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PMID: 12226499 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

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 region.

Plant physiology ·Vol. 130 ·No. 1 ·2002-09-00 ·Pages 190-8

Patron NJ, Smith AM, Fahy BF, Hylton CM, Naldrett MJ, Rossnagel BG, Denyer K

Abstract

Reasons for the variable amylose content of endosperm starch from waxy cultivars of barley (Hordeum vulgare) were investigated. The mature grains of most such cultivars contain some amylose, although amounts are much lower than in wild-type cultivars. In these low-amylose cultivars, amylose synthesis starts relatively late in grain development. Starch granules in the outer cell layers of the endosperm contain more amylose than those in the center. This distribution corresponds to that of granule-bound starch synthase I (GBSSI), which is more severely reduced in amount in the center of the endosperm than in the outer cell layers, relative to wild-type cultivars. A second GBSSI in the barley plant, GBSSIb, is not detectable in the endosperm and cannot account for amylose synthesis in the low-amylose cultivars. The change in the expression of GBSSI in the endosperm of the low-amylose cultivars appears to be due to a 413-bp deletion of part of the promoter and 5'-untranslated region of the gene. Although these cultivars are of diverse geographical origin, all carry this same deletion, suggesting that the low-amylose cultivars have a common waxy ancestor. Records suggest a probable source in China, first recorded in the 16th century. Two further families of waxy cultivars have no detectable amylose in the endosperm starch. These amylose-free cultivars were selected in the 20th century from chemically mutagenized populations of wild-type barley. In both cases, 1-bp alterations in the GBSSI gene completely eliminate GBSSI activity.

MeSH Terms
5' Flanking Region/genetics Alleles Amino Acid Sequence Amylose/metabolism Base Sequence Biological Transport Hordeum/enzymology,genetics Molecular Sequence Data Mutation Seeds/enzymology,genetics Sequence Deletion Sequence Homology, Amino Acid Sequence Homology, Nucleic Acid Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization Starch Synthase/genetics,metabolism Triticum/genetics,metabolism
Chemicals
Amylose granule-bound starch synthase I Starch Synthase
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Patron Nicola J
John Innes Centre, Norwich Research Park, Colney, Norfolk NR4 7UH, United Kingdom.
Smith Alison M
Fahy Brendan F
Hylton Christopher M
Naldrett Mike J
Rossnagel Brian G
Denyer Kay
References (18)
18 references, click to expand
  1. The amylose content in rice endosperm is related to the post-transcriptional regulation of the waxy gene.
    Plant J. 1995 Apr;7(4):613-22 PMID: 7742858
  2. Involvement of conserved aspartate and glutamate residues in the catalysis and substrate binding of maize starch synthase.
    Biochemistry. 2000 Jul 4;39(26):7820-5 PMID: 10869188
  3. Characterization of chitin synthase 2 of Saccharomyces cerevisiae. Implication of two highly conserved domains as possible catalytic sites.
    J Biol Chem. 1995 Jun 9;270(23):13961-7 PMID: 7775457
  4. Predicting subcellular localization of proteins based on their N-terminal amino acid sequence.
    J Mol Biol. 2000 Jul 21;300(4):1005-16 PMID: 10891285
  5. Structural analysis of the waxy locus from Hordeum vulgare.
    Nucleic Acids Res. 1988 Jul 25;16(14B):7185-6 PMID: 2970062
  6. Evidence that the "waxy" protein of pea (Pisum sativum L.) is not the major starch-granule-bound starch synthase.
    Planta. 1990 Nov;182(4):599-604 PMID: 24197382
  7. Formation and Deposition of Amylose in the Potato Tuber Starch Granule Are Affected by the Reduction of Granule-Bound Starch Synthase Gene Expression.
    Plant Cell. 1994 Jan;6(1):43-52 PMID: 12244219
  8. Three-dimensional structures of the Mn and Mg dTDP complexes of the family GT-2 glycosyltransferase SpsA: a comparison with related NDP-sugar glycosyltransferases.
    J Mol Biol. 2001 Dec 7;314(4):655-61 PMID: 11733986
  9. Wheat granule-bound starch synthase I and II are encoded by separate genes that are expressed in different tissues.
    Plant Physiol. 2000 Jan;122(1):255-64 PMID: 10631269
  10. Expression, organisation and structure of the genes encoding the waxy protein (granule-bound starch synthase) in wheat.
    Plant Mol Biol. 1993 Apr;22(1):67-82 PMID: 8499619
  11. Transcript accumulation and utilization of alternate and non-consensus splice sites in rice granule-bound starch synthase are temperature-sensitive and controlled by a single-nucleotide polymorphism.
    Plant Mol Biol. 1999 Jul;40(4):719-27 PMID: 10480395
  12. Use of alternate splice sites in granule-bound starch synthase mRNA from low-amylose rice varieties.
    Plant Mol Biol. 1998 Oct;38(3):407-15 PMID: 9747848
  13. Developmental biology of the cereal endosperm.
    Trends Plant Sci. 1999 Jul;4(7):253-257 PMID: 10407440
  14. Multiple allelism as a control mechanism in metabolic pathways: GBSSI allelic composition affects the activity of granule-bound starch synthase I and starch composition in potato.
    Mol Genet Genomics. 2001 Aug;265(6):1011-21 PMID: 11523773
  15. Systematic analysis of peptide recoveries from in-gel digestions for protein identifications in proteome studies.
    J Biomol Tech. 2000 Jun;11(2):74-86 PMID: 19499040
  16. Variation in the primary structure of waxy proteins (granule-bound starch synthase) in diploid cereals.
    Biochem Genet. 1995 Aug;33(7-8):269-81 PMID: 8595054
  17. A 56-kDa protein is a novel granule-bound starch synthase existing in the pericarps, aleurone layers, and embryos of immature seed in diploid wheat (Triticum monococcum L.).
    Planta. 1998 Dec;207(1):125-32 PMID: 9951718
  18. Characterization of a granule-bound starch synthase isoform found in the pericarp of wheat.
    Plant Physiol. 1998 Oct;118(2):451-9 PMID: 9765530
Article Info
Journal
Plant physiology
Abbr.
Plant Physiol
ISSN
0032-0889
Published
2002-09-00
Pages
190-8
Language
English
Region
United States
NLM ID
0401224
PMCID
PMC166552
Subset
IM
Databases
GENBANK
AF486508, AF486509, AF486510, AF486511, AF486512, AF486513
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