Genotypic and phenotypic analysis of Mycoplasma fermentans strains isolated from different host tissues

L Campo1, P Larocque, T La Malfa

  • 1Department of Microbiology, University of Alabama at Birmingham, USA.

Insights

A new PCR method identifies Mycoplasma fermentans strains by analyzing insertion sequence (IS) elements. This rapid technique correlates specific IS genotypes with the expression of the proteinase-resistant antigen (Pra), aiding in understanding infection sites.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Infectious Diseases

Background:

  • Mycoplasma fermentans expresses a surface antigen (Pra) linked to infection sites.
  • Pra's proteinase resistance suggests a role in host tissue colonization.
  • Current Pra phenotyping requires extensive culture and immunoblotting.

Purpose of the Study:

  • Develop a rapid PCR-based method for determining the Pra phenotype.
  • Investigate the correlation between M. fermentans insertion sequence (IS) genotypes and Pra expression.
  • Identify stable genomic markers for reliable M. fermentans strain typing.

Main Methods:

  • Utilized PCR with primers targeting an M. fermentans insertion sequence (IS)-like element.
  • Analyzed amplicon sizes (160-bp and 450-bp) to differentiate IS genotypes.
  • Employed Southern blot analysis to determine IS insertion site stability.

Main Results:

  • A 160-bp PCR product correlated with the Pra-positive (Pra+) phenotype (Genotype I).
  • A 450-bp PCR product correlated with the Pra-negative (Pra-) phenotype (Genotype II).
  • IS insertion sites were found to be unstable, while flanking sequences offered stable genotyping markers.

Conclusions:

  • PCR-based IS genotyping provides a rapid alternative to immunoblotting for Pra phenotyping.
  • Specific IS genotypes are reliable indicators of M. fermentans Pra expression.
  • Genotyping based on stable flanking sequences is recommended for accurate M. fermentans strain identification.