Distribution of Arabinoxylans and Their Relationship with Physiochemical and Rheological Properties in Wheat Flour Mill Streams as an Effective Way to Predict Flour Functionality

Распределение арабиноксиланов и их взаимосвязь с физико-химическими и реологическими свойствами потоков пшеничной муки на мукомольном предприятии как эффективный способ прогнозирования функциональных свойств муки
Agnieszka Wójtowicz, Piotr Lewko, Marek Gancarz
2023-04-27

arabinoxylansflour functionalityprincipal component analysisrheological propertieswheat flour mill streams
The aim of the study was to evaluate wheat flour fractions and the relationships between the rheological properties of wheat flour mill streams with arabinoxylans content to predict flour functionality. The tested wheat variety was IS Laudis and an industrial milling station with several roll sections was employed to reach 30 passages of flour streams. Each mill stream fraction was analyzed separately. Several physiochemical (moisture, ash content, falling number, wet gluten content, gluten index, and damaged starch content) and rheological properties were evaluated by means of utilizing various test apparatus and techniques. The total content of non-starch polysaccharides and arabinoxylans, as well as soluble and insoluble fractions were investigated. Results showed significant differences between the mill streams in terms of the content of physicochemical parameters and rheological properties, as well as in soluble and insoluble fractions of non-starch polysaccharides and arabinoxylans. The relationships between the tested parameters and PCA analysis can be useful for millers who can then select and blend several flour streams to obtain a maximum amount of flour with specified characteristics. A better understanding of the origin and function of different fractions and the role of arabinoxylans and their fractions in the milling process will allow the development of wheat flour blends with the desired functionality. Flours from late reduction and sizing passages (C and R) as well as from sorting filter (V) streams showed high ash content as well as T-NSP and T-AX levels, so the final content of NSP in flour blends may be balanced by the application of the proper amount of C6–C7 and R5 stream flours.
1
Arabinoxylan and non-starch polysaccharide contents, including soluble and insoluble fractions, differed significantly among wheat flour mill streams.
2
Balancing final flour NSP content may require controlled incorporation of C6–C7 and R5 stream flours into blends.
3
Late reduction and sizing streams (C and R) and sorting-filter stream V had high ash, total non-starch polysaccharide, and total arabinoxylan levels.
4
Mill streams showed significant variation in physicochemical and rheological properties, including ash, gluten-related parameters, damaged starch, and dough behavior.
5
Relationships among arabinoxylan content, flour characteristics, and rheology, supported by PCA, can guide stream selection and blending to achieve targeted flour functionality.

Wheat flour mill stream fractions from the industrial milling of the IS Laudis wheat variety

The distribution of arabinoxylans and their relationships with physicochemical and rheological properties for predicting flour functionality

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2023-04-27
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Agnieszka Wójtowicz
Piotr Lewko
Marek Gancarz
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