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Efficient Nucleic Acid Extraction and 16S rRNA Gene Sequencing for Bacterial Community Characterization
Published on: April 14, 2016
Nanopore 16S-Full Length and ITS Sequencing for Microbiota Identification in Intra-Abdominal Infections
Jian-Jhou Liao1,2, Yong-Sian Chen1, Hui-Chen Lin1
1Division of General Surgery, Department of Surgery, Taichung Veterans General Hospital, Taichung 40705, Taiwan.
Abstract:
Background/Objectives: Intra-abdominal infections (IAIs) constitute significant clinical challenges that can rapidly progress to life-threatening conditions if not promptly diagnosed and treated. Traditional pathogen identification methodologies, predominantly culture-based, frequently necessitate extended turnaround times (TATs) and exhibit limitations in detecting polymicrobial or anaerobic infections. Methods: We implemented Oxford Nanopore Technology (ONT) sequencing to analyze the microbiota in patients with IAIs at Taichung Veterans General Hospital. The study cohort comprised sixteen patients with IAIs. Following specimen collection, DNA extraction was performed, and then full-length 16S rRNA and ITS region amplification and subsequent ONT sequencing were conducted. Results: Conventional clinical culture-based methodologies detected pathogens in 13 patients. Among the 14 successfully sequenced specimens, ONT sequencing elucidated a diverse spectrum of bacteria and fungi, with read counts ranging from 375 to 19,716. Polymicrobial and anaerobe-enriched communities were predominantly observed in lower gastrointestinal tract infections, specifically colonic or small bowel perforations, whereas upper gastrointestinal perforations, including those of the stomach or duodenum, were frequently dominated by Streptococcus, Granulicatella, or Candida species. The sequencing identified pathogens concordant with culture results, including Escherichia coli, Enterococcus, and Candida albicans. In addition, anaerobic or low-abundance taxa were exclusively identifiable through sequencing methodologies. Conclusions: ONT sequencing facilitated results within up to 24 h and successfully detected pathogens in culture-negative cases. These findings underscore the utility of ONT sequencing as an expeditious and comprehensive diagnostic modality for IAIs.
Insights
Oxford Nanopore Technology (ONT) sequencing offers rapid and comprehensive pathogen detection for intra-abdominal infections (IAIs). This advanced method identifies diverse microbes, including anaerobes and fungi, often missed by traditional cultures, improving diagnosis and treatment.
Area of Science:
- Microbiology
- Genomics
- Infectious Diseases
Background:
- Intra-abdominal infections (IAIs) pose significant clinical challenges, potentially leading to severe outcomes if not treated promptly.
- Conventional culture-based methods for pathogen identification in IAIs have limitations, including long turnaround times (TATs) and difficulty detecting polymicrobial or anaerobic infections.
Purpose of the Study:
- To evaluate the utility of Oxford Nanopore Technology (ONT) sequencing for rapid and comprehensive microbiota analysis in patients with IAIs.
- To compare ONT sequencing with traditional culture-based methods for pathogen detection in IAIs.
Main Methods:
- Implementation of ONT sequencing for microbiota analysis in 16 patients with IAIs at Taichung Veterans General Hospital.
- DNA extraction, followed by full-length 16S rRNA and ITS region amplification and ONT sequencing of patient specimens.
Main Results:
- ONT sequencing identified a diverse range of bacteria and fungi in IAIs, with read counts varying widely.
- Polymicrobial and anaerobe-enriched communities were prevalent in lower gastrointestinal tract infections, while upper GI perforations showed distinct microbial profiles.
- Sequencing results were concordant with culture findings for common pathogens like *Escherichia coli* and *Candida albicans*, and uniquely identified anaerobic or low-abundance taxa.
Conclusions:
- ONT sequencing provides results within 24 hours, significantly reducing TAT compared to traditional methods.
- The technology successfully detected pathogens in culture-negative cases, highlighting its advantage in complex IAIs.
- ONT sequencing is a valuable tool for expeditious and comprehensive diagnosis of IAIs, improving patient management.
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