Home LiteratureArticle Details
PMID: 16658993 Published · ppublish English Journal Article

Structural and Physiological Changes in Sugar Beet Leaves during Sink to Source Conversion.

Plant physiology ·Vol. 54 ·No. 6 ·1974-12-00 ·Pages 877-85

Fellows RJ, Geiger DR

Abstract

The onset of export during leaf development was correlated with changes in metabolism and ultrastructure and with patterns of solute distribution in the developing seventh leaf of sugar beet (Beta vulgaris L.) in order to study the cause of initiation of translocation. Infrared gas analysis of carbon dioxide uptake showed a broad peak for net photosynthesis dm(-2) at 35 to 40% final laminar length. Pulse labeling with (14)CO(2) demonstrated that maximum import of translocate occurred at 25% final laminar length; export was first observed at 35% final laminar length. Between 40 and 50% final laminar length a rapid increase in amount of export occurred, primarily as a result of the increase in the area of leaf which was exporting. Whole leaf autoradiography revealed that onset of phloem loading spread basipetally from the leaf tip; loading was initiated at about 22% final laminar length and was essentially complete by 50% final laminar length. Those areas which clearly exhibited loading no longer imported from other parts of the plant while the area in transition still appeared to import label from source regions.There was little difference between source and sink leaf tissue in the kinetic parameters K(j) and J(max) (30) for uptake of exogenous sucrose supplied via free space. The concentration of solutes in sieve elements and companion cells of the sink leaf was highest in the mature tip area and gradually decreased in the direction of the immature base. There appeared to be no dramatic structural transformation within the phloem of the minor veins that was closely correlated with the time when phloem loading or export began. Rather, there appeared to be a gradual differentiation of phloem which resulted in a sizable proportion of the population of minor vein sieve elements and companion cells attaining maturity in the older sink regions prior to initiation of phloem loading. The area of the leaf undergoing development appeared to exhibit the beginnings of phloem loading 30 to 45 hours prior to onset of export. Import continued into the area in transition until the full level of vein loading was attained. Structural maturation of the phloem and onset of phloem loading are felt to be more preparatory in nature rather than immediately causal events which triggered export.The initiation of export out of a developing leaf, we believe, is the result of the increasing solute content within the sieve element and companion cells of the minor veins, in particular. The higher osmotic pressure in the sieve tubes causes a reversal of the previously inward directed gradient and produces a mass flow, through unobstructed sieve elements, out of the new source region of the leaf.

Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Fellows R J
Department of Biology, University of Dayton, Dayton, Ohio 45469.
Geiger D R
References (14)
14 references, click to expand
  1. Translocation of Photosynthetically Assimilated C in Straight-Necked Squash.
    Plant Physiol. 1964 Jul;39(4):663-72 PMID: 16655980
  2. Temporary inhibition of translocation velocity and mass transfer rate by petiole cooling.
    Plant Physiol. 1970 Dec;46(6):847-9 PMID: 16657555
  3. Aggregation of endoplasmic reticulum and its relation to the nucleus in a differentiating sieve element.
    J Ultrastruct Res. 1971 Jan;34(1):144-58 PMID: 5539907
  4. Translocation of C Metabolites in the Phloem of the Bean Plant.
    Plant Physiol. 1965 Jan;40(1):119-29 PMID: 16656054
  5. Translocation and Metabolic Conversion of C-Labeled Assimilates in Detached and Attached Leaves of Phaseolus vulgaris L. in Different Phases of Leaf Expansion.
    Plant Physiol. 1971 Feb;47(2):212-6 PMID: 16657598
  6. Mechanism of inhibition of translocation by localized chilling.
    Plant Physiol. 1973 Feb;51(2):372-7 PMID: 16658332
  7. Solute distribution in sugar beet leaves in relation to Phloem loading and translocation.
    Plant Physiol. 1973 Dec;52(6):585-9 PMID: 16658610
  8. Bidirectional translocation of sugars in sieve tubes of squash plants.
    Plant Physiol. 1968 Jun;43(6):877-82 PMID: 16656856
  9. Vein loading and transport in detached leaves.
    Plant Physiol. 1968 Mar;43(3):460-3 PMID: 16656789
  10. A Mathematical Treatment of Munch's Pressure-Flow Hypothesis of Phloem Translocation.
    Plant Physiol. 1973 Dec;52(6):531-8 PMID: 16658599
  11. Evidence for active Phloem loading in the minor veins of sugar beet.
    Plant Physiol. 1974 Dec;54(6):886-91 PMID: 16658994
  12. Leaf structure and translocation in sugar beet.
    Plant Physiol. 1969 Jan;44(1):45-54 PMID: 16657032
  13. Sucrose Translocation in the Sugar Beet.
    Plant Physiol. 1965 Jul;40(4):685-90 PMID: 16656144
  14. Artifacts in the Embedment of Water-soluble Compounds for Light Microscopy.
    Plant Physiol. 1972 Feb;49(2):161-5 PMID: 16657916
Article Info
Journal
Plant physiology
Abbr.
Plant Physiol
ISSN
0032-0889
Published
1974-12-00
Pages
877-85
Language
English
Region
United States
NLM ID
0401224
PMCID
PMC366626
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com