Affiliation:
1. School of Biological Sciences The University of Hong Kong Hong Kong SAR China
2. Arctic Research Center Hokkaido University Sapporo Japan
3. Marine Biodiversity and Environmental Assessment Research Center, Research Institute for Global Change Japan Agency for Marine‐Earth Science and Technology (JAMSTEC) Yokosuka Japan
4. The Swire Institute of Marine Science School of Biological Sciences The University of Hong Kong Hong Kong China
Abstract
AbstractAimThe capacity for poleward range expansions beyond the tropics in corals hinges on ecophysiological constraints and resulting responses to climatic variability. We aimed to determine how future warming will affect coral habitat suitability at the poleward range edges of these foundational species in the Northwest Pacific.LocationNorthwest Pacific.MethodsWe generated models integrating thermal physiological constraints of corals adapted to extreme seasonality in Hong Kong, specifically the minimum annual temperature and the proportion of time annually spent at seasonal extremes. With these models, we projected habitat suitability for five coral species under current and future climatic conditions across the Northwest Pacific.ResultsClimate model projections reveal an easing of thermal constraints on the leading‐edge of coral ecophysiological limits with an expansion of thermally suitable habitat poleward by 2°–7° in latitude depending on the coral species and model considered. We also highlight a potential divergence of present and future thermal regimes that may lead to a mismatch in suitability for corals currently inhabiting high latitude reefs.Main ConclusionsUnderstanding the thermal constraints on coral distributions and defining the potential range of corals under climate change is critical for adaptive management that focuses on coral conservation and ensuring ecosystem function of existing subtropical and temperate ecosystems.
Funder
Japan Society for the Promotion of Science
Ministry of Education, Culture, Sports, Science and Technology
Research Grants Council, University Grants Committee
University Research Committee, University of Hong Kong
Subject
Ecology, Evolution, Behavior and Systematics
Cited by
2 articles.
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