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Fraction 1 Protein and the Origin of Polyploid Wheats

K. Chen, John C. Gray, S. G. Wildman

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Abstract

The nature of the interspecific hybridizations giving rise to the polyploid wheats has been determined from an analysis of the polypeptide compositions of fraction 1 proteins isolated from diploid, tetraploid, and hexaploid wheat species. In the origins of the tetraploid wheat, the B-genome donor provided the chloroplast genome and was therefore the maternal parent in the cross with Triticum monococcum . Subsequently, the tetraploid wheat, T. dicoccum , was the maternal parent in the cross with Aegilops squarrosa , giving rise to the hexaploid wheat, T. aestivum . Of the small number of diploid species examined, only Ae. speltoides has a chloroplast genome similar to that of the polyploid wheats.

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The nature of the interspecific hybridizations giving rise to the polyploid wheats has been determined from an analysis of the polypeptide compositions of fraction 1 proteins isolated from diploid, tetraploid, and hexaploid wheat species. In the origins of the tetraploid wheat, the B-genome donor provided the chloroplast genome and was therefore the maternal parent in the cross with Triticum monococcum . Subsequently, the tetraploid wheat, T. dicoccum , was the maternal parent in the cross with Aegilops squarrosa , giving rise to the hexaploid wheat, T. aestivum . Of the small number of diploid species examined, only Ae. speltoides has a chloroplast genome similar to that of the polyploid wheats.

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Available abstract

The nature of the interspecific hybridizations giving rise to the polyploid wheats has been determined from an analysis of the polypeptide compositions of fraction 1 proteins isolated from diploid, tetraploid, and hexaploid wheat species. In the origins of the tetraploid wheat, the B-genome donor provided the chloroplast genome and was therefore the maternal parent in the cross with Triticum monococcum . Subsequently, the tetraploid wheat, T. dicoccum , was the maternal parent in the cross with Aegilops squarrosa , giving rise to the hexaploid wheat, T. aestivum . Of the small number of diploid species examined, only Ae. speltoides has a chloroplast genome similar to that of the polyploid wheats.

Key concepts: Polyploid, Fraction (chemistry), Biology, Chemistry, Genetics, Ploidy, Chromatography, Gene

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