Tracing Cell Wall Biogenesis in Intact Cells and Plants
- 1 October 1991
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 97 (2) , 551-561
- https://doi.org/10.1104/pp.97.2.551
Abstract
Cells of proso millet (Panicum miliaceum L. cv Abarr) in liquid culture and leaves of maize seedlings (Zea mays L. cv LH51 x LH1131) readily incorporated d-[U-(14)C]glucose and l-[U-(14)C]arabinose into soluble and cell wall polymers. Radioactivity from arabinose accumulated selectively in polymers containing arabinose or xylose because a salvage pathway and C-4 epimerase yield both nucleotide-pentoses. On the other hand, radioactivity from glucose was found in all sugars and polymers. Pulse-chase experiments with proso millet cells in liquid culture demonstrated turnover of buffer soluble polymers within minutes and accumulation of radioactive polymers in the cell wall. In leaves of maize seedlings, radioactive polymers accumulated quickly and peaked 30 hours after the pulse then decreased slowly for the remaining time course. During further growth of the seedlings, radioactive polymers became more tenaciously bound in the cell wall. Sugars were constantly recycled from turnover of polysaccharides of the cell wall. Arabinose, hydrolyzed from glucuronoarabinoxylans, and glucose, hydrolyzed from mixed-linkage (1-->3, 1-->4)beta-d-glucans, constituted most of the sugar participating in turnover. Arabinogalactans were a large portion of the buffer soluble (cytoplasmic) polymers of both proso millet cells and maize seedlings, and these polymers also exhibited turnover. Our results indicate that the primary cell wall is not simply a sink for various polysaccharide components, but rather a dynamic compartment exhibiting long-term reorganization by turnover and alteration of specific polymers during development.Keywords
This publication has 18 references indexed in Scilit:
- Cell wall and enzyme changes during the graviresponse of the leaf-sheath pulvinus of oat (Avena sativa).Plant Physiology, 1990
- Rapid auxin-induced stimulation of cell wall synthesis in pea internodesProceedings of the National Academy of Sciences, 1987
- Extraction of starch by dimethyl sulfoxide and quantitation by enzymatic assayAnalytical Biochemistry, 1987
- Uptake and Metabolic Fate of Glucose, Arabinose, and Xylose by Zea mays Coleoptiles in Relation to Cell Wall SynthesisPlant Physiology, 1982
- Auxin-regulated Wall Loosening and Sustained Growth in ElongationPlant Physiology, 1981
- The Structure of Plant Cell WallsPlant Physiology, 1974
- Activation of Avena Coleoptile Cell Wall Glycosidases by Hydrogen Ions and AuxinPlant Physiology, 1974
- Auxin-induced Changes in Avena Coleoptile Cell Wall CompositionPlant Physiology, 1972
- In Vitro Autolysis of Plant Cell WallsPlant Physiology, 1967
- Metabolism of Free Hydroxyproline in Avena Coleoptiles*Biochemistry, 1967