A highly digestible sorghum mutant cultivar exhibits a unique folded structure of endosperm protein bodies
- 2 May 2000
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 97 (10) , 5065-5070
- https://doi.org/10.1073/pnas.080076297
Abstract
The endosperm of a sorghum mutant cultivar, with high in vitro uncooked and cooked protein digestibilities, was examined by transmission electron microscopy and alpha-, beta-, and gamma-kafirins (storage proteins) were localized within its protein bodies. Transmission electron microscopy micrographs revealed that these protein bodies had a unique microstructure related to high protein digestibility. They were irregular in shape and had numerous invaginations, often reaching to the central area of the protein body. Protein bodies from normal cultivars, such as P721N studied here, with much lower uncooked and cooked digestibilities are spherical and contain no invaginations. Immunocytochemistry results showed that the relative location of alpha- and beta-kafirins within the protein bodies of the highly digestible genotype were similar to the normal cultivar, P721N. Gamma-kafirin, however, was concentrated in dark-staining regions at the base of the folds instead of at the protein body periphery, as is typical of normal cultivars. The resulting easy accessibility of digestive enzymes to alpha-kafirin, the major storage protein, in addition to the increased surface area of the protein bodies of the highly digestible cultivar appear to account for its high in vitro protein digestibility.Keywords
This publication has 27 references indexed in Scilit:
- Discovery of Grain Sorghum Germ Plasm with High Uncooked and Cooked In Vitro Protein DigestibilitiesCereal Chemistry Journal, 1998
- Condensed Tannins Are Only Partially Responsible for Variations in Nutrient Digestibilities of Sorghum Grain CultivarsJournal of Agricultural and Food Chemistry, 1996
- Two Structural Domains Mediate Two Sequential Events in [gamma]-Zein Targeting: Protein Endoplasmic Reticulum Retention and Protein Body Formation.Plant Cell, 1994
- Two Structural Domains Mediate Two Sequential Events in g-Zein Targeting: Protein Endoplasmic Reticulum Retention and Protein Body FormationPlant Cell, 1994
- Traditional processing of high-tannin sorghum grain in Uganda and its effect on tannin, protein digestibility, and rat growthJournal of Agricultural and Food Chemistry, 1992
- Purification and immunocytochemical localization of kafirins inSorghum bicolor (L. Moench) endospermProtoplasma, 1992
- Nucleotide Sequence of a cDNA Clone Encoding γ-Kafirin Protein from Sorghum bicolorPlant Physiology, 1991
- Proposed nomenclature for the alcohol-soluble proteins (kafirins) of Sorghum bicolor (L. Moench) based on molecular weight, solubility, and structureJournal of Agricultural and Food Chemistry, 1991
- Changes in the zein composition of protein bodies during maize endosperm development.Plant Cell, 1989
- Aggregation of Lysine-Containing Zeins into Protein Bodies in Xenopus OocytesScience, 1988