A Low-Starch Barley Mutant, Risø 16, Lacking the Cytosolic Small Subunit of ADP-Glucose Pyrophosphorylase, Reveals the Importance of the Cytosolic Isoform and the Identity of the Plastidial Small Subunit
Open Access
- 1 February 2003
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 131 (2) , 684-696
- https://doi.org/10.1104/pp.013094
Abstract
To provide information on the roles of the different forms of ADP-glucose pyrophosphorylase (AGPase) in barley (Hordeum vulgare) endosperm and the nature of the genes encoding their subunits, a mutant of barley, Risø 16, lacking cytosolic AGPase activity in the endosperm was identified. The mutation specifically abolishes the small subunit of the cytosolic AGPase and is attributable to a large deletion within the coding region of a previously characterized small subunit gene that we have called Hv.AGP.S.1. The plastidial AGPase activity in the mutant is unaffected. This shows that the cytosolic and plastidial small subunits of AGPase are encoded by separate genes. We purified the plastidial AGPase protein and, using amino acid sequence information, we identified the novel small subunit gene that encodes this protein. Studies of the Risø 16 mutant revealed the following. First, the reduced starch content of the mutant showed that a cytosolic AGPase is required to achieve the normal rate of starch synthesis. Second, the mutant makes both A- and B-type starch granules, showing that the cytosolic AGPase is not necessary for the synthesis of these two granule types. Third, analysis of the phylogenetic relationships between the various small subunit proteins both within and between species, suggest that the cytosolic AGPase single small subunit gene probably evolved from a leaf single small subunit gene.Keywords
This publication has 26 references indexed in Scilit:
- Characterization of the Genes Encoding the Cytosolic and Plastidial Forms of ADP-Glucose Pyrophosphorylase in Wheat EndospermPlant Physiology, 2002
- The Altered Pattern of Amylose Accumulation in the Endosperm of Low-Amylose Barley Cultivars Is Attributable to a Single Mutant Allele of Granule-Bound Starch Synthase I with a Deletion in the 5′-Non-Coding RegionPlant Physiology, 2002
- A Cytosolic ADP-Glucose Pyrophosphorylase Is a Feature of Graminaceous Endosperms, But Not of Other Starch-Storing OrgansPlant Physiology, 2001
- The Major Form of ADP-Glucose Pyrophosphorylase in Maize Endosperm Is Extra-PlastidialPlant Physiology, 1996
- Distinct isoforms of ADPglucose pyrophosphorylase occur inside and outside the amyloplasts in barley endospermThe Plant Journal, 1996
- Insensitivity of Barley Endosperm ADP-Glucose Pyrophosphorylase to 3-Phosphoglycerate and Orthophosphate RegulationPlant Physiology, 1993
- A novel shrunken endosperm mutant of barleyPhysiologia Plantarum, 1990
- Starch and prolamin level in single and double high-lysine barley mutantsPhysiologia Plantarum, 1980
- Characterisation of induced high protein and high lysine mutants in barleyJournal of the Science of Food and Agriculture, 1976
- Starch-Deficient Maize Mutant Lacking Adenosine Diphosphate Glucose Pyrophosphorylase ActivityScience, 1966