Abstract
AbstractAnthropogenic climate change, particularly seawater warming, is expected to drive quick shifts in marine species distribution transforming coastal communities. These shifts in distribution will be particularly noticeable in biogeographical transition zones. The continental Portuguese coast stretches from north to south along 900 km. Despite this short spatial scale, the strong physical gradient intensified by the Iberian upwelling creates a transition zone where seaweed species from boreal and Lusitanian-Mediterranean origin coexist. On the northern coast, kelp marine forests thrive in the cold, nutrient-rich oceanic waters. In the south, communities resemble Mediterranean-type seaweed assemblages and are dominated by turfs. Recent evidence suggests that in these coastal areas, marine intertidal species are shifting their distribution edges as a result of rising seawater temperatures. Taking advantage of previous abundance data collected in 2012 from subtidal seaweed communities, a new sampling program was carried out in the same regions in 2018 to assess recent changes. The results confirmed the latitudinal gradient in macroalgal assemblages. More importantly we found significant structural and functional changes in a short period of six years, with regional increases of abundance of warm-affinity species, small seaweeds like turfs. Species richness, diversity, and biomass increase, all accompanied by an increase of community temperature index (CTI). Our findings suggest that subtidal seaweed communities in this transitional area have undergone major changes within a few years. Evidence of “fast tropicalization” of the subtidal communities of the Portuguese coast are strong indication of the effects of anthropic climate change over coastal assemblages.
Funder
Fundação para a Ciência e a Tecnologia
European Union’s Horizon 2020 - FutureMARES
EEA Grants- Blue Growth Program - BlueForesting
Publisher
Springer Science and Business Media LLC
Reference86 articles.
1. Hoegh-Guldberg, O. & Bruno, J. F. The impact of climate change on the world’s marine ecosystems. Sci. 328(5985), 1523–1528 (2010).
2. Arias, P. A. et al. Technical Summary. In Climate Change 2021 The Physical Science Basis Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change (eds Masson-Delmotte, V., Zhai, P. et al.) 33–144 (Cambridge University Press, 2021).
3. Boyce, M. S. Climatic variability and body size variation in the muskrats (Ondatra zibethicus) of North America. Oecologia 36(1), 1–19 (1978).
4. Pörtner, H. O. & Farrell, A. P. Ecology: Physiology and climate change. Sci. 322(5902), 690–692 (2008).
5. Burrows, M. T. et al. The pace of shifting climate in marine and terrestrial ecosystems. Sci. 334(6056), 652–655 (2011).
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