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Microbiomes of commercially-available pine nuts and sesame seeds

机译:商业型松果和芝麻的微生物

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Metagenomic analysis of food is becoming more routine and can provide important information pertaining to the shelf life potential and the safety of these products. However, less information is available on the microbiomes associated with low water activity foods. Pine nuts and sesame seeds, and food products which contain these ingredients, have been associated with recalls due to contamination with bacterial foodborne pathogens. The objective of this study was to identify the microbial community of pine nuts and sesame seeds using targeted 16S rRNA sequencing technology. Ten different brands of each seed type were assessed, and core microbiomes were determined. A total of 21 and 16 unique taxa with proportional abundances 1% in at least one brand were identified in the pine nuts and sesame seeds, respectively. Members of the core pine nut microbiome included the genera Alishewanella , Aminivibrio , Mycoplasma , Streptococcus , and unassigned OTUs in the families of Desulfobacteraceae and Xanthomonadaceae . For sesame seeds, the core microbiome included Aminivibrio , Chryseolina , Okibacterium , and unassigned OTUs in the family Flavobacteriaceae . The microbiomes of these seeds revealed that these products are dominated by environmental bacterial genera commonly isolated from soil, water, and plants; bacterial genera containing species known as commensal organisms were also identified. Understanding these microbiomes can aid in the risk assessment of these products by identifying food spoilage potential and community members which may co-enrich with foodborne bacterial pathogens.
机译:对食物的Metagenomic分析正在变得越来越多,可以提供与保质期潜力有关的重要信息和这些产品的安全性。然而,较少的信息可在与低水活性食物相关的微生物体上获得。由于细菌食源性病原体的污染,松果和含有这些成分的食品已经与召回有关。本研究的目的是使用靶向16S rRNA测序技术鉴定鉴定松果和芝麻种子的微生物群落。评估每种种子类型的十种不同品牌,并测定核心微生物胶质体。共有21和16个独特的分类群,分别在松果和芝麻中鉴定了至少一个品牌中的比例丰富的丰富度和 1%。核心松果微生物组的成员包括脱硫杆菌和Xanthomonadaceae家族中的Alishewanella,Aminiviro,支原体,链球菌和未分配的Otus。对于芝麻,核心微生物组包括氨纤维,克莱索纳,oPibacterium和家庭意大利菌族的未分配的Otus。这些种子的微生物均揭示了这些产品由常见的土壤,水和植物分离的环境细菌属占主导地位;还鉴定了称为共生生物的细菌属含有物种。了解这些微生物体可以通过识别可能与食源性细菌病原体共同丰富的食物腐败潜力和社区成员来帮助评估这些产品的风险评估。

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