SO[sub 2]: Apoplastic peroxidase is more sensitive than photosynthesis
Conference
·
· Plant Physiology; (United States)
OSTI ID:6028278
- Univ. of Wuerzburg (Germany)
Leaves of barley (Hordeum vulgare L.) were fumigated for 24h (-48h) measurements of maximum photosynthetic capacity were carried out. In parallel, intercellular washing fluids (IWF) from the leaves were collected and examined for their ability to peroxidatively oxidize sulfite. Although the leaves had taken up the SO[sub 2], as evidenced by an increase in total sulfur (as well as in the sulfate content) no reduction was found in the maximum ability to photoreduce CO[sub 2] under all conditions applied. On the other hand, there was marked increase in the activity of the IWF to oxidize sulfite to sulfate. Within 5 hours after the start of the fumigation, a distinct and significant rise in the sulfite-oxidizing activity was found. After one day, sulfite-oxidation rates of the cell wall extracts had more than doubled, in comparison to unfumigated controls. In extracts of leaves from fumigated plants, the increase of the sulfite oxidizing activity was negligible during the time of the experiment. Only extracts isolated from the leaf cell walls showed an enhanced activity. Unfumigated control plants never revealed a change in activity, neither in the leaf homogenate, nor in the IWF. These findings suggest that mechanisms in the cell walls of leaves are much more sensitive to (and possibly triggered by) air pollutants like SO[sub 2], than reactions of the protoplast. The sulfite oxidation in the apoplast can be regarded as a forward defense mechanism to protect symplastic reactions.
- OSTI ID:
- 6028278
- Report Number(s):
- CONF-9307119--
- Conference Information:
- Journal Name: Plant Physiology; (United States) Journal Volume: 102:1
- Country of Publication:
- United States
- Language:
- English
Similar Records
Role of ascorbate in detoxifying ozone in the apoplast of spinach (Spinacia oleracea L. ) leaves
Detoxification of SO sub 2 by apoplastic enzymes
Phloem loading in Coleus blumei in the absence of carrier-mediated uptake of export sugar from the apoplast. [Coleus blumei Benth]
Journal Article
·
Sun Feb 28 23:00:00 EST 1993
· Plant Physiology; (United States)
·
OSTI ID:6331835
Detoxification of SO sub 2 by apoplastic enzymes
Conference
·
Tue May 01 00:00:00 EDT 1990
· Plant Physiology, Supplement; (USA)
·
OSTI ID:5628858
Phloem loading in Coleus blumei in the absence of carrier-mediated uptake of export sugar from the apoplast. [Coleus blumei Benth]
Journal Article
·
Wed Oct 31 23:00:00 EST 1990
· Plant Physiology; (USA)
·
OSTI ID:5627825
Related Subjects
560300* -- Chemicals Metabolism & Toxicology
63 RADIATION, THERMAL, AND OTHER ENVIRON. POLLUTANT EFFECTS ON LIVING ORGS. AND BIOL. MAT.
AIR POLLUTION
BARLEY
BIOCHEMISTRY
BIOLOGICAL ADAPTATION
BIOLOGICAL EFFECTS
CELL CONSTITUENTS
CELL WALL
CEREALS
CHALCOGENIDES
CHEMICAL REACTIONS
CHEMISTRY
ECOLOGICAL CONCENTRATION
ENZYMES
GRAMINEAE
LEAVES
LILIOPSIDA
MAGNOLIOPHYTA
ORGANIC COMPOUNDS
OXIDES
OXYGEN COMPOUNDS
PHOTOCHEMICAL REACTIONS
PHOTOSYNTHESIS
PLANTS
POLLUTANTS
POLLUTION
PROTEINS
SENSITIVITY
SULFUR COMPOUNDS
SULFUR DIOXIDE
SULFUR OXIDES
SYNTHESIS
63 RADIATION, THERMAL, AND OTHER ENVIRON. POLLUTANT EFFECTS ON LIVING ORGS. AND BIOL. MAT.
AIR POLLUTION
BARLEY
BIOCHEMISTRY
BIOLOGICAL ADAPTATION
BIOLOGICAL EFFECTS
CELL CONSTITUENTS
CELL WALL
CEREALS
CHALCOGENIDES
CHEMICAL REACTIONS
CHEMISTRY
ECOLOGICAL CONCENTRATION
ENZYMES
GRAMINEAE
LEAVES
LILIOPSIDA
MAGNOLIOPHYTA
ORGANIC COMPOUNDS
OXIDES
OXYGEN COMPOUNDS
PHOTOCHEMICAL REACTIONS
PHOTOSYNTHESIS
PLANTS
POLLUTANTS
POLLUTION
PROTEINS
SENSITIVITY
SULFUR COMPOUNDS
SULFUR DIOXIDE
SULFUR OXIDES
SYNTHESIS