Short-chain amylopectin and long-chain amylose drive distinct wheat starch gel networks with similar low
Jing Wang1, Xiangqi Fan2, Jiaying Shang3
1College of Food Science and Engineering, Henan University of Technology, Zhengzhou, 450001, China.
Abstract:
Reducing staple-food digestibility is an important nutritional target for wheat starch-based products, yet how starch chain architecture regulates gel digestibility remains unclear. In this study, starches from 14 wheat varieties were used to prepare 40% (w/w) gels, and their gel structure, in vitro digestibility, and chain-length evolution during digestion were investigated. The results showed that elevated short-chain amylopectin or long-chain amylose produced gel networks with different macroscopic mechanics but similar local barrier function, yielding comparable digestion rates and lower final digestibility (77.71% and 79.72%, respectively). A high proportion of short-chain amylopectin promoted densely packed A-type double helices through high viscosity and a uniform hydrogen-bonding environment, forming a homogeneous barrier against enzyme diffusion and hydrolysis. In contrast, long-chain amylose more readily reorganized with amylopectin into a stable semicrystalline continuous network, whose resistance also arose from dense internal order. The enrichment of DP 24-34 and DP 44-58 chains in digestion residues further indicates that these fractions were major contributors to enzyme resistant structures. DP 24-34 chains favored local ordered lamellae, whereas DP 44-58 chains acted as internal supporting scaffolds. This study provides key approaches for tailoring starch digestibility through molecular design.
Related Concept Videos
Chemistry of Carbohydrates
Carbohydrate Digestion
Introduction to Carbohydrates
Sugars as Energy Storage Molecules
Carbohydrate Absorption
After being swallowed, the partially digested carbohydrates mix with gastric secretions in the stomach. However, the acidic environment...
Cellulose and Pectic Polysaccharides
As a cell matures, its cell wall specializes according to its type. For example, the parenchyma cells of...


