MicroRNA dysregulation in cow's jejunum, jejunal lymph node, and caecal Peyer's patch during Mycobacterium avium

Mengqi Wang1, Nathalie Bissonnette1, Pier-Luc Dudemaine1

  • 1Agriculture and Agri-Food Canada, Sherbrooke Research and Development Centre, Sherbrooke, QC, Canada.

BMC Genomics
|January 8, 2026
PubMed

Insights

This study reveals that microRNAs (miRNAs) play a key role in regulating immune responses in Canadian Holstein cows infected with Mycobacterium avium subsp. paratuberculosis (MAP), the cause of Johne's disease (JD). Findings suggest specific miRNAs could serve as biomarkers for managing JD.

Area of Science:

  • Veterinary Immunology
  • Molecular Biology
  • Genomics

Background:

  • Johne's disease (JD), caused by Mycobacterium avium subsp. paratuberculosis (MAP), is a significant global gastrointestinal disease in cattle.
  • Understanding the host's immune response and regulatory mechanisms is crucial for managing JD.
  • MicroRNAs (miRNAs) are emerging as key regulators of immune responses in various diseases.

Purpose of the Study:

  • To investigate miRNA expression profiles in Canadian Holstein cows with different MAP infection statuses (infected, tolerant, and healthy).
  • To identify potential regulatory mechanisms of miRNAs involved in the host immune response to MAP infection.
  • To explore the role of tissue-specific miRNA expression in the pathogenesis of JD.

Main Methods:

  • miRNA sequencing was performed on intestinal tissues (jejunum, jejunal lymph node, caecal Peyer's patches) from infected, tolerant, and healthy cows.
  • Differential expression analysis was conducted to identify significantly altered miRNAs.
  • Functional enrichment analysis (GO and KEGG pathways) was used to determine the biological functions and pathways associated with DE miRNAs.

Main Results:

  • A total of 318, 281, and 251 miRNAs were identified in jejunum, jejunal lymph node, and caecal Peyer's patches, respectively.
  • Differential expression analysis revealed distinct miRNA profiles between infected, tolerant, and healthy cows, particularly in lymph nodes and Peyer's patches.
  • Six common differentially expressed miRNAs (bta-miR-125a, bta-miR-146a, bta-miR-146b, bta-miR-21-5p, bta-miR-320a, bta-miR-370) implicated in immune response were identified in infected cows.
  • Functional enrichment analysis highlighted immune-related functions, including lymphocyte activation and T/B cell receptor signaling pathways, in response to MAP infection.
  • The study observed a heightened immune response in infected cows and a more tolerant response in tolerant cows, linked to distinct miRNA expression patterns.

Conclusions:

  • MiRNA expression is tissue-specific and plays a significant role in regulating immune pathways during JD.
  • Distinct sets of differentially expressed miRNAs and associated biological pathways differentiate the infected and tolerant phenotypes.
  • These findings provide a foundation for exploring miRNAs as potential biomarkers for JD diagnosis and management.