Multi-omics-based insights into the microbial community composition and quality characteristic differentiation potential between Xuanwei and Iberian dry-cured hams
作者:Zhou N, Tan J, Tang S, Du Y, Xun W, Yang Y, Li J, Weng C, Yang K, Dong H, Pu E, Liao G, Wang G · 发表于:International journal of food microbiology · 年份:2026 · DOI:10.1016/j.ijfoodmicro.2026.111980 · 研究领域:Microbiota、Meat Products、Animals、Bacteria、Multiomics、Swine、Metabolomics、Taste、Fermentation、Food Microbiology、Staphylococcus、Fungi
To uncover the microbial underpinnings of quality and flavor differences between Xuanwei ham (XWH) and Iberian ham (IRH), this study integrated high-throughput sequencing with metabolomics and volatilomics to establish microbiota-metabolite-flavor linkages. Physicochemical characterization revealed that XWH showed higher moisture, water activity, and salt content, whereas IRH had higher fat and protein. These matrix differences imposed selective pressures on microbial colonization. The IRH surface exhibited higher bacterial diversity, while the XWH interior showed higher bacterial diversity; XWH also had higher fungal diversity overall. Staphylococcus dominated both hams, whereas Debaryomyces yeasts were enriched inside hams. Metabolomics identified 312 differential metabolites, mainly enriched in amino acid pathways. XWH was enriched in sweet-tasting amino acids and short-chain fatty acids, while IRH featured glutamic acid, polyunsaturated fatty acids, and phenolic acid esters. Volatilomics revealed 24 key differential odorants: IRH was enriched in medium-to-long chain ketones and aldehydes from lipid oxidation, and XWH accumulated short-chain ketones and alcohols from carbohydrate fermentation. Correlation analysis showed that Staphylococcus and Debaryomyces were strongly positively correlated with most differential metabolites and key volatiles, indicating their driving role in shaping the metabolic landscape. Tight positive correlations between flavor compounds and their ...