The Wheat Starchy Endosperm Protein Gradient as a Function of Cultivar and N-fertilization Is Reflected in Mill Stream Protein Content and Composition

Градиент содержания белка в мучнистом эндосперме пшеницы в зависимости от сорта и азотного удобрения отражается в содержании и составе белка в потоках помола
Wisse Hermans, Justine Busschaert, Yamina De Bondt, Niels A. Langenaeken, Christophe M. Courtin
2023-11-21

N-fertilizationgluten compositionmill fractionsprotein gradientwheat starchy endosperm
Within the wheat starchy endosperm, the protein content increases biexponentially from the inner to outer endosperm. Here, we studied how this protein gradient is reflected in mill fractions using three cultivars (Claire, Apache, and Akteur) grown without and with N-fertilization (300 kg N ha−1). The increasing protein content in successive break fractions was shown to reflect the protein gradient within the starchy endosperm. The increasing protein content in successive reduction fractions was primarily due to more aleurone contamination and protein-rich material being harder to reduce in particle size. The miller’s bran fractions had the highest protein content because of their high sub-aleurone and aleurone content. Additionally, the break fractions were used to deepen our understanding of the protein composition gradient. The gradient in relative gluten content, increasing from inner to outer endosperm, was more pronounced without N-fertilization than with and reached levels up to 87.3%. Regarding the gluten composition gradient, no consistent trends were observed over cultivars when N-fertilization was applied. This could, at least partly, explain why there is no consensus on the gluten composition gradient in the literature. This study aids millers in managing fluctuations in the functionality of specific flour streams, producing specialized flours, and coping with lower-quality wheat.
1
Increasing protein content in reduction fractions primarily resulted from greater aleurone contamination and the resistance of protein-rich material to size reduction.
2
Miller’s bran fractions had the highest protein content because they contained substantial sub-aleurone and aleurone material.
3
Nitrogen fertilization produced no consistent cultivar-wide trend in gluten composition gradients, potentially explaining conflicting findings in previous literature and informing specialized flour production.
4
Protein content increased biexponentially from the inner to outer starchy endosperm and was reflected by increasing protein levels in successive break fractions.
5
Relative gluten content increased toward the outer endosperm, with a stronger gradient without N-fertilization and values reaching 87.3%.

Wheat starchy endosperm and its mill fractions from three cultivars grown with and without N-fertilization

The spatial gradient and composition of endosperm proteins, including gluten content and composition, and its reflection in mill-stream protein content and composition

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2023-11-21
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Wisse Hermans
Justine Busschaert
Yamina De Bondt
Niels A. Langenaeken
Christophe M. Courtin
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