Comparative Genomics of Mycobacterium avium Subspecies Paratuberculosis Sheep Strains

Rachel Mizzi1, Verlaine J Timms2, Marian L Price-Carter3

  • 1Farm Animal Health Group, Sydney School of Veterinary Science, Faculty of Science, The University of Sydney, Camden, NSW, Australia.

Insights

Mycobacterium avium subspecies paratuberculosis (MAP) strains causing ovine Johne's disease (JD) show distinct genomic differences. This research identifies lineage-specific variations, aiding in developing better vaccines and control strategies for sheep populations.

Area of Science:

  • Veterinary Microbiology
  • Genomics
  • Epidemiology

Background:

  • Mycobacterium avium subspecies paratuberculosis (MAP) causes Johne's disease (JD) in livestock, leading to significant economic losses.
  • MAP is associated with human Crohn's disease, and different strain lineages (Type I, Type II, Type III) exist.
  • Research has primarily focused on cattle MAP strains, leaving a knowledge gap regarding sheep-specific strains (Type I and Type III) prevalent in Australia and New Zealand.

Purpose of the Study:

  • To investigate the genomic differences between sheep MAP Type I and Type III sub-lineages.
  • To understand the epidemiological and pathogenic relevance of these sheep MAP strains.
  • To generate an updated global phylogeny for sheep MAP.

Main Methods:

  • Whole genome sequencing of sheep MAP isolates from Australia and New Zealand.
  • Downloaded additional sheep MAP genome datasets from public archives.
  • Utilized a pan-genome approach and de novo assemblies for phylogenetic analysis.
  • Verified lineage-specific variations using BLAST analysis.

Main Results:

  • A global phylogeny revealed two distinct clades for sheep MAP lineages, rooted with the cattle strain K10.
  • Australian and New Zealand Type I isolates formed a distinct sub-clade, separate from European Type I isolates.
  • Type III isolates showed greater genetic diversity and were found across multiple continents.
  • Thirteen lineage-specific genetic variations, including genes for metabolism and stress response, were identified.

Conclusions:

  • Genomic analysis provides insights into the distinct evolutionary paths of sheep MAP Type I and Type III lineages.
  • Identified genetic differences may correlate with specific epidemiological and virulence traits in sheep MAP.
  • This research can inform the development of targeted vaccines and improved control strategies for ovine Johne's disease.