A Francisella-like endosymbiont in the Gulf Coast tick evolved from a mammalian pathogen

Jonathan G Gerhart1, Abraham S Moses1, Rahul Raghavan1

  • 1Department of Biology and Center for Life in Extreme Environments, Portland State University, Portland, Oregon, 97201, USA.

Scientific Reports
|September 21, 2016
PubMed

Insights

Francisella-like endosymbionts (FLEs) in ticks may evolve from mammalian pathogens, not the other way around. This study sequenced an FLE genome, revealing its recent transition to an endosymbiotic lifestyle.

Area of Science:

  • Microbiology
  • Genomics
  • Tick-borne diseases

Background:

  • Ticks harbor pathogenic bacteria and related endosymbionts.
  • The evolutionary origins of tick endosymbionts, such as Francisella-like endosymbionts (FLEs), are unclear.
  • Understanding these origins is crucial for disease ecology.

Purpose of the Study:

  • To investigate the evolutionary origin of a Francisella-like endosymbiont (FLE-Am) found in the Gulf Coast tick (Amblyomma maculatum).
  • To determine if tick endosymbionts evolve from pathogens or vice versa.

Main Methods:

  • Genome sequencing of the FLE-Am from Amblyomma maculatum.
  • Comparative genomic analysis of FLE-Am with known Francisella species.

Main Results:

  • FLE-Am's genome is similar in size to pathogenic Francisella strains.
  • Approximately one-third of FLE-Am's protein-coding genes have inactivating mutations.
  • FLE-Am likely evolved from a pathogenic Francisella strain, indicating endosymbionts can arise from pathogens.

Conclusions:

  • Tick endosymbionts, like FLE-Am, can evolve from mammalian pathogens.
  • FLE-Am has recently transitioned to an endosymbiotic lifestyle.
  • This transition may involve the replacement of an older, less functional endosymbiont.

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