2020Cereal ChemistryRequires access

Effect of adding acid‐soluble wheat protein to dough on quality stabilization of products in bread‐making

Chiaki Arai, Rieko Hirose, Mikiko Tozaki, Satoshi Nakamura, Satoshi Yamaguchi, Minoru Suzuki, Kiyokatsu Miyamori, Tomohiro Noguchi, Katsumi Takano

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Abstract

Abstract Backgrounds and objectives Time differences in processing with mechanized bread‐making cause changes in the rheological properties of dough. The effect of the addition of acid‐soluble wheat protein (ASP), mainly composed of gliadin, on these changes was examined. Findings Bread rolls were prepared from the same batch of dough in two different floor times. The shape of bread rolls became wider when the floor time was extended to 40 min compared with the normal time of 20 min. The addition of ASP to dough (0.5% or 0.75%) led to a reduction in the influence of the time difference. The stress applied to the sheeting roller in the molding process increased with extended floor times, although this was suppressed by the addition of ASP. Farinograph and extensigraph results as well as the results of the microstructure analysis performed using a scanning electron microscope showed that the addition of ASP to dough favorably changed the gluten network structure. Conclusions In mechanized bread‐making, the addition of ASP contributed to the uniformity of the product quality by suppressing changes in the rheological properties of dough during production. Significance and novelty The results revealed that the addition of ASP could potentially provide industrial uniformity to various bread products in mechanized bread‐making.

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What this paper is about

Abstract Backgrounds and objectives Time differences in processing with mechanized bread‐making cause changes in the rheological properties of dough. The effect of the addition of acid‐soluble wheat protein (ASP), mainly composed of gliadin, on these changes was examined. Findings Bread rolls were prepared from the same batch of dough in two different floor times. The shape of bread rolls became wider when the floor time was extended to 40 min compared with the normal time of 20 min. The addition of ASP to dough (0.5% or 0.75%) led to a reduction in the influence of the time difference. The stress applied to the sheeting roller in the molding process increased with extended floor times, although this was suppressed by the addition of ASP. Farinograph and extensigraph results as well as the results of the microstructure analysis performed using a scanning electron microscope showed that the addition of ASP to dough favorably changed the gluten network structure. Conclusions In mechanized bread‐making, the addition of ASP contributed to the uniformity of the product quality by suppressing changes in the rheological properties of dough during production. Significance and novelty The results revealed that the addition of ASP could potentially provide industrial uniformity to various bread products in mechanized bread‐making.

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Available abstract

Abstract Backgrounds and objectives Time differences in processing with mechanized bread‐making cause changes in the rheological properties of dough. The effect of the addition of acid‐soluble wheat protein (ASP), mainly composed of gliadin, on these changes was examined. Findings Bread rolls were prepared from the same batch of dough in two different floor times. The shape of bread rolls became wider when the floor time was extended to 40 min compared with the normal time of 20 min. The addition of ASP to dough (0.5% or 0.75%) led to a reduction in the influence of the time difference. The stress applied to the sheeting roller in the molding process increased with extended floor times, although this was suppressed by the addition of ASP. Farinograph and extensigraph results as well as the results of the microstructure analysis performed using a scanning electron microscope showed that the addition of ASP to dough favorably changed the gluten network structure. Conclusions In mechanized bread‐making, the addition of ASP contributed to the uniformity of the product quality by suppressing changes in the rheological properties of dough during production. Significance and novelty The results revealed that the addition of ASP could potentially provide industrial uniformity to various bread products in mechanized bread‐making.

Key concepts: Farinograph, Bread making, Food science, Gluten, Rheology, Chemistry, Leavening agent, Wheat flour

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