Hi-C-resolved metagenomics reveals host range variation among mobile genetic elements within the European honey bee

Chris R P Robinson1, Adam G Dolezal2, Ivan Liachko3

  • 1Department of Biology, Indiana University, Bloomington, Indiana, USA.

Mbio
|September 22, 2025
PubMed

Insights

Mobile genetic elements (MGEs) in honey bees shuttle antibiotic resistance genes (ARGs) via plasmids and phages. This study reveals how these MGEs distribute ARGs within and between bee microbiomes, aiding gene spread.

Area of Science:

  • Microbial Ecology
  • Genomics
  • Evolutionary Biology

Background:

  • Mobile genetic elements (MGEs) like plasmids and phages drive microbial evolution and gene flow.
  • Honey bee microbiomes are enriched with antibiotic resistance genes (ARGs) due to antibiotic use.
  • Previous studies noted ARG similarity across honey bee colonies but lacked insight into their mobilization mechanisms.

Purpose of the Study:

  • To investigate the distribution and mobilization of ARGs within honey bee gut microbiomes.
  • To characterize MGE communities and their interactions in the honey bee gut.
  • To elucidate the mechanisms of ARG dispersal in honey bee colonies.

Main Methods:

  • Utilized Hi-C-resolved metagenomics on honey bee worker gut microbiomes.
  • Analyzed phage-microbe and plasmid-host interactions.
  • Compared MGE communities across individual honey bee microbiomes.

Main Results:

  • Honey bee guts harbor dense, nested, and distinct MGE communities.
  • Phage-microbe networks show high inter-individual variation with broad host range phages.
  • Plasmid communities are individualized, exhibiting broad host range and actively shuttling ARGs.
  • Evidence of recombination among plasmids facilitating gene content sharing.

Conclusions:

  • MGEs, particularly broad host range plasmids, are key drivers of ARG mobilization and dispersal in honey bee microbiomes.
  • Hi-C metagenomics provides a high-resolution view of MGE dynamics and ARG trafficking.
  • Findings explain ARG enrichment and spread in honey bee colonies, corroborating previous observations.