2024
DOI: 10.1111/gcb.17341
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Acclimation to warmer temperatures can protect host populations from both further heat stress and the potential invasion of pathogens

Tobias E. Hector,
Marta S. Shocket,
Carla M. Sgrò
et al.

Abstract: Thermal acclimation can provide an essential buffer against heat stress for host populations, while acting simultaneously on various life‐history traits that determine population growth. In turn, the ability of a pathogen to invade a host population is intimately linked to these changes via the supply of new susceptible hosts, as well as the impact of warming on its immediate infection dynamics. Acclimation therefore has consequences for hosts and pathogens that extend beyond simply coping with heat stress—gov… Show more

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Cited by 4 publications
(1 citation statement)
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“…Parasites may also influence individual acclimatory responses to temperature. For instance, the bacterial pathogen Pasteuria ramosa reduced the heat tolerance of the Daphnia magna host (Hector et al, 2024). To date, no studies on wild animals have included parasites in investigating the physiological responses to thermal acclimation across different biological scales.…”
Section: Introductionmentioning
confidence: 99%
“…Parasites may also influence individual acclimatory responses to temperature. For instance, the bacterial pathogen Pasteuria ramosa reduced the heat tolerance of the Daphnia magna host (Hector et al, 2024). To date, no studies on wild animals have included parasites in investigating the physiological responses to thermal acclimation across different biological scales.…”
Section: Introductionmentioning
confidence: 99%