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February 2, 20261 citationsOpen Access

Xylanase/β-Glucanase Synergy: Enhancing Dough Structure and Bread Quality in Highland Barley–Wheat Blend

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MZMenglu ZongJWJiaqi WangTWTong Wu

Key Points

  • The aim is to improve dough properties and bread quality of a composite flour with highland barley through xylanase and beta-glucanase.
  • Composite flour containing 40% highland barley was used
  • Rheological analysis measured dough properties before and after enzyme treatment
  • Low-field NMR analyzed water distribution
  • Microstructural observations evaluated gluten network structure
  • Sensory evaluations assessed bread quality
  • Dough rigidity decreased by ~40% and extensibility increased by ~25% with enzyme treatment
  • Enzyme-treated bread showed a 35% higher specific volume
  • Hardness reduced by ~50%, with improved springiness and cohesiveness
  • Sensory scores for texture, taste, and acceptability were superior in enzyme-treated bread
  • Single-enzyme treatments provided partial improvements, emphasizing the necessity of using both enzymes

Abstract

Highland barley (HB), a nutrient-rich grain, is limited in bread applications due to its weak gluten network and high content of non-starch polysaccharides (NSPs) such as β-glucan and arabinoxylan. This study aimed to improve the dough properties and bread quality of a composite flour containing 40% whole-grain highland barley through synergistic use of xylanase and β-glucanase. Rheological analysis revealed that dual-enzyme treatment significantly reduced dough rigidity (G′ decreased by ~40%) and increased extensibility (tan δ raised by ~25%), shifting the network from a brittle NSP-dominated gel toward an elastic gluten-based structure. Low-field NMR showed that enzymes promoted redistribution of water from tightly bound states with NSPs to protein phases, enhancing gluten hydration. Microstructural observations confirmed a more continuous and uniform gluten network with finely embedded starch granules. Consequently, enzyme-treated bread exhibited a 35% higher specific volume, reduced hardness (~50% lower), improved springiness and cohesiveness, and superior sensory scores in texture, taste, and overall acceptability compared to the untreated composite. Single-enzyme treatments yielded partial improvements, highlighting the necessity of synergistic action. These results demonstrate that combined xylanase and β-glucanase treatment effectively mitigates the negative impact of NSPs, enabling the production of high-quality, sensorially appealing HB-enriched bread with optimized structural and textural properties.

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Cite This Study

Zong et al. (2026) studied this question.

synapsesocial.com/papers/6980fff5c1c9540dea812ecahttps://doi.org/10.3390/foods15030486
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