The impacts of warming and hypoxia on the performance of an obligate ram ventilator

Author:

Crear Daniel P1ORCID,Brill Rich W1,Bushnell Peter G2,Latour Robert J1,Schwieterman Gail D1,Steffen Rachel M3,Weng Kevin C1ORCID

Affiliation:

1. Fisheries Science Department, Virginia Institute of Marine Science, William & Mary, Gloucester Point, VA, USA

2. Department of Biological Sciences, Indiana University South Bend, South Bend, IN, USA

3. Biology Department, Washington & Lee University, Lexington, VA, USA

Abstract

Abstract Climate change is causing the warming and deoxygenation of coastal habitats like Chesapeake Bay that serve as important nursery habitats for many marine fish species. As conditions continue to change, it is important to understand how these changes impact individual species’ behavioral and metabolic performance. The sandbar shark (Carcharhinus plumbeus) is an obligate ram-ventilating apex predator whose juveniles use Chesapeake Bay as a nursery ground up to 10 years of age. The objective of this study was to measure juvenile sandbar shark metabolic and behavioral performance as a proxy for overall performance (i.e. fitness or success) when exposed to warm and hypoxic water. Juvenile sandbar sharks (79.5–113.5 cm total length) were collected from an estuary along the eastern shore of Virginia and returned to lab where they were fitted with an accelerometer, placed in a respirometer and exposed to varying temperatures and oxygen levels. Juvenile sandbar shark overall performance declined substantially at 32°C or when dissolved oxygen concentration was reduced below 3.5 mg l−1 (51% oxygen saturation between 24–32°C). As the extent of warm hypoxic water increases in Chesapeake Bay, we expect that the available sandbar shark nursery habitat will be reduced, which may negatively impact the population of sandbar sharks in the western Atlantic as well as the overall health of the ecosystem within Chesapeake Bay.

Funder

Virginia Sea Grant, Virginia Institute of Marine Science

Publisher

Oxford University Press (OUP)

Subject

Management, Monitoring, Policy and Law,Nature and Landscape Conservation,Ecological Modeling,Physiology

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