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Updated: Feb 7, 2026

Isolation and Genome Analysis of Single Virions using 'Single Virus Genomics'
Published on: May 26, 2013
Comparative genomic analysis of Enterococcus faecalis: insights into their environmental adaptations
Qiuwen He1,2, Qiangchuan Hou1,2, Yanjie Wang1,2
1Key Laboratory of Dairy Biotechnology and Engineering, Ministry of Education P.R. C, Inner Mongolia Agricultural University, Huhhot, 010018, People's Republic of China.
Background:
Enterococcus faecalis is widely studied as a common gut commensal and a nosocomial pathogen. In fact, Enterococcus faecalis is ubiquitous in nature, and it has been isolated from various niches, including the gastrointestinal tract, faeces, blood, urine, water, and fermented foods (such as dairy products). In order to elucidate the role of habitat in shaping the genome of Enterococcus faecalis, we performed a comparative genomic analysis of 78 strains of various origins.
Results:
Although no correlation was found between the strain isolation habitat and the phylogeny of Enterococcus faecalis from our whole genome-based phylogenetic analysis, our results revealed some environment-associated features in the analysed Enterococcus faecalis genomes. Significant differences were found in the genome size and the number of predicted open reading frames (ORFs) between strains originated from different environments. In general, strains from water sources had the smallest genome size and the least number of predicted ORFs. We also identified 293 environment-specific genes, some of which might link to the adaptive strategies for survival in particular environments. In addition, the number of antibiotic resistance genes was significantly different between strains isolated from dairy products, water, and blood. Strains isolated from blood had the largest number of antibiotic resistance genes.
Conclusion:
These findings improve our understanding of the role of habitat in shaping the genomes of Enterococcus faecalis.
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