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Patterns of abundance across geographical ranges as a predictor for responses to climate change: evidence from UK rocky shores

  • Siobhan Vye
  • , Stephanie Dickens
  • , Leoni C Adams
  • , Katrin Bohn
  • , Jade Chenery
  • , Nicola Dobson
  • , Ruth E. Dunn
  • , Hannah Earp
  • , Megan Evans
  • , Charlotte Foster
  • , Hannah Grist
  • , Ben Holt
  • , Sue Hull
  • , Stuart Jenkins
  • , Peter Lamont
  • , Sarah Long
  • , Nova Mieszkowska
  • , Justine Millard
  • , Zoe Morrall
  • , Kathryn Pack
  • Hannah Parry-Wilson, Jacqueline Pocklington, Jane Pottas, Leonie Richardson, Abigail Scott, Heather Sugden, Gordon Watson, Victoria West, Debbie Winton, Jane Delaney, Michael T. Burrows
  • Scottish Association for Marine Science
  • University of Portsmouth
  • Newcastle University
  • University of Hull
  • EarthWatch, Oxford, UK
  • Scottish Association of Marine Science, Oban
  • The Laboratory, Marine Biological Association of the United Kingdom
  • The Marine Biological Association of the United Kingdom, Plymouth
  • Marine Conservation Society, Ross‐on‐Wye

Research output: Contribution to journalArticlepeer-review

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Abstract

Aim
Understanding patterns in the abundance of species across thermal ranges can give useful insights into the potential impacts of climate change. The abundant‐centre hypothesis suggests that species will reach peak abundance at the centre of their thermal range where conditions are optimal, but evidence in support of this hypothesis is mixed and limited in geographical and taxonomic scope. We tested the applicability of the abundant‐centre hypothesis across a range of intertidal organisms using a large, citizen science‐generated data set.

Location
UK.

Methods
Species' abundance records were matched with their location within their thermal range. Patterns in abundance distribution for individual species, and across aggregated species abundances, were analysed using Kruskal–Wallis tests and quantile general additive models.

Results
Individually, invertebrate species showed increasing abundances in the cooler half of the thermal range and decreasing abundances in the warmer half of the thermal range. The overall shape for aggregated invertebrate species abundances reflected a broad peak, with a cool‐skewed maximum abundance. Algal species showed little evidence for an abundant‐centre distribution individually, but overall the aggregated species abundances suggested a hump‐backed abundance distribution.

Main Conclusions
Our study follows others in showing mixed support for the abundant‐centre hypothesis at an individual species level, but demonstrates an increased predictability in species responses when an aggregated overall response is considered.
Original languageEnglish
Pages (from-to)1357-1365
JournalDiversity and Distributions
Volume26
Issue number10
Early online date24 Jun 2020
DOIs
Publication statusPublished - Oct 2020

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

Keywords

  • abundant-centre hypothesis
  • algae
  • citizen science
  • intertidal
  • invertebrates
  • thermal niche

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