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  3. Climate Change and Sustainable Development / 氣候變遷與永續發展國際學位學程(含碩士班、博士班)
  4. Temperature modifies trait-mediated infection outcomes in a Daphnia-fungal parasite system
 
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Temperature modifies trait-mediated infection outcomes in a Daphnia-fungal parasite system

Journal
Philosophical transactions of the Royal Society of London. Series B, Biological sciences
Journal Volume
378
Journal Issue
1873
Date Issued
2023-03-27
Author(s)
SYUAN-JYUN SUN  
Dziuba, Marcin K
Jaye, Riley N
Duffy, Meghan A
DOI
10.1098/rstb.2022.0009
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/629722
URL
https://api.elsevier.com/content/abstract/scopus_id/85147392057
Abstract
One major concern related to climate change is that elevated temperatures will drive increases in parasite outbreaks. Increasing temperature is known to alter host traits and host-parasite interactions, but we know relatively little about how these are connected mechanistically-that is, about how warmer temperatures impact the relationship between epidemiologically relevant host traits and infection outcomes. Here, we used a zooplankton-fungus (Daphnia dentifera-Metschnikowia bicuspidata) disease system to experimentally investigate how temperature impacted physical barriers to infection and cellular immune responses. We found that Daphnia reared at warmer temperatures had more robust physical barriers to infection but decreased cellular immune responses during the initial infection process. Infected hosts at warmer temperatures also suffered greater reductions in fecundity and lifespan. Furthermore, the relationship between a key trait-gut epithelium thickness, a physical barrier-and the likelihood of terminal infection reversed at warmer temperatures. Together, our results highlight the complex ways that temperatures can modulate host-parasite interactions and show that different defense components can have qualitatively different responses to warmer temperatures, highlighting the importance of considering key host traits when predicting disease dynamics in a warmer world. This article is part of the theme issue 'Infectious disease ecology and evolution in a changing world'.
Subjects
Daphnia; Metschnikowia; climate change; host–parasite interaction; temperature
Publisher
ROYAL SOC
Type
journal article

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