Development of a long-read next generation sequencing workflow for improved characterization of fastidious

Isaac Framst1, Cassandra D Andrea1, Monica Baquero1

  • 1Department of Pathobiology, Ontario Veterinary College, University of Guelph, Guelph, Canada.

Insights

This study developed a rapid, cost-effective sequencing workflow for Mycoplasma cynos and Mycoplasma felis, improving diagnosis of respiratory disease in dogs and cats. The optimized method enhances genomic characterization of these fastidious bacteria.

Area of Science:

  • Veterinary Microbiology
  • Genomics
  • Infectious Diseases

Background:

  • Mycoplasma cynos and Mycoplasma felis cause respiratory disease in dogs and cats.
  • Mycoplasmas are fastidious organisms with limited biosynthetic pathways, often leading to underdiagnosis.
  • Accurate genotypic characterization is crucial for understanding and managing these infections.

Purpose of the Study:

  • To develop a cost-effective and accurate sequencing workflow for genotypic characterization of M. cynos and M. felis clinical isolates.
  • To optimize culture, DNA extraction, and genome assembly for rapid long-read sequencing.
  • To provide a comprehensive genomic characterization tool for veterinary diagnostics.

Main Methods:

  • Evaluated five culture methods using specialized media for Mycoplasma.
  • Assessed three DNA extraction methods optimized for long-read sequencing.
  • Compared two de novo assembly platforms (Flye and Canu) for bioinformatics analysis.

Main Results:

  • A solid-phase, column-based DNA extraction kit with enzymatic lysis yielded the best DNA quality and concentration.
  • Optimal DNA yield for long-read sequencing was achieved with 45 ml modified Hayflick's broth incubated for 48 hours.
  • The Flye assembler produced more contiguous and time-efficient genome assemblies compared to Canu.

Conclusions:

  • The developed 4-5 day sample-to-sequence workflow enables comprehensive genomic characterization of M. cynos and M. felis.
  • This rapid sequencing approach offers a significant improvement over traditional diagnostic methods.
  • The workflow facilitates enhanced understanding and management of canine and feline respiratory infections.