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  • Development of a genetic framework to improve the efficiency of bioactive delivery from blueberry.

Development of a genetic framework to improve the efficiency of bioactive delivery from blueberry.

Scientific reports (2020-10-16)
Molla F Mengist, Haley Burtch, Hawi Debelo, Marti Pottorff, Hamed Bostan, Candace Nunn, Sydney Corbin, Colin D Kay, Nahla Bassil, Kim Hummer, Mary Ann Lila, Mario G Ferruzzi, Massimo Iorizzo
摘要

In the present study, we applied a novel high-throughput in vitro gastrointestinal digestion model to phenotype bioaccessibility of phenolics in a diverse germplasm collection representing cultivated highbush blueberries. Results revealed significant (P < 0.05) differences between accessions, years, and accession by year interaction for relative and absolute bioaccessibility of flavonoids and phenolic acids. Broad sense heritability estimates revealed low to moderate inheritances of relative and absolute bioaccessibility, suggesting that besides environmental variables, genetics factors could control bioaccessibility of phenolics. Acylated anthocyanins had significantly higher relative bioaccessibility than non-acylated anthocyanins. Correlation analysis indicated that relative bioaccessibility did not show significant association with fruit quality or raw concentration of metabolites. The study also identified accessions that have high relative and absolute bioaccessibility values. Overall, combining the bioaccessibility of phenolics with genetic and genomic approaches will enable the identification of genotypes and genetic factors influencing these traits in blueberry.

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Sigma-Aldrich
胰脂肪酶 来源于猪胰腺, 8 × USP specifications
Sigma-Aldrich
黏液蛋白 来源于猪胃, Type II
Sigma-Aldrich
胃蛋白酶 来源于猪胃粘膜, powder, ≥400 units/mg protein
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α-淀粉酶 来源于猪胰腺, Type VI-B, ≥5 units/mg solid
Sigma-Aldrich
脂肪酶 来源于猪胰腺, Type II, ≥125 units/mg protein (using olive oil (30 min incubation)), 30-90 units/mg protein (using triacetin)