Hemicellulosic Polymers of Cell Walls of Zea Coleoptiles
Open Access
- 1 June 1983
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 72 (2) , 515-521
- https://doi.org/10.1104/pp.72.2.515
Abstract
Hemicellulosic polymers comprised about 43% of the primary walls of Zea mays L. cv WF9 × Bear 38 coleoptiles; these polymers were separated by an alkali-gradient into three major fractions. Fraction 1 (GAX I) was solubilized from walls with 0.01 to 0.045 n KOH and consisted of novel glucuronoarabino(galacto)xylans. Nearly six of every seven residues of these xylans were substituted predominantly with single arabinosyl sidegroups. Fraction 2 (GAX II), material released by 0.45 to 0.8 n KOH, was also enriched with glucuronoarabinoxylan, but only two of every three xylose residues was substituted. This xylan was similar to those found in Zea and other Graminaceous species. Both of these xylan fractions contained uronic acid, terminal- and 4-linked galactosyl, and small amounts of 2-, 3-, 5-, and 3,5-linked arabinosyl units. Fraction 3 (MG-GAX) was released by 2.0 to 3.0 n KOH and consisted of about 60% mixed-linked glucan and about 40% glucuronoarabinoxylan. This fraction represented about half of the total hemicellulosic material of the primary walls of these coleoptiles.This publication has 15 references indexed in Scilit:
- Uptake and Metabolic Fate of Glucose, Arabinose, and Xylose by Zea mays Coleoptiles in Relation to Cell Wall SynthesisPlant Physiology, 1982
- β-d-Glucan Hydrolase Activity in Zea Coleoptile Cell WallsPlant Physiology, 1980
- The control of cell enlargement.1977
- Synthesis of the mannosyl-O-serine (threonine) linkage of glycoproteins from polyisoprenylphosphate mannose in yeast (Hansenula holstii)Archives of Biochemistry and Biophysics, 1975
- Auxin-induced Changes in Avena Coleoptile Cell Wall CompositionPlant Physiology, 1972
- A new modification of the carbazole analysis: Application to heteropolysaccharidesAnalytical Biochemistry, 1968
- The Structure of the Aerobacter aerogenes A3(S1) Polysaccharide. I. A Reexamination Using Improved Procedures for Methylation Analysis*Biochemistry, 1966
- Uronic acid constituents of oat-coleoptile cell wallsBiochemical Journal, 1964
- Sugar composition of oat-coleoptile cell wallsBiochemical Journal, 1963
- Alkaline Degradation of PolysaccharidesPublished by Elsevier ,1958