Effects of Auricularia auricula-judae polysaccharide on pasting, gelatinization, rheology, structural properties and in vitro digestibility of kidney bean starch

Auricularia auricula-judae polysaccharide (AP) has unique molecular structures and multiple bioactivities with excellent gel-forming property and thermal tolerance. However, few researches focus on the interactions between AP and legume starches. In this study, the effects of AP on the pasting, gela...

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Veröffentlicht in:International journal of biological macromolecules 2021-11, Vol.191, p.1105-1113
Hauptverfasser: Zhou, Rui, Wang, Yijun, Wang, Zaixu, Liu, Ke, Wang, Qi, Bao, Honghui
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Sprache:eng
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Zusammenfassung:Auricularia auricula-judae polysaccharide (AP) has unique molecular structures and multiple bioactivities with excellent gel-forming property and thermal tolerance. However, few researches focus on the interactions between AP and legume starches. In this study, the effects of AP on the pasting, gelatinization, rheology, microstructure, and in vitro digestibility of kidney bean starch (KBST) were evaluated. The pasting, gelling and structural properties of AP-KBST mixtures were characterized by rapid visco analyzer, rheometry, texture analyzer, laser particle analyzer, low-field nuclear magnetic resonance, Fourier transform infrared spectroscopy and scanning electron microscopy, respectively. And an in vitro method was employed to measure the digestibility of AP-KBST composites. The pasting viscosity, swelling degree of starch granules, viscoelasticity, gel strength, cold storage stability and water-retention capacity of KBST were enhanced with increasing AP concentration. The combination of AP and KBST exhibited a higher short-range ordered and a firmer and denser structure than that of KBST alone. Moreover, AP increased the contents of resistant starch and slowly digestible starch, which were positively correlated with the storage modulus and the degree of order, thereby suggesting that the formation of strong and ordered gel network structure by synergistic interactions between AP and KBST was responsible for the reduced starch digestibility. •AP greatly influenced the pasting properties of KBST.•AP increased the viscoelasticity and cold storage stability of KBST.•AP treated gels have higher ordered structures and thicker cell walls.•AP significantly decreased KBST digestibility in vitro.•The G′ and DO values of AP/KBST were positively correlated with the SDS and RS contents.
ISSN:0141-8130
1879-0003
DOI:10.1016/j.ijbiomac.2021.09.110