Evolution Letters · 2018 · 72 citations · 44 references
Species interactions can shift along the parasitism-mutualism continuum. However, the consequences of these transitions for coevolutionary interactions remain unclear. We experimentally coevolved a novel species interaction between <i>Caenorhabditis elegans</i> hosts and a mildly parasitic bacterium, <i>Enterococcus faecalis</i>, with host-protective properties against virulent <i>Staphylococcus aureus</i>. Coinfections drove the evolutionary transition of the <i>C. elegans-E. faecalis</i> relationship toward a reciprocally beneficial interaction. As <i>E. faecalis</i> evolved to protect nematodes against <i>S. aureus</i> infection, hosts adapted by accommodating greater numbers of protective bacteria. The mutualism was strongest in pairings of contemporary coevolved populations. To generally assess the conditions under which these defensive mutualisms can arise and coevolve, we analyzed a model that showed that they are favored when mild parasites confer an intermediate level of protection. Our results reveal that coevolution can shape the transition of animal-parasite interactions toward defensive symbioses in response to coinfections.
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Evolution of Mammals and Their Gut Microbes
Ruth E. Ley, Micah Hamady, Catherine Lozupone et al. · Science · 2008 · 3.7K citations · Full text
Deciphering the Rhizosphere Microbiome for Disease-Suppressive Bacteria
Rodrigo Mendes, M. Kruijt, Irene de Bruijn et al. · Science · 2011 · 2.7K citations · Full text
Matthew T. G. Holden, Edward J. Feil, Jodi A. Lindsay et al. · Proceedings of the National Academy of Sciences · 2004 · 901 citations · Full text
Microbial Pathogens, Staphylococcus Aureus, Molecular Biology +20