodesmata in immunity and parallels to tunneling nanotubes
- Callose biosynthesis regulates symplastic trafficking during root development.
- A mechanistic framework for noncell autonomous stem cell induction in Arabidopsis
- Auxin-callose-mediated plasmodesmal gating is essential for tropic auxin gradient formation and signaling.
Cited by
- Chloroplast signaling within, between and beyond cells
- Receptor Complex Mediated Regulation of Symplastic Traffic.
- Symplastic communication in organ formation and tissue patterning.
- Identification of Plasmodesmal Localization Sequences in Proteins In Planta
- Intercellular and systemic trafficking of RNAs in plants
- Do Plasmodesmata Play a Prominent Role in Regulation of Auxin-Dependent Genes at Early Stages of Embryogenesis?
- PLASMODESMATA-LOCATED PROTEIN 6 regulates plasmodesmal function in Arabidopsis vasculature
- Plant cell walls
- A Glycine-Rich Protein Encoded by Sulfur-Deficiency Induced Gene Is Involved in the Regulation of Callose Level and Root Elongation
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