Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/136849
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Type: Journal article
Title: Range and extinction dynamics of the steppe bison in Siberia: A pattern‐oriented modelling approach
Author: Pilowsky, J.A.
Haythorne, S.
Brown, S.C.
Krapp, M.
Armstrong, E.
Brook, B.W.
Rahbek, C.
Fordham, D.A.
Citation: Global Ecology and Biogeography, 2022; 31(12):2483-2497
Publisher: Wiley
Issue Date: 2022
ISSN: 1466-822X
1466-8238
Statement of
Responsibility: 
Julia A. Pilowsky, Sean Haythorne, Stuart C. Brown, Mario Krapp, Edward Armstrong, Barry W. Brook, Carsten Rahbek, Damien A. Fordham
Abstract: Aim: To determine the ecological processes and drivers of range collapse, population decline and eventual extinction of the steppe bison in Eurasia. Location: Siberia. Time period: Pleistocene and Holocene. Major taxa studied: Steppe bison (Bison priscus). Methods: We configured 110,000 spatially explicit population models (SEPMs) of climate–human– steppe bison interactions in Siberia, which we ran at generational time steps from 50,000 years before present. We used pattern-oriented modelling (POM) and fossil-based inferences of distribution and demographic change of steppe bison to identify which SEPMs adequately simulated important interactions between ecological processes and biological threats. These “best models” were then used to disentangle the mechanisms that were integral in the population decline and later extinction of the steppe bison in its last stronghold in Eurasia. Results: Our continuous reconstructions of the range and extinction dynamics of steppe bison were able to reconcile inferences of spatio-temporal occurrence and the timing and location of extinction in Siberia based on hundreds of radiocarbon-dated steppe bison fossils. We showed that simulating the ecological pathway to extinction for steppe bison in Siberia in the early Holocene required very specific ecological niche constraints, demographic processes and a constrained synergy of climate and human hunting dynamics during the Pleistocene–Holocene transition. Main conclusions: Ecological processes and drivers that caused ancient population declines of species can be reconstructed at high spatio-temporal resolutions using SEPMs and POM. Using this approach, we found that climatic change and hunting by humans are likely to have interacted with key ecological processes to cause the extinction of the steppe bison in its last refuge in Eurasia.
Keywords: climate change; distribution; extinction dynamics; mechanistic model; metapopulation, palaeoclimate; range shift; spatially explicit population model; steppe bison; synergistic threats
Rights: © 2022 The Authors. Global Ecology and Biogeography published by John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution-NonCommercial License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
DOI: 10.1111/geb.13601
Grant ID: http://purl.org/au-research/grants/arc/DP180102392
http://purl.org/au-research/grants/arc/FT140101192
Published version: http://dx.doi.org/10.1111/geb.13601
Appears in Collections:Environment Institute publications

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