Department of Agricultural Sciences, University of Naples Federico II, Portici, Italy.
Department of Agricultural Sciences, University of Naples Federico II, Portici, Italy; Task Force on Microbiome Studies, University of Naples Federico II, Italy.
Food Res Int. 2022 Jul;157:111242. doi: 10.1016/j.foodres.2022.111242. Epub 2022 Apr 16.
The diffusion of high-throughput sequencing has dramatically changed the study of food microbial ecology. Amplicon-based description of the microbial community may be routinary implemented in the food industry to understand how the processing parameters and the raw material quality may affect the microbial community of the final product, as well as how the community changes during the shelf-life. In addition, application of shotgun metagenomics may represent an invaluable resource to understand the functional potential of the microbial community, identifying the presence of spoilage-associated activities or genes related to pathogenesis. Finally, retrieving Metagenome-Assembled Genomes (MAGs) of relevant species may be useful for strain-tracking along the food chain and in case of food poisoning outbreaks. This review gives an overview of the possible applications of sequencing-based approaches in the study of food microbial ecology, highlighting limitations that still prevent the spreading of these techniques to the food industry.
高通量测序的普及极大地改变了食品微生物生态学的研究方式。基于扩增子的微生物群落描述方法在食品工业中可能已经常规实施,以了解加工参数和原材料质量如何影响最终产品的微生物群落,以及在保质期内群落如何变化。此外, shotgun 宏基因组学的应用可能是了解微生物群落功能潜力的宝贵资源,可确定与腐败相关的活动或与发病机制相关的基因的存在。最后,检索相关物种的宏基因组组装基因组 (MAGs) 可用于在食物链中跟踪菌株,如果发生食物中毒爆发,也可用于跟踪菌株。本文综述了基于测序的方法在食品微生物生态学研究中的可能应用,强调了仍然存在的限制因素,这些因素阻碍了这些技术在食品工业中的广泛应用。