Microbiota diversity of three Brazilian native fishes during ice and frozen storage

生物 美索不达米亚皮亚拉克 食品科学 食物腐败 微生物群 微生物学 乳球菌 厚壁菌 Pacu公司 16S核糖体RNA 细菌 渔业 乳酸 乳酸乳球菌 生物信息学 遗传学
作者
Rafaela C. Baptista,Ilario Ferrocino,Matheus Pavani,Tatiane Melina Guerreiro,Antonio A. Câmara,Émilie Läng,Juliana Lane Paixão dos Santos,Rodrigo Ramos Catharino,Elenilson G. Alves Filho,Suelí Rodrigues,Edy Sousa de Brito,Magdevis Y.R. Caturla,Anderson S. Sant’Ana,Luca Cocolin
出处
期刊:Food Microbiology [Elsevier BV]
卷期号:124: 104617-104617
标识
DOI:10.1016/j.fm.2024.104617
摘要

This study aimed to assess the bacterial microbiota involved in the spoilage of pacu (Piaractus mesopotamics), patinga (female Piaractus mesopotamics x male Piaractus brachypomus), and tambacu (female Colossoma macropomum × male Piaractus mesopotamics) during ice and frozen storage. Changes in the microbiota of three fish species (N = 22) during storage were studied through 16S rRNA amplicon-based sequencing and correlated with volatile organic compounds (VOCs) and metabolites assessed by nuclear magnetic resonance (NMR). Storage conditions (time and temperature) affected the microbiota diversity in all fish samples. Fish microbiota comprised mainly of Pseudomonas sp., Brochothrix sp., Acinetobacter sp., Bacillus sp., Lactiplantibacillus sp., Kocuria sp., and Enterococcus sp. The relative abundance of Kocuria, P. fragi, L. plantarum, Enterococcus, and Acinetobacter was positively correlated with the metabolic pathways of ether lipid metabolism while B. thermosphacta and P. fragi were correlated with metabolic pathways involved in amino acid metabolism. P. fragi was the most prevalent spoilage bacteria in both storage conditions (ice and frozen), followed by B. thermosphacta. Moreover, the relative abundance of identified Bacillus strains in fish samples stored in ice was positively correlated with the production of VOCs (1-hexanol, nonanal, octenol, and 2-ethyl-1-hexanol) associated with off-flavors.

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