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Phloem Translocation and Assimilate Partitioning

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Presentation on theme: "Phloem Translocation and Assimilate Partitioning"— Presentation transcript:

1 Phloem Translocation and Assimilate Partitioning
HORT 301 – Plant Physiology November 2, 2009 Taiz and Zeiger, Chapter 10 Assimilate translocation in the phloem from source-to-sink is bidirectional

2 Phloem sap composition

3 Phloem tissue is adjacent to the xylem
Stem (perennial) Leaf

4 Sieve elements and companion cell

5 Companion cell types Ordinary companion cell Transfer cell Intermediary cell

6 Source to sink translocation
Proximity Vascular interconnection Sink strength

7 Pressure flow model for phloem translocation from source to sink
Source – phloem loading increases ψp Sink – phloem unloading decreases ψp Ψp gradient between source and sink drives solution movement

8 Phloem loading from source cells and unloading into sink cells
Photo-assimilate movement Symplast (active) and apoplastic (active) phloem loading

9 Apoplastic (active) phloem loading
Summary of apoplastic and symplastic phloem loading

10 Phloem unloading and storage in sinks

11 Photosynthetic product allocation and partitioning
Allocation – regulation of carbon assimilate distribution into various metabolic pathways or sink cells Partitioning – distribution of carbon assimilates within plants

12 Translocation from source to sink


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