淀粉
支化(高分子化学)
食品科学
极限抗拉强度
网络结构
化学
糖原分支酶
材料科学
复合材料
酶
生物化学
机器学习
计算机科学
糖原合酶
作者
Jiayan Zhang,Haocun Kong,Caiming Li,Xiaofeng Ban,Zhengbiao Gu,Zhaofeng Li
标识
DOI:10.1016/j.carbpol.2022.119612
摘要
Rice noodle with excellent edible quality usually needs a dense gel network structure, but the dense structure is detrimental to the entry of water molecules during dried rice noodle rehydration. To combine the conflict requirements, we described the branching modification of rice starch using 1,4- α- glucan branching enzyme (GBE). Highly branched starch with a short cluster structure reduced fractal dimension and crystallite thickness while increasing mesh size and hydrophilicity of rice noodle gel network. Rice noodles derived from rice soaked with 128 U/g of GBE had a desirable rehydration time (370 s), which was reduced by 39.84% compared to the control. Meanwhile, the shorter double helix formed by the short cluster contributed to the improved short-range order, resulting in GBE-modified rice noodles with significantly higher tensile strength than control. These findings demonstrate that manipulating the branching degree of starch is an effective method for producing high-quality instant rice noodles.
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