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The role of the 7S/11S globulin ratio in the gelling properties of mixed β-lactoglobulin/pea proteins systems.
- Source :
-
Food Hydrocolloids . Nov2024, Vol. 156, pN.PAG-N.PAG. 1p. - Publication Year :
- 2024
-
Abstract
- Using a combination of pea protein isolates (PPI) and β-lactoglobulin (βlg) presents an interesting approach to improve the gelling properties of PPI compared to the use of PPI alone. While controlling the 7S/11S ratio has proven effective in improving the gelling properties of PPI, more complex models need to be studied. Specifically, the effects of diverse 7S/11S ratios and the inclusion of βlg and 2S albumin on gel formation remain unexplored. Therefore, this study aimed to 1) determine the optimal 7S/11S ratios and 2) identify the interactions involved in the formation of model βlg—pea protein gels generated from globulin and albumin-enriched fractions. Results revealed that pea protein gels with a 7S/11S ratio of ∼ 1.89 achieved the highest firmness (131 Pa). Gelation was primarily driven by hydrophobic interactions (∼ 41%) involving 7S vicilin and 2S albumin, while most of the 11S legumin did not contribute to the protein gel. Conversely, a 7S/11S ratio of ≤ 1 facilitated the formation of the firmest gels (300–657 Pa) in the presence of βlg. These gels were primarily formed via disulfide bonds (36–65%) with βlg, 11S legumin, and 2S albumin as the main proteins involved, while 7S vicilin gelled independently through hydrophobic interactions. Based on these results, we propose a mechanism illustrating the interactions in mixed βlg—pea protein gels. This study provides new insights into how 7S/11S ratios, gel firmness, and protein interactions interplay during the gelation of mixed βlg–pea protein systems, paving the way for innovation in developing a new food category. [Display omitted] • Without βlg, gel firmness peaks at a 7S/11S ratio of 1.89 • Without βlg, hydrophobic interactions dominate pea protein gel formation. • Gel firmness peaks at a 7S/11S ratio ≤1 with βlg present. • With βlg, 7S independently gels through hydrophobic interactions. • With βlg, βlg, 11S, and 2S gel via disulfide bonds. [ABSTRACT FROM AUTHOR]
Details
- Language :
- English
- ISSN :
- 0268005X
- Volume :
- 156
- Database :
- Academic Search Index
- Journal :
- Food Hydrocolloids
- Publication Type :
- Academic Journal
- Accession number :
- 178400207
- Full Text :
- https://doi.org/10.1016/j.foodhyd.2024.110273