bioRxiv Science⌕ Search

Biology subjects

BOUTRY, J.

Publications and source records attributed to BOUTRY, J..

2 recordsLinked to original sources

The legacy of past heatwaves on 'off-host' parasite stages: Reduced infection risk and costs in the Daphnia-Pasteuria system

Heatwaves challenge our understanding of how environmental stressors reshape host-parasite interactions, particularly during the critical "off-host" stages of endoparasites. These stages, often dismissed as inert and unaffected by environmental changes, remain a black box in ecological research despite their key role in parasites life cycle. Here, we examined how heatwaves affect the infectivity and progression of infection of Pasteuria ramosa, a bacterial parasite of the planktonic crustacean Daphnia magna. In order to measure the respective influences of the bacterial genotype and the heatwaves, we exposed the off-host stages (=spores) from four genetically distinct parasite clones to three temperature regimes (20{degrees}C, 30{degrees}C, 40{degrees}C), and tested their subsequent effects on host and parasite traits. Heatwaves reduced parasite infectivity, regardless of parasite genotype. Intriguingly, heat-stressed spores induced genotype-specific shifts in their host: one host clone increased castration rates at higher temperatures, while others experienced moderate to dramatic declines. Furthermore, individuals exposed to heat-stressed spores that remained uninfected, exhibited enhanced survival, suggesting reduced costs of resistance against damaged parasite spores. This study provides insights into how heatwaves, endured only by the parasite, can modulate various aspects of host-parasite interactions, underlying the importance of the parasites environmental history in evolutionary ecology and epidemiology. Open Research StatementAll data and code supporting the results of this study are provided here: https://github.com/JustineBoutry/HeatwaveSpores

evolutionary biology↗

First evidence for the evolution of host manipulation by tumors during the long-term vertical transmission of tumor cells in Hydra oligactis

While host phenotypic manipulation by parasites is a widespread phenomenon, whether tumors - which can be likened to parasite entities, can also manipulate their hosts is not known. Theory predicts that this should nevertheless be the case, especially when tumors (neoplasms) are transmissible. We explored this hypothesis in a cnidarian Hydra model system, in which spontaneous tumors can occur in the lab, and lineages in which such neoplastic cells are vertically transmitted (through host budding) have been maintained for over 15 years. Remarkably, the hydras with long-term transmissible tumors show an unexpected increase in the number of their tentacles, allowing for the possibility that these neoplastic cells can manipulate the host. By experimentally transplanting healthy as well as neoplastic tissues derived from both recent and long-term transmissible tumors, we found that only the long-term transmissible tumors were able to trigger the growth of additional tentacles. Also, supernumerary tentacles, by permitting higher foraging efficiency for the host, were associated with an increased budding rate, thereby favoring the vertical transmission of tumors. To our knowledge, this is the first evidence that, like true parasites, transmissible tumors can evolve strategies to manipulate the phenotype of their host.

evolutionary biology↗