Diversity of commensal Bacillus cereus sensu lato isolated from the common sow bug (Porcellio scaber, Isopoda)

FEMS Microbiol Ecol. 2006 Apr;56(1):132-40. doi: 10.1111/j.1574-6941.2006.00063.x.

Abstract

Although Bacillus cereus sensu lato are important both from an ecological and an economical point of view, little is known about their population structure, ecology, and relationships with other organisms. In the present work, the genotypic similarity of arthropod-borne B. cereus s.l. isolates, and their symbiotic relationship with the host are assessed. Bacilli of this group were recovered from the digestive tracts of sow bugs (Porcellio scaber) collected in three closely located sites. Their genotypic diversity was investigated using pulse-field gel electrophoresis (PFGE) following the whole-genome DNA digestions with NotI and AscI, and PCR amplification of virulence genes. The majority of the sow-bug Bacillus cereus sensu stricto isolates originating from the same but also from different sites displayed identical PFGE patterns, virulence gene content and enterotoxicity, indicating strong genetic and genomic relationships. The sow-bug Bacillus mycoides/Bacillus pseudomycoides strains displayed a higher diversity. The isopod-B. cereus s.l. relationship was also evaluated using antibiotic-resistant derivatives of B. cereus s.s., B. mycoides/B. pseudomycoides and Bacillus thuringiensis reintroduced into sow bugs. Both spores and vegetative cells of B. cereus s.l. were recovered from sow bugs over a 30-day period, strongly suggesting that these bacteria are natural residents of terrestrial isopods.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Bacillus cereus / genetics*
  • Bacillus cereus / growth & development
  • Bacillus cereus / isolation & purification
  • Bacterial Toxins / metabolism
  • DNA, Bacterial / genetics
  • Drug Resistance, Bacterial
  • Electrophoresis, Gel, Pulsed-Field
  • Gastrointestinal Tract / microbiology
  • Genetic Variation
  • Genotype
  • Isopoda / microbiology*
  • Polymerase Chain Reaction

Substances

  • Bacterial Toxins
  • DNA, Bacterial