Solvent Retention Capacity (SRC) Testing of Wheat Flour: Principles and Value in Predicting Flour Functionality in Different Wheat‐Based Food Processes and in Wheat Breeding—A Review
Определение водоудерживающей способности растворителя (SRC) пшеничной муки: принципы и значение для прогнозирования функциональных свойств муки в различных процессах производства пищевых продуктов на основе пшеницы и в селекции пшеницы — обзор
2011-09-21
SCID: 54.1/2zjveqm2
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diagnostic SRC solventsflour polymer networksgluten performance index (GPI)solvent retention capacity (SRC)wheat flour functionality
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Abstract (AI)
ABSTRACT Solvent retention capacity (SRC) technology, its history, principles, and applications are reviewed. Originally, SRC testing was created and developed for evaluating soft wheat flour functionality, but it has also been shown to be applicable to evaluating flour functionality for hard wheat products. SRC is a solvation test for flours that is based on the exaggerated swelling behavior of component polymer networks in selected individual diagnostic solvents. SRC provides a measure of solvent compatibility for the three functional polymeric components of flour—gluten, damaged starch, and pentosans—which in turn enables prediction of the functional contribution of each of these flour components to overall flour functionality and resulting finished‐product quality. The pattern of flour SRC values for the four diagnostic SRC solvents (water, dilute aqueous lactic acid, dilute aqueous sodium carbonate, and concentrated aqueous sucrose solutions), rather than any single individual SRC value, has been shown to be critical to various successful end‐use applications. Moreover, a new predictive SRC parameter, the gluten performance index (GPI), defined as GPI = lactic acid/(sodium carbonate + sucrose) SRC values, has been found to be an even better predictor of the overall performance of flour glutenin in the environment of other modulating networks of flour polymers. SRC technology is a unique diagnostic tool for predicting flour functionality, and its applications in soft wheat breeding, milling, and baking are increasing markedly as a consequence of many successful, recently published demonstrations of its extraordinary power and scope.
Key Findings
1
SRC measures solvent compatibility of gluten, damaged starch, and pentosans, enabling prediction of their contributions to flour functionality and finished-product quality.
2
SRC technology, originally developed for soft wheat, is also applicable to assessing flour functionality in hard wheat products.
3
Solvent retention capacity (SRC) testing evaluates flour functionality through exaggerated swelling of polymer networks in selected diagnostic solvents.
4
The gluten performance index, defined as lactic acid SRC divided by the sum of sodium carbonate and sucrose SRC, predicts overall glutenin performance more effectively than individual SRC measurements.
5
The pattern of SRC values across water, lactic acid, sodium carbonate, and sucrose solvents is more informative for end-use performance than any single SRC value.
Research Object
Wheat flour and its component polymer networks (gluten, damaged starch, and pentosans)
Research Subject
Flour functionality and end-use performance as predicted from solvent compatibility, SRC-value patterns, and the gluten performance index (GPI) across wheat-based food processes and breeding
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2011-09-21
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