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Modeling the distribution of a wide‐ranging invasive species using the sampling efforts of expert and citizen scientists

1. In its invasive range in Australia, the European rabbit threatens the persistence of native flora and fauna and damages agricultural production. Understanding its distribution and ecological niche is critical for developing management plans to reduce populations and avoid further biodiversity and...

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Autores principales: Roy‐Dufresne, Emilie, Saltré, Frédérik, Cooke, Brian D., Mellin, Camille, Mutze, Greg, Cox, Tarnya, Fordham, Damien A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6802020/
https://www.ncbi.nlm.nih.gov/pubmed/31641454
http://dx.doi.org/10.1002/ece3.5609
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author Roy‐Dufresne, Emilie
Saltré, Frédérik
Cooke, Brian D.
Mellin, Camille
Mutze, Greg
Cox, Tarnya
Fordham, Damien A.
author_facet Roy‐Dufresne, Emilie
Saltré, Frédérik
Cooke, Brian D.
Mellin, Camille
Mutze, Greg
Cox, Tarnya
Fordham, Damien A.
author_sort Roy‐Dufresne, Emilie
collection PubMed
description 1. In its invasive range in Australia, the European rabbit threatens the persistence of native flora and fauna and damages agricultural production. Understanding its distribution and ecological niche is critical for developing management plans to reduce populations and avoid further biodiversity and economic losses. 2. We developed an ensemble of species distribution models (SDMs) to determine the geographic range limits and habitat suitability of the rabbit in Australia. We examined the advantage of incorporating data collected by citizens (separately and jointly with expert data) and explored issues of spatial biases in occurrence data by implementing different approaches to generate pseudo‐absences. We evaluated the skill of our model using three approaches: cross‐validation, out‐of‐region validation, and evaluation of the covariate response curves according to expert knowledge of rabbit ecology. 3. Combining citizen and expert occurrence data improved model skill based on cross‐validation, spatially reproduced important aspects of rabbit ecology, and reduced the need to extrapolate results beyond the studied areas. 4. Our ensemble model projects that rabbits are distributed across approximately two thirds of Australia. Annual maximum temperatures >25°C and annual minimum temperatures >10°C define, respectively, the southern and northern most range limits of its distribution. In the arid and central regions, close access to permanent water (≤~ 0.4 km) and reduced clay soil composition (~20%–50%) were the major factors influencing the probability of occurrence of rabbits. 5. Synthesis and applications. Our results show that citizen science data can play an important role in managing invasive species by providing missing information on occurrences in regions not surveyed by experts because of logistics or financial constraints. The additional sampling effort provided by citizens can improve the capacity of SDMs to capture important elements of a species ecological niche, improving the capacity of statistical models to accurately predict the geographic range of invasive species.
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spelling pubmed-68020202019-10-22 Modeling the distribution of a wide‐ranging invasive species using the sampling efforts of expert and citizen scientists Roy‐Dufresne, Emilie Saltré, Frédérik Cooke, Brian D. Mellin, Camille Mutze, Greg Cox, Tarnya Fordham, Damien A. Ecol Evol Original Research 1. In its invasive range in Australia, the European rabbit threatens the persistence of native flora and fauna and damages agricultural production. Understanding its distribution and ecological niche is critical for developing management plans to reduce populations and avoid further biodiversity and economic losses. 2. We developed an ensemble of species distribution models (SDMs) to determine the geographic range limits and habitat suitability of the rabbit in Australia. We examined the advantage of incorporating data collected by citizens (separately and jointly with expert data) and explored issues of spatial biases in occurrence data by implementing different approaches to generate pseudo‐absences. We evaluated the skill of our model using three approaches: cross‐validation, out‐of‐region validation, and evaluation of the covariate response curves according to expert knowledge of rabbit ecology. 3. Combining citizen and expert occurrence data improved model skill based on cross‐validation, spatially reproduced important aspects of rabbit ecology, and reduced the need to extrapolate results beyond the studied areas. 4. Our ensemble model projects that rabbits are distributed across approximately two thirds of Australia. Annual maximum temperatures >25°C and annual minimum temperatures >10°C define, respectively, the southern and northern most range limits of its distribution. In the arid and central regions, close access to permanent water (≤~ 0.4 km) and reduced clay soil composition (~20%–50%) were the major factors influencing the probability of occurrence of rabbits. 5. Synthesis and applications. Our results show that citizen science data can play an important role in managing invasive species by providing missing information on occurrences in regions not surveyed by experts because of logistics or financial constraints. The additional sampling effort provided by citizens can improve the capacity of SDMs to capture important elements of a species ecological niche, improving the capacity of statistical models to accurately predict the geographic range of invasive species. John Wiley and Sons Inc. 2019-09-19 /pmc/articles/PMC6802020/ /pubmed/31641454 http://dx.doi.org/10.1002/ece3.5609 Text en © 2019 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Roy‐Dufresne, Emilie
Saltré, Frédérik
Cooke, Brian D.
Mellin, Camille
Mutze, Greg
Cox, Tarnya
Fordham, Damien A.
Modeling the distribution of a wide‐ranging invasive species using the sampling efforts of expert and citizen scientists
title Modeling the distribution of a wide‐ranging invasive species using the sampling efforts of expert and citizen scientists
title_full Modeling the distribution of a wide‐ranging invasive species using the sampling efforts of expert and citizen scientists
title_fullStr Modeling the distribution of a wide‐ranging invasive species using the sampling efforts of expert and citizen scientists
title_full_unstemmed Modeling the distribution of a wide‐ranging invasive species using the sampling efforts of expert and citizen scientists
title_short Modeling the distribution of a wide‐ranging invasive species using the sampling efforts of expert and citizen scientists
title_sort modeling the distribution of a wide‐ranging invasive species using the sampling efforts of expert and citizen scientists
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6802020/
https://www.ncbi.nlm.nih.gov/pubmed/31641454
http://dx.doi.org/10.1002/ece3.5609
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