Altered Glycine Decarboxylation Inhibition in Isonicotinic Acid Hydrazide-Resistant Mutant Callus Lines and in Regenerated Plants and Seed Progeny
- 1 January 1982
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 69 (1) , 198-204
- https://doi.org/10.1104/pp.69.1.198
Abstract
Isonicotinic acid hydrazide (INH), an inhibitor of the photorespiratory pathway blocking the conversion of glycine to serine and CO2, was used as a selective agent to obtain INH-resistant tobacco (Nicotiana tabacum [cv. John Williams Broadleaf]) callus cells. Of 22 cell lines that were INH-resistant, none were different from wild-type cells in their ability to take up [3H]INH or to oxidize INH to isonicotinic acid. In 7 of the 22 cell lines, INH resistance was associated with decreased inhibition of NAD-dependent glycine decarboxylation activity in isolated mitochondrial preparations. In the cell line that was most extensively investigated (I 24), this biochemical phenotype (exhibiting a 3-fold higher Ki with INH) was observed in leaf mitochondria of regenerated plants and of plants produced from them by self-fertilization. After crosses between resistant and sensitive plants, the decreased inhibition of glycine decarboxylation was observed among F2 and backcross progeny only in those plants previously identified as INH-resistant by callus growth tests. In siblings identified as INH-sensitive, glycine decarboxylation was inhibited by INH at the wild-type level. This demonstration of the transfer of an altered enzyme property from callus to regenerated plants and through seed progeny fulfills an important requirement for the use of somatic cell genetics to produce biochemical mutants of high plants.This publication has 18 references indexed in Scilit:
- Photorespiration-deficient Mutants of Arabidopsis thaliana Lacking Mitochondrial Serine Transhydroxymethylase ActivityPlant Physiology, 1981
- Properties and Intramitochondrial Localization of Serine Hydroxymethyltransferase in Leaves of Higher PlantsPlant Physiology, 1979
- Effect of Glyoxylate on the Sensitivity of Net Photosynthesis to Oxygen (the Warburg Effect) in TobaccoPlant Physiology, 1978
- Inhibition of Glutamate:Glyoxylate Aminotransferase Activity in Tobacco Leaves and Callus by Glycidate, an Inhibitor of PhotorespirationPlant Physiology, 1978
- Chemical Inhibition of the Glycolate Pathway in Soybean Leaf CellsPlant Physiology, 1977
- Isolation and Oxidative Properties of Intact Mitochondria Isolated from Spinach LeavesPlant Physiology, 1977
- Intramitochondrial localisation of glycine decarboxylase in spinach leavesBiochemical and Biophysical Research Communications, 1977
- Increasing Photosynthesis by Inhibiting Photorespiration with GlyoxylateScience, 1977
- Metabolic Regulation of Glycolate Synthesis, Photorespiration, and Net Photosynthesis in Tobacco by L-GlutamatePlant Physiology, 1977
- A Rapid and Sensitive Method for the Quantitation of Microgram Quantities of Protein Utilizing the Principle of Protein-Dye BindingAnalytical Biochemistry, 1976