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◆ Foods2025-12-02· Amylopectin

Investigating the Impact of Amylopectin Chain-Length Distribution on the Structural and Functional Properties of Waxy Rice Starch

Waqar ul Zaman, Zainab Ijaz, Muhammad Yousaf Nadeem, Shibbir Ahmed, Enpeng Li

原始摘要(英文原文)· Original abstract
This study investigated how amylopectin (AP) chain-length distribution (CLD) influences the structural and functional properties of ten waxy rice varieties through a multiscale analysis. The fitting CLD parameters revealed that varieties such as YN12 and GMN2 contained the highest proportions of intermediate chains (hiii~14.5~10.2) and long chains (hv~0.552~0.477), resulting in higher gelatinization temperatures, including onset temperatures (To~60.2~66.4 °C), temperature peak (Tp~72.0~72.2 °C), and the conclusion temperatures (Tc~80.8~79.4 °C). Sample YN12 exhibited the lowest breakdown viscosity (BDV~748 cP), indicating higher thermal stability and stable pasting behavior. All of the samples showed relative crystallinity (Rc%) ranging from 19.3 to 22.8% with lamellar spacing of 8.8~9.4 nm. Sample YN12 exhibited the lowest enzymatic digestion rate (k~1.48 × 10−2 min−1) and the highest resistant starch (Cres~9.81%), reflecting restricted enzyme accessibility. In contrast, sample SN9714 and ZN106, characterized by a higher proportion of shorter branches in the long-chain region of AP CLD (βvi~3.75~2.53), exhibited greater BDV (1407 cP) and faster digestion kinetics (k~1.90 × 10−2 min−1). The Rc% (22.83%) of NGXN was positively correlated with gelatinization enthalpy (ΔH~14.8 J/g). These findings highlight the pivotal role of AP CLDs in determining the structural, thermal, pasting, and digestive properties of waxy rice starch, offering molecular-level guidance for the development of rice-based ingredients with tailored functional characteristics.
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Investigating the Impact of Amylopectin Chain-Length Distribution on the Structural and Functional Properties of Waxy Rice Starch — 科研速览 Science Skim