The effects of enzymatic modification on the functional ingredient - Dietary fiber extracted from potato residue
Qianyun Ma, Ziye Ma, Wenxiu Wang, Jianlou Mu, Yaqiong Liu, Jie Wang +4 more
LWT
Abstract
Potato residue obtained from industrial by-product is a rich source of dietary fiber. In this study, the potato residue dietary fiber was modified by cellulase and xylanase. The monosaccharide content, morphologic and structural characteristics, functional properties of modified dietary fiber were evaluated. The results show that cellulase/xylanase treatment significantly increased the soluble dietary fiber from 17.45% to 26.82%. The enzymatic modified dietary fiber exhibited higher (p < 0.05) soluble monosaccharide content, a stronger thermostability, and a more porous structure compared to the unmodified dietary fiber. These changes enhanced (p < 0.05) functional properties of potato residue dietary fiber, including water and oil holding capacity, swelling capacity, glucose and cholesterol absorption capacity, cation exchange capacity. Therefore, the cellulase/xylanase modification improved the quality of the dietary fiber and had the potential to increase values of the potato residue in food applications.
Extracted Claims
3 claims extracted from this paper into the knowledge graph
enzymatic modified dietary fiber enhanced functional properties of potato residue dietary fiber, including water and oil holding capacity, swelling capacity, glucose and cholesterol absorption capacity, cation exchange capacity
“These changes enhanced (p < 0.05) functional properties of potato residue dietary fiber, including water and oil holding capacity, swelling capacity, glucose and cholesterol absorption capacity, catio...”
cellulase/xylanase treatment increased soluble dietary fiber from 17.45% to 26.82%
“The results show that cellulase/xylanase treatment significantly increased the soluble dietary fiber from 17.45% to 26.82%”
enzymatic modified dietary fiber exhibited higher soluble monosaccharide content, a stronger thermostability, and a more porous structure
“The enzymatic modified dietary fiber exhibited higher (p < 0.05) soluble monosaccharide content, a stronger thermostability, and a more porous structure compared to the unmodified dietary fiber”