Home LiteratureArticle Details
PMID: 16663634 Published · ppublish English Journal Article

Photosynthetic Carbon Metabolism in Leaves and Isolated Chloroplasts from Spinach Plants Grown under Short and Intermediate Photosynthetic Periods.

Plant physiology ·Vol. 75 ·No. 2 ·1984-06-00 ·Pages 397-409

Robinson JM

Abstract

Responses of foliar and isolated intact chloroplast photosynthetic carbon metabolism observed in spinach (Spinacia oleracea cv Wisconsin Bloomsdale) plants exposed to a shortened photosynthetic period (7-hour light/17-hour dark cycle), were used as probes to examine in vivo metabolic factors that exerted rate determination on photosynthesis (PS) and on starch synthesis. Compared with control plants propagated continuously on a 12-hour light/12-hour dark cycle, 14 to 15 days were required, subsequent to a shift from 12 to 7 hours daylength, for 7-hour plants to begin to grow at rates comparable to those of 12-hour daylength plants. Because of shorter daily durations of PS, daily demand for photosynthate by growth processes appeared to be greater in the 7-hour than in the 12-hour plants. The result was that 7-hour plants established a 1.5- to 2.0-fold higher total PS rate than 12-hour plants.Intact chloroplasts isolated from the leaves of 7-hour plants (7-h PLD) displayed 1.5- to 2.0-fold higher PS rates than plastids isolated from 12-hour plants (12-h PLD). Plastid lamellae prepared from 7- and 12-h PLD isolates displayed equivalent rates of ferredoxin-dependent ATP and NADPH photoformation indicating that electron transport processes were not factors in the establishment of higher 7-h PLD PS rates. Analyses, both in leaves as well as intact PLD isolates, of dark to light transitional increases in Calvin cycle intermediates, e.g., ribulose-1,5-bisphosphate (RuBP) and 3-phosphoglycerate (3-PGA), as well as estimations of activities of RuBP carboxylase and fructose-1,6-bisphosphate phosphatase, indicated that 7-hour plant leaves displayed higher PS rates (than 12-hour plants), because there was a higher magnitude of activity of the Calvin cycle.Although both the foliar level of starch and sucrose, as well as starch synthesis rate, often was higher in 7-hour compared with 12-hour plant foliage, the higher 7-hour plant total PS rates indicated that maximal sucrose and starch levels did not mediate any ;feedback' inhibition of PS. The higher 7-hour plant foliar and PLD PS rates resulted in higher glucose-1-P levels as well as a higher ratio of 3-PGA:Pi, both factors of which would enhance the activity of chloroplast ADP-glucose pyrophosphorylase, and which were attributed to be causal to the higher starch synthesis rates observed in 7-hour plant foliage and PLD isolates.

Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Robinson J M
Light and Plant Growth Laboratory, Plant Physiology Institute, Beltsville, Maryland 20705.
References (20)
20 references, click to expand
  1. Photosynthate Partitioning into Starch in Soybean Leaves: I. Effects of Photoperiod versus Photosynthetic Period Duration.
    Plant Physiol. 1979 Nov;64(5):749-53 PMID: 16661047
  2. Isolation of Functionally Intact Rhodoplasts from Griffithsia monilis (Ceramiaceae, Rhodophyta).
    Plant Physiol. 1981 Jan;67(1):5-8 PMID: 16661632
  3. Hydrogen peroxide synthesis in isolated spinach chloroplast lamellae : an analysis of the mehler reaction in the presence of NADP reduction and ATP formation.
    Plant Physiol. 1982 Nov;70(5):1249-54 PMID: 16662662
  4. Photosynthetic intermediates, the warburg effect, and glycolate synthesis in isolated spinach chloroplasts.
    Plant Physiol. 1974 Jun;53(6):790-7 PMID: 16658792
  5. Metabolite levels during induction in the chloroplast and extrachloroplast compartments of spinach protoplasts.
    Biochim Biophys Acta. 1980 Nov 5;593(1):85-102 PMID: 7426648
  6. Photosynthate Partitioning into Starch in Soybean Leaves: II. IRRADIANCE LEVEL AND DAILY PHOTOSYNTHETIC PERIOD DURATION EFFECTS.
    Plant Physiol. 1981 Feb;67(2):257-60 PMID: 16661657
  7. Regulatory mechanisms in photosynthetic carbon metabolism.
    Curr Top Cell Regul. 1976;11:203-41 PMID: 11968
  8. Activation of ribulose bisphosphate carboxylase in intact chloroplasts by CO2 and light.
    Arch Biochem Biophys. 1978 Jan 15;185(1):39-48 PMID: 623490
  9. Relationship between Photosynthesis and Respiration: The Effect of Carbohydrate Status on the Rate of CO(2) Production by Respiration in Darkened and Illuminated Wheat Leaves.
    Plant Physiol. 1983 Mar;71(3):574-81 PMID: 16662869
  10. Influence of Hydrogen Peroxide upon Carbon Dioxide Photoassimilation in the Spinach Chloroplast: I. HYDROGEN PEROXIDE GENERATED BY BROKEN CHLOROPLASTS IN AN "INTACT" CHLOROPLAST PREPARATION IS A CAUSAL AGENT OF THE WARBURG EFFECT.
    Plant Physiol. 1980 Apr;65(4):755-9 PMID: 16661273
  11. Rapid isolation of mesophyll cells from leaves of soybean for photosynthetic studies.
    Plant Physiol. 1977 Apr;59(4):587-90 PMID: 16659898
  12. Effects of Sink Removal on Photosynthesis and Senescence in Leaves of Soybean (Glycine max L.) Plants.
    Plant Physiol. 1978 Mar;61(3):394-7 PMID: 16660300
  13. Involvement of Photosynthetic Carbon Reduction Cycle Intermediates in CO(2) Fixation and O(2) Evolution by Isolated Chloroplasts.
    Plant Physiol. 1971 Dec;48(6):707-11 PMID: 16657865
  14. The regulation of starch metabolism by inorganic phosphate.
    Biochem Biophys Res Commun. 1976 Oct 18;72(4):1554-61 PMID: 999688
  15. Light induced activation of fructose-1, 6-bisphosphatase in isolated intact chloroplasts.
    Biochem Biophys Res Commun. 1976 May 3;70(1):193-9 PMID: 6030
  16. Measurement of the intermediates of the photosynthetic carbon reduction cycle, using enzymatic methods.
    Methods Enzymol. 1972;24:261-8 PMID: 4670193
  17. Biochemical Basis for Partitioning of Photosynthetically Fixed Carbon between Starch and Sucrose in Soybean (Glycine max Merr.) Leaves.
    Plant Physiol. 1982 Mar;69(3):691-6 PMID: 16662277
  18. Influence of assimilate demand on photosynthesis, diffusive resistances, translocation, and carbohydrate levels of soybean leaves.
    Plant Physiol. 1974 Aug;54(2):201-7 PMID: 16658860
  19. Adenosine diphosphate glucose pyrophosphorylase. A regulatory enzyme in the biosynthesis of starch in spinach leaf chloroplasts.
    J Biol Chem. 1966 Oct 10;241(19):4491-504 PMID: 5922972
  20. An improved spectrophotometric assay for ribulosebisphosphate carboxylase.
    Biochim Biophys Acta. 1974 Jul 17;358(1):226-9 PMID: 4368401
Article Info
Journal
Plant physiology
Abbr.
Plant Physiol
ISSN
0032-0889
Published
1984-06-00
Pages
397-409
Language
English
Region
United States
NLM ID
0401224
PMCID
PMC1066920
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