Temperature tracking by North Sea benthic invertebrates in response to climate change

被引:114
作者
Hiddink, Jan G. [1 ]
Burrows, Michael T. [2 ]
Molinos, Jorge Garcia [2 ]
机构
[1] Bangor Univ, Sch Ocean Sci, Menai Bridge LL59 5AB, Anglesey, Wales
[2] Scottish Assoc Marine Sci, Inst Marine, Dept Ecol, Oban, Argyll, Scotland
基金
英国自然环境研究理事会;
关键词
benthic invertebrate; benthos; distribution shifts; North Sea; sea bottom temperature; sea surface temperature; velocity of climate change; COMMUNITY STRUCTURE; SPECIES RICHNESS; FISH ASSEMBLAGE; RANGE SHIFTS; MARINE; IMPACTS; BIODIVERSITY; ECOSYSTEMS; MECHANISMS;
D O I
10.1111/gcb.12726
中图分类号
X176 [生物多样性保护];
学科分类号
083001 [环境科学];
摘要
Climate change is a major threat to biodiversity and distributions shifts are one of the most significant threats to global warming, but the extent to which these shifts keep pace with a changing climate is yet uncertain. Understanding the factors governing range shifts is crucial for conservation management to anticipate patterns of biodiversity distribution under future anthropogenic climate change. Soft-sediment invertebrates are a key faunal group because of their role in marine biogeochemistry and as a food source for commercial fish species. However, little information exists on their response to climate change. Here, we evaluate changes in the distribution of 65 North Sea benthic invertebrate species between 1986 and 2000 by examining their geographic, bathymetric and thermal niche shifts and test whether species are tracking their thermal niche as defined by minimum, mean or maximum sea bottom (SBT) and surface (SST) temperatures. Temperatures increased in the whole North Sea with many benthic invertebrates showing north-westerly range shifts (leading/trailing edges as well as distribution centroids) and deepening. Nevertheless, distribution shifts for most species (3.8-7.3kmyr(-1) interquantile range) lagged behind shifts in both SBT and SST (mean 8.1kmyr(-1)), resulting in many species experiencing increasing temperatures. The velocity of climate change (VoCC) of mean SST accurately predicted both the direction and magnitude of distribution centroid shifts, while maximum SST did the same for contraction of the trailing edge. The VoCC of SBT was not a good predictor of range shifts. No good predictor of expansions of the leading edge was found. Our results show that invertebrates need to shift at different rates and directions to track the climate velocities of different temperature measures, and are therefore lagging behind most temperature measures. If these species cannot withstand a change in thermal habitat, this could ultimately lead to a drop in benthic biodiversity.
引用
收藏
页码:117 / 129
页数:13
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