Abstract
Wheat (Triticum sp.) is one of the most widely consumed grains in human nutrition, and bread is its primary product, the quality of which is dependent on grain technology. When processing wheat into flour, it's important to understand the basic chemical composition components that are direct indications of wheat grain technological quality, such as water, starch, protein, dietary fiber, and fat. As a result, experiments conducted in various microclimatic conditions aid in determining the impact of genotypes and environmental factors, as well as their interaction, on total protein content, sedimentation value, and amylolytic activity, all of which are important indicators of wheat technological quality. Microclimatic growth circumstances had a statistically significant impact on measures of grain technological quality in genotypes of three types of wheat (Triticum aestivum, Triticum spelta and Triticum compactum). The stable reactivity of genotypes with the external environment was examined through a more extensive analysis, and genotypes that would serve as suitable parental components in the wheat breeding program with better technological quality were selected.
Publisher
Centre for Evaluation in Education and Science (CEON/CEES)
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