Related Experiment Video
Updated: Jul 16, 2025

14:16
A New Application of the Electrical Penetration Graph EPG for Acquiring and Measuring Electrical Signals in Phloem Sieve Elements
Published on: July 2, 2015
14.9K
The Interplay between Enucleated Sieve Elements and Companion Cells
1Departamento de Biología Funcional, Universidad de Santiago de Compostela, 14971-Santiago de Compostela, Spain.
Plants (Basel, Switzerland)
|September 9, 2023
Summary
Vascular plants utilize specialized sieve elements and companion cells for transport. This review details phloem proteins, their transport, and the role of companion cells in sieve tube content regulation.
Area of Science:
- Plant Biology
- Cell Biology
- Molecular Biology
Background:
- Vascular plants possess specialized sieve elements (SEs) and companion cells for efficient transport of photosynthetic products and signals.
- SE differentiation involves enucleation and loss of translational capacity, yet retains essential components like plasmalemma and gains specific phloem proteins (P-proteins).
- Transcription factors (MYB, NAC) and OCTOPUS proteins are crucial for SE differentiation, with maturing SEs relying on companion cells via plasmodesmata.
Purpose of the Study:
- To review the current knowledge on bound and soluble phloem sap proteins.
- To elucidate the role of companion cells in regulating sieve tube protein content.
- To explore the transport mechanisms of phloem proteins and factors influencing their retention within SEs.
Main Methods:
- Review of existing literature on SE differentiation, companion cell function, and phloem protein analysis.
- Analysis of the impact of plasmodesmata morphology and physiology on phloem sap heterogeneity.
- Consideration of a newly developed protocol for isolating pure sieve tube proteins.
Main Results:
- Phloem proteins are transported via bulk flow and selective movement, with companion cells playing a key role in their presence.
- Plasmodesmata between SEs and companion cells allow passage of 20-70 kDa compounds, influencing sieve tube content.
- Understanding plasmodesmata is critical for clarifying phloem sap heterogeneity and protein retention mechanisms.
Conclusions:
- Companion cells are indispensable for maintaining sieve tube protein composition and function.
- Further investigation into plasmodesmata and protein retention is needed to fully understand phloem sap regulation.
- This review consolidates current understanding of phloem proteins, highlighting areas for future research.
Related Concept Videos
Contact-dependent Signaling
44.7K
Contact-dependent signaling, as the name suggests, requires that communicating cells be in direct contact with each other. This is achieved either through receptor-ligand interactions or by specialized cytoplasmic channels that allow the flow of small molecules between cells. In animal cells, channels called gap junctions facilitate contact-dependent signaling in certain tissues, whereas, plasmodesmata perform a similar function in plants.
Gap Junctions
In animal cells, gap junctions are formed...
Gap Junctions
In animal cells, gap junctions are formed...
44.7K
Plasmodesmata
32.8K
The organs in a multicellular organism’s body are made up of tissues formed by cells. To work together cohesively, cells must communicate. One way that cells communicate is through direct contact with other cells. The points of contact that connect adjacent cells are called intercellular junctions.
32.8K
Gap Junctions
8.1K
The cytoplasm of adjacent animal cells can exchange small molecules, ions, and secondary messengers via the communication channels which form the gap junctions. These junctions comprise a few hundred to thousands of molecular channels, each made of two halves, called the connexon hemichannel. A connexon is a hexamer of six transmembrane connexin proteins, which assemble radially, thus forming a pore or channel in the center. One connexon hemichannel docks with a corresponding connexon on the...
8.1K
Role of Microtubules in Cell Wall Deposition
2.4K
Microtubules are small hollow tubes in eukaryotic cells. The cell wall microtubules are polymerized dimers of two globular proteins, α-tubulin and β-tubulin, two globular proteins. With a diameter of about 25 nm, microtubules are the widest components of the cytoskeleton. They help the cell resist compression and provide a track along which vesicles move through the cell or pull replicated chromosomes to opposite ends of a dividing cell. Microtubules go through quick cycles of...
2.4K
Plant Tissues
6.5K
Plants are multicellular eukaryotes with tissue systems made of various cell types that carry out specific functions. Different tissues work together to perform a unique function and form an organ. Organs working together form organ systems. Vascular plants have two distinct organ systems: a shoot system and a root system. The shoot system consists of two portions: the vegetative (non-reproductive) parts of the plant, such as the leaves and the stems, and the reproductive parts of the plant,...
6.5K
The Apoplast and Symplast
50.6K
Plant growth depends on its ability to take up water and dissolved minerals from the soil. The root system of every plant is equipped with the necessary tissues to facilitate the entry of water and solutes. The plant tissues involved in the transport of water and minerals have two major compartments - the apoplast and the symplast. The apoplast includes everything outside the plasma membrane of living cells and consists of cell walls, extracellular spaces, xylem, phloem, and tracheids. The...
50.6K

