Phloem anatomy — Which cell types make up the functional conducting tissue of phloem in angiosperms?
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AVessel elements and companion cells
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BTracheids and vessel elements
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CSieve-tube elements and companion cells
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DTracheids and sieve-tube elements
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EParenchyma and fibers only
Answer
Correct Answer: Sieve-tube elements and companion cells
Explanation
Introduction / Context:Phloem transports photosynthates and signaling molecules throughout the plant. Understanding its cellular composition is vital to grasp loading/unloading, pressure flow, and response to injury (callose deposition at sieve plates).
Given Data / Assumptions:
- Angiosperm phloem comprises sieve-tube elements associated closely with companion cells.
- Sieve plates connect sieve-tube elements into long conducting files.
- Companion cells support metabolic functions lost by sieve-tube differentiation.
Concept / Approach:Sieve-tube elements are living, enucleate conduits specialized for mass flow of sap. Companion cells (derived from the same mother cell) maintain the metabolic machinery, regulate loading/unloading, and communicate via plasmodesmata. Xylem cells (tracheids, vessel elements) are dead at maturity and are not part of phloem.
Step-by-Step Solution:
Identify the conducting cells: sieve-tube elements.Recognize support cells: companion cells intimately connected.Exclude xylem elements (tracheids, vessels) from phloem.Select the correct pair: sieve-tube elements + companion cells.Verification / Alternative check:Microscopy reveals sieve plates and dense companion cell cytoplasm; functional studies show companion cell roles in sucrose loading and signaling.
Why Other Options Are Wrong:
- Vessel elements/tracheids: xylem components.
- Tracheids with sieve-tube elements: mixes xylem with phloem.
- Parenchyma/fibers alone: lack sieve function.
Common Pitfalls:Confusing sieve cells/albuminous cells (gymnosperms) with angiosperm sieve-tube/companion cell pairs.
Final Answer:Sieve-tube elements and companion cells