4.5 Article

Gene exchange drives the ecological success of a multi-host bacterial pathogen

Journal

NATURE ECOLOGY & EVOLUTION
Volume 2, Issue 9, Pages 1468-1478

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41559-018-0617-0

Keywords

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Funding

  1. Biotechnology and Biological Sciences Research Council (UK) [ISP2: BBS/E/D/20002173]
  2. Medical Research Council (UK) [MRNO2995X/1]
  3. Wellcome Trust collaborative award [201531/Z/16/Z]
  4. Australian National Health and Medical Research Council Career Development Fellow [1065736]
  5. Dorothy Hodgkin Fellowship - Royal Society [DH140195]
  6. Sir Henry Dale Fellowship - Wellcome Trust and Royal Society [109385/Z/15/Z]
  7. University of Edinburgh
  8. Scottish Infection Research Network
  9. Chief Scientist Office through Scottish Healthcare Associated Infection Prevention Institute consortium funding [SIRN10]
  10. Health Innovation Challenge Fund [WT098600, HICF-T5-342]
  11. Department of Health and Wellcome Trust
  12. UKCRC Translational Infection Research Initiative
  13. Medical Research Council [G1000803]
  14. Natural Environment Research Council [NE/M001415/1]
  15. [BB/I013873/1]
  16. BBSRC [BBS/E/D/20002173, BBS/E/D/20231761, BB/I013873/1] Funding Source: UKRI
  17. MRC [G1000803, MR/P007201/1, G1001787, MR/S00291X/1, MR/N02995X/1] Funding Source: UKRI
  18. Wellcome Trust [109385/Z/15/Z] Funding Source: Wellcome Trust

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The capacity for some pathogens to jump into different host-species populations is a major threat to public health and food security. Staphylococcus aureus is a multi-host bacterial pathogen responsible for important human and livestock diseases. Here, using a population-genomic approach, we identify humans as a major hub for ancient and recent S. aureus host-switching events linked to the emergence of endemic livestock strains, and cows as the main animal reservoir for the emergence of human epidemic clones. Such host-species transitions are associated with horizontal acquisition of genetic elements from host-specific gene pools conferring traits required for survival in the new host-niche. Importantly, genes associated with antimicrobial resistance are unevenly distributed among human and animal hosts, reflecting distinct antibiotic usage practices in medicine and agriculture. In addition to gene acquisition, genetic diversification has occurred in pathways associated with nutrient acquisition, implying metabolic remodelling after a host switch in response to distinct nutrient availability. For example, S. aureus from dairy cattle exhibit enhanced utilization of lactose-a major source of carbohydrate in bovine milk. Overall, our findings highlight the influence of human activities on the multi-host ecology of a major bacterial pathogen, underpinned by horizontal gene transfer and core genome diversification.

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