Integrating metagenomic and isolation strategies revealed high contamination of pathogenies and resistome in market shrimps

抵抗性 基因组 生物 流动遗传元素 厚壁菌 抗生素耐药性 毒力 肠沙门氏菌 致病菌 微生物学 质粒 拟杆菌 细菌 遗传学 沙门氏菌 基因 16S核糖体RNA
作者
Lianwei Ye,Wei Wang,Yaling Wang,Qiao Hu,Liang Zhong,Heng Heng,Zhihao Guo,Runsheng Li,Edward Wai Chi Chan,Sheng Chen
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:926: 171924-171924
标识
DOI:10.1016/j.scitotenv.2024.171924
摘要

This study employs a comprehensive approach combining metagenomic analysis and bacterial isolation to elucidate the microbial composition, antibiotic resistance genes (ARGs), and virulence factors (VFGs) present in shrimps from market and supermarket. Metagenomic analysis of shrimps revealed a dominance of Proteobacteria and Bacteroidetes with Firmicutes notably enriched in some samples. On the other hand, the dominant bacteria isolated included Citrobacter portucalensis, Escherichia coli, Salmonella enterica, Vibrio species and Klebsiella pneumonaie. Metagenomic analysis unveiled a diverse spectrum of 23 main types and 380 subtypes of ARGs in shrimp samples including many clinical significant ARGs such as blaKPC, blaNDM, mcr, tet(X4) etc. Genomic analysis of isolated bacterial strains identified 14 ARG types with 109 subtype genes, which complemented the metagenomic data. Genomic analysis also allowed us to identify a rich amount of MDR plasmids, which provided further insights into the dissemination of resistance genes in different species of bacteria in the same samples. Examination of VFGs and mobile genetic elements (MGEs) in both metagenomic and bacterial genomes revealed a complex landscape of factors contributing to bacterial virulence and genetic mobility. Potential co-occurrence patterns of ARGs and VFGs within human pathogenic bacteria underlined the intricate interplay between antibiotic resistance and virulence. In conclusion, this integrated analysis for the first time provides a comprehensive view and sheds new light on the potential hazards associated with shrimp products in the markets. The findings underscore the necessity of ongoing surveillance and intervention strategies to mitigate risks posed by antibiotic-resistant bacteria in the food supply chain using the novel comprehensive approaches.
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