Heat stress does not induce wasting symptoms in the giant California sea cucumber (Apostichopus californicus)

Author:

Dawson Taylor Declan12,Farr Jonathan J.23,Lim Em G.4,Fleet Jenna L.25,Smith Sara J.2678,Wuitchik Daniel M.26

Affiliation:

1. Earth, Ocean and Atmospheric Sciences, University of British Columbia, Vancouver, British Columbia, Canada

2. Bamfield Marine Sciences Center, Bamfield, British Columbia, Canada

3. Biological Sciences, University of Alberta, Edmonton, Alberta, Canada

4. Biological Sciences, Simon Fraser University, Vancouver, British Columbia, Canada

5. Biological Sciences, University of Winnipeg, Winnipeg, MB, Canada

6. Biological Sciences, Boston University, Boston, MA, United States of America

7. Informatics Group, Harvard University, Cambridge, MA, United States of America

8. Biology, Mount Royal University, Calgary, Alberta, Canada

Abstract

Oceanic heatwaves have significant impacts on disease dynamics in marine ecosystems. Following an extreme heatwave in Nanoose Bay, British Columbia, Canada, a severe sea cucumber wasting event occurred that resulted in the mass mortality of Apostichopus californicus. Here, we sought to determine if heat stress in isolation could trigger wasting symptoms in A. californicus. We exposed sea cucumbers to (i) a simulated marine heatwave (22 °C), (ii) an elevated temperature treatment (17 °C), or (iii) control conditions (12 °C). We measured the presence of skin lesions, mortality, posture maintenance, antipredator defences, spawning, and organ evisceration during the 79-hour thermal exposure, as well as 7-days post-exposure. Both the 22 °C and 17 °C treatments elicited stress responses where individuals exhibited a reduced ability to maintain posture and an increase in stress spawning. The 22 °C heatwave was particularly stressful, as it was the only treatment where mortality was observed. However, none of the treatments induced wasting symptoms as observed in the Nanoose Bay event. This study provides evidence that sea cucumber wasting may not be triggered by heat stress in isolation, leaving the cause of the mass mortality event observed in Nanoose unknown.

Funder

Bamfield Marine Sciences Centre to the Fall Program

Mount Royal University

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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