THE GREAT ESCAPE: Phloem Transport and Unloading of Macromolecules
- 1 June 2000
- journal article
- Published by Annual Reviews in Annual Review of Plant Physiology and Plant Molecular Biology
- Vol. 51 (1), 323-347
- https://doi.org/10.1146/annurev.arplant.51.1.323
Abstract
The phloem of higher plants translocates a diverse range of macromolecules including proteins, RNAs, and pathogens. This review considers the origin and destination of such macromolecules. A survey of the literature reveals that the majority of phloem-mobile macromolecules are synthesized within companion cells and enter the sieve elements through the branched plasmodesmata that connect these cells. Examples of systemic macromolecules that originate outside the companion cell are rare and are restricted to viral and subviral pathogens and putative RNA gene-silencing signals, all of which involve a relay system in which the macromolecule is amplified in each successive cell along the pathway to companion cells. Evidence is presented that xenobiotic macromolecules may enter the sieve element by a default pathway as they do not possess the necessary signals for retention in the sieve element-companion cell complex. Several sink tissues possess plasmodesmata with a high-molecular-size exclusion limit, potentially allowing the nonspecific escape of a wide range of small (<50-kDa) macromolecules from the phloem. Larger macromolecules and systemic mRNAs appear to require facilitated transport through sink plasmodesmata. The fate of phloem-mobile macromolecules is considered in relation to current models of long-distance signaling in plants.Keywords
This publication has 96 references indexed in Scilit:
- Sieve Tube Unloading and Post-Phloem Transport of Fluorescent Tracers and Proteins Injected into Sieve Tubes via Severed Aphid StyletsPlant Physiology, 2000
- Phloem transport: Are you chaperoned?Current Biology, 1999
- Virus Particles of Cucumber Green Mottle Mosaic Tobamovirus Move Systemically in the Phloem of Infected Cucumber PlantsMolecular Plant-Microbe Interactions®, 1999
- Signal transduction in the wound response of tomato plantsPhilosophical Transactions Of The Royal Society B-Biological Sciences, 1998
- Cell‐to‐cell movement of potato spindle tuber viroidThe Plant Journal, 1997
- Companion cell‐specific inhibition of the potato sucrose transporter SUT1Plant, Cell & Environment, 1996
- Plasmodesmata: intercellular channels for macromolecular transport in plantsCurrent Opinion in Cell Biology, 1995
- Movement of virus and photoassimilate in the phloem: A comparative analysisBioEssays, 1993
- Structure and function of leaf minor veins in trees and herbsTrees, 1989
- Phloem differentiation in tobacco pith cultureJournal of Ultrastructure Research, 1971