Expression of alcohol-soluble endosperm proteins in maize single and double mutants
- 1 May 1990
- journal article
- research article
- Published by Springer Nature in Theoretical and Applied Genetics
- Vol. 79 (3) , 314-320
- https://doi.org/10.1007/bf01186073
Abstract
Many maize (Zea mays L.) mutant genes exist. Some affect protein content or composition, while others modify carbohydrates or kernel phenotype. In doublemutant lines, two mutant genes are present. We know little about interactions of such genes, however. We therefore examined a normal maize inbred, B37, 10 near-isogenic single mutants and 46 double mutants to analyze quantitative effects on alcohol-soluble endosperm proteins. Proteins were extracted with 70% ethanol0.5% sodium acetate-5% mercaptoethanol, and fractionated by reversed-phase high-performance liquid chromatography (RP-HPLC). Early peaks were alcohol-soluble glutelin (ASG) subunits, while late peaks contained zein. Results were quantified and statistically analyzed. In many double mutants, protein compositions differed significantly from averages of compositions of corresponding single mutants. For example, a high-methionine, water-insoluble ASG is absent when the opaque-2 (o2) gene combines with shrunken-1 (sh1) or surgary-1 (su1). Another water-insoluble ASG nearly doubled when floury-2 (fl2) andsu1 combined. A high-proline, high-histidine, water-soluble ASG nearly doubled in combinations offl2 witho2,su1 and sugary-2 (su2). Zein was about half its expected value wheno2 combined with amylose-extender (ae), floury-1 (fl1), soft-starch (h),sh1 andsu1. Thus, rapid protein extraction and quantitative RP-HPLC showed major new epistatic and synergistic effects of several mutant genes on protein composition. Unexpectedly, these effects often involve genes that primarily affect starch composition or kernel phenotype. Alcohol-soluble proteins often vary in amount, as ino2 lines. They also differ in nutritional value. Thus, RP-HPLC analysis of these proteins can identify nutritionally superior genotypes, and may help explain the basis of such quality.This publication has 14 references indexed in Scilit:
- Separation of alcohol-soluble maize proteins by reversed-phase high performance liquid chromatographyJournal of Cereal Science, 1986
- Environmental effects on zein chromatograms of maize inbred lines revealed by reversed-phase high-performance liquid chromatographyTheoretical and Applied Genetics, 1986
- Effect of RNase on Zein Synthesis in Endosperms of brittle-2opaque-2 Maize Double MutantPlant Physiology, 1984
- Relationship between alcohol-soluble proteins extracted from maize endosperm by different methodsJournal of Agricultural and Food Chemistry, 1983
- Mucronate, Mc, a dominant gene of maize which interacts with opaque-2 to suppress zein synthesisTheoretical and Applied Genetics, 1983
- Interaction of the opaque-2 gene with starch-forming mutant genes on the synthesis of zein in maize endospermBiochemical Genetics, 1978
- Endosperm Protein Synthesis in Maize Mutants with Increased Lysine ContentScience, 1972
- Kernel Phenotypes of Zea Mays L. Genotypes Possessing One to Four Mutated Genes1Crop Science, 1972
- Mutant Gene That Changes Protein Composition and Increases Lysine Content of Maize EndospermScience, 1964
- Predicting Yields of Missing Single Crosses of Corn1Agronomy Journal, 1952