Microbial communities are indicators of parasite infection status
- PMID: 37918974
- DOI: 10.1111/1462-2920.16533
Microbial communities are indicators of parasite infection status
Abstract
Growing evidence suggests that microbiomes have been shaping the evolutionary pathways of macroorganisms for millennia and that these tiny symbionts can influence, and possibly even control, species interactions like host-parasite relationships. Yet, while studies have investigated host-parasites and microbiomes separately, little has been done to understand all three groups synergistically. Here, we collected infected and uninfected Eurypanopeus depressus crab hosts from a coastal North Carolina oyster reef three times over 4 months. Infected crabs demonstrated an external stage of the rhizocephalan parasite, Loxothylacus panopaei. Community analyses revealed that microbial richness and diversity were significantly different among tissue types (uninfected crab, infected crab, parasite externae and parasite larvae) and over time (summer and fall). Specifically, the microbial communities from parasite externae and larvae had similar microbiomes that were consistent through time. Infected crabs demonstrated microbial communities spanning those of their host and parasite, while uninfected crabs showed more distinctive communities with greater variability over time. Microbial communities were also found to be indicators of early-stage infections. Resolving the microbial community composition of a host and its parasite is an important step in understanding the microbiome's role in the host-parasite relationship and determining how this tripartite relationship impacts coevolutionary processes.
© 2023 The Authors. Environmental Microbiology published by Applied Microbiology International and John Wiley & Sons Ltd.
References
REFERENCES
-
- Afkhami, M.E., Almeida, B.K., Hernandez, D.J., Kiesewetter, K.N. & Revillini, D.P. (2020) Tripartite mutualisms as models for understanding plant-microbial interactions. Current Opinion in Plant Biology, 56, 28-36.
-
- Alvarez, F., Hines, A. & Reaka-Kudla, M. (1995) The effects of parasitism by the barnacle Loxothylacus panopaei (Gissler) (Cirripedia: Rhizocephala) on growth and survival of the host crab Rhithropanopeus harrisii (Gould) (Brachyura: Xanthidae). Journal of Experimental Marine Biology and Ecology, 192, 221-232.
-
- Anderson, M. (2008) Animal-sediment relationships re-visited: Characterising species' distributions along an environmental gradient using canonical analysis and quantile regression splines. Journal of Experimental Marine Biology and Ecology, 366, 16-27.
-
- Blakeslee, A.M., Pochtar, D.L., Fowler, A.E., Moore, C.S., Lee, T.S., Barnard, R.B. et al. (2021) Invasion of the body snatchers: the role of parasite introduction in host distribution and response to salinity in invaded estuaries. Proceedings of the Royal Society B, 288, 20210703.
-
- Bray, J. & Curtis, J. (1957) An ordination of the upland communities of southern Wisconsin. Ecological Monographs, 27, 325-349.
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