Pesquisa Agropecuária Brasileira | |
Subunit composition of seed storage proteins in high-protein soybean genotypes | |
Ksenija Taski-ajdukovic1  Vuk Djordjevic1  Milos Vidic1  Milka Vujakovic1  | |
[1] ,Institute for Field and Vegetable Crops,Serbia | |
关键词: Glycine max; β-conglycinin; glycinin; protein content; subunit composition; Glycine max; β-conglicinina; glicinina; conteúdo de proteína; composição das subunidades; | |
DOI : 10.1590/S0100-204X2010000700013 | |
来源: SciELO | |
【 摘 要 】
The objective of this work was to quantify the accumulation of the major seed storage protein subunits, β-conglycinin and glycinin, and how they influence yield and protein and oil contents in high-protein soybean genotypes. The relative accumulation of subunits was calculated by scanning SDS-PAGE gels using densitometry. The protein content of the tested genotypes was higher than control cultivar in the same maturity group. Several genotypes with improved protein content and with unchanged yield or oil content were developed as a result of new breeding initiatives. This research confirmed that high-protein cultivars accumulate higher amounts of glycinin and β-conglycinin. Genotypes KO5427, KO5428, and KO5429, which accumulated lower quantities of all subunits of glycinin and β-conglycinin, were the only exceptions. Attention should be given to genotypes KO5314 and KO5317, which accumulated significantly higher amounts of both subunits of glycinin, and to genotypes KO5425, KO5319, KO539 and KO536, which accumulated significantly higher amounts of β-conglycinin subunits. These findings suggest that some of the tested genotypes could be beneficial in different breeding programs aimed at the production of agronomically viable plants, yielding high-protein seed with specific composition of storage proteins for specific food applications.
【 授权许可】
CC BY
All the contents of this journal, except where otherwise noted, is licensed under a Creative Commons Attribution License
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