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Whole-Genome Analysis of Bacillus paranthracis Qf-1 Isolated from Mink (Neogale vison)
Haotian Cai1, Yao Chen1, Xiaoyang Wu1
1College of Life Sciences, Qufu Normal University, Qufu 273100, China.
Abstract:
Bacillus paranthracis, a species of the genus Bacillus, is a Gram-positive bacterium classified as an opportunistic pathogen that can cause foodborne diarrhea and other intestinal diseases in humans and various animals. To date, there has been limited research on B. paranthracis, and there are few records of this bacterium being isolated from animal intestines. In this study, a strain named Qf-1 was isolated and purified from faecal samples of mink. Through culturomics, 16S rRNA gene sequencing, whole-genome sequencing, and average nucleotide identity (ANI) analysis, the strain was confirmed to be B. paranthracis. Whole-genome sequencing revealed that the strain has a genome size of 5.27 Mb, comprising one chromosome (5,224,739 bp) and one plasmid (51,964 bp). Functional annotation of its genome identified multiple potential pathogenic factors associated with pneumonia, including the key genes AsbD and AsbF, which facilitate bacterial colonisation of the lungs and trigger inflammatory responses, as well as EsxB and EsxL, which exacerbate lung inflammation and promote infection spread. Comparative genomics analysis revealed that this strain shares a close evolutionary relationship with previously reported B. paranthracis strains. The structure and function of the bacterial genes were analyzed in depth using multi-omics methods. Through mouse pathogenicity experiments, it was found that this bacterium may cause pneumonia and enteritis in mice. We predict that it may also pose a threat to the health of the mink. These research findings contribute to the establishment of a stable experimental model between pathogens and mink hosts, laying the foundation for further elucidating their pathogenicity and pathogenic mechanisms. This is of great significance for the diagnosis and prevention of bacterial diseases in mink in the future.
Insights
A novel Bacillus paranthracis strain, Qf-1, was isolated from mink feces. Genomic analysis revealed potential pneumonia-causing genes, and mouse studies suggest it causes pneumonia and enteritis, posing a threat to mink health.
Area of Science:
- Microbiology
- Genomics
- Pathogen Discovery
Background:
- Bacillus paranthracis is an opportunistic pathogen causing intestinal diseases.
- Limited research exists on B. paranthracis, especially concerning animal intestinal isolates.
- Mink are susceptible to various bacterial infections, necessitating pathogen surveillance.
Purpose of the Study:
- To isolate and characterize a novel Bacillus paranthracis strain from mink.
- To investigate the genomic features and potential pathogenicity of the isolated strain.
- To establish a foundation for understanding B. paranthracis pathogenicity in mink.
Main Methods:
- Isolation and purification of bacterial strain from mink fecal samples.
- Culturomics, 16S rRNA gene sequencing, and whole-genome sequencing for strain identification.
- Average nucleotide identity (ANI) analysis for taxonomic confirmation.
- Genome functional annotation and comparative genomics.
- Mouse pathogenicity experiments.
Main Results:
- A novel strain, Qf-1, was identified as Bacillus paranthracis using multiple molecular techniques.
- Whole-genome sequencing revealed a 5.27 Mb genome with genes linked to pneumonia and inflammation (AsbD, AsbF, EsxB, EsxL).
- Comparative genomics confirmed a close evolutionary relationship with known B. paranthracis strains.
- Mouse models indicated the strain can cause pneumonia and enteritis.
- The bacterium is predicted to pose a health risk to mink.
Conclusions:
- The study successfully identified and characterized a novel B. paranthracis strain from mink.
- Genomic analysis highlights potential virulence factors contributing to pneumonia and intestinal disease.
- The findings provide a basis for developing diagnostic and preventative strategies for bacterial diseases in mink.
- This research establishes a valuable experimental model for studying host-pathogen interactions in mink.

