Measuring Evolutionary Isolation for Conservation

Conservation planning needs to account for limited resources when choosing those species on which to focus attention and resources. Currently, funding is biased to small sections of the tree of life, such as raptors and carnivores. One new approach for increasing the diversity of species under consi...

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Published inPloS one Vol. 9; no. 12; p. e113490
Main Authors Redding, David W., Mazel, Florent, Mooers, Arne Ø.
Format Journal Article
LanguageEnglish
Published United States Public Library of Science 10.12.2014
Public Library of Science (PLoS)
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Online AccessGet full text
ISSN1932-6203
1932-6203
DOI10.1371/journal.pone.0113490

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Abstract Conservation planning needs to account for limited resources when choosing those species on which to focus attention and resources. Currently, funding is biased to small sections of the tree of life, such as raptors and carnivores. One new approach for increasing the diversity of species under consideration considers how many close relatives a species has in its evolutionary tree. At least eleven different ways to measure this characteristic on phylogenies for the purposes of setting species-specific priorities for conservation have been proposed. We find that there is much redundancy within the current set, with three pairs of metrics being essentially identical. Non-redundant metrics represent different trade-offs between the unique evolutionary history represented by a species verses its average distance to all other species. Depending on which metric is used, species priority lists can differ as much as 85% for the top 100 species. We call for some consensus on the theory behind these metrics and suggest that all future developments are compared to the current published set, and offer scripts to aid such comparisons.
AbstractList Conservation planning needs to account for limited resources when choosing those species on which to focus attention and resources. Currently, funding is biased to small sections of the tree of life, such as raptors and carnivores. One new approach for increasing the diversity of species under consideration considers how many close relatives a species has in its evolutionary tree. At least eleven different ways to measure this characteristic on phylogenies for the purposes of setting species-specific priorities for conservation have been proposed. We find that there is much redundancy within the current set, with three pairs of metrics being essentially identical. Non-redundant metrics represent different trade-offs between the unique evolutionary history represented by a species verses its average distance to all other species. Depending on which metric is used, species priority lists can differ as much as 85% for the top 100 species. We call for some consensus on the theory behind these metrics and suggest that all future developments are compared to the current published set, and offer scripts to aid such comparisons.
Conservation planning needs to account for limited resources when choosing those species on which to focus attention and resources. Currently, funding is biased to small sections of the tree of life, such as raptors and carnivores. One new approach for increasing the diversity of species under consideration considers how many close relatives a species has in its evolutionary tree. At least eleven different ways to measure this characteristic on phylogenies for the purposes of setting species-specific priorities for conservation have been proposed. We find that there is much redundancy within the current set, with three pairs of metrics being essentially identical. Non-redundant metrics represent different trade-offs between the unique evolutionary history represented by a species verses its average distance to all other species. Depending on which metric is used, species priority lists can differ as much as 85% for the top 100 species. We call for some consensus on the theory behind these metrics and suggest that all future developments are compared to the current published set, and offer scripts to aid such comparisons.Conservation planning needs to account for limited resources when choosing those species on which to focus attention and resources. Currently, funding is biased to small sections of the tree of life, such as raptors and carnivores. One new approach for increasing the diversity of species under consideration considers how many close relatives a species has in its evolutionary tree. At least eleven different ways to measure this characteristic on phylogenies for the purposes of setting species-specific priorities for conservation have been proposed. We find that there is much redundancy within the current set, with three pairs of metrics being essentially identical. Non-redundant metrics represent different trade-offs between the unique evolutionary history represented by a species verses its average distance to all other species. Depending on which metric is used, species priority lists can differ as much as 85% for the top 100 species. We call for some consensus on the theory behind these metrics and suggest that all future developments are compared to the current published set, and offer scripts to aid such comparisons.
Audience Academic
Author Redding, David W.
Mazel, Florent
Mooers, Arne Ø.
AuthorAffiliation Texas A&M University, United States of America
1 Department of Biology, Simon Fraser University, Burnaby, BC, Canada
2 Centre of Biodiversity, Ecology and Conservation, Department of Genetics, Evolution and Environment, University College London, London, United Kingdom
3 Laboratoire d’Ecologie Alpine, Grenoble, France
AuthorAffiliation_xml – name: 3 Laboratoire d’Ecologie Alpine, Grenoble, France
– name: 1 Department of Biology, Simon Fraser University, Burnaby, BC, Canada
– name: Texas A&M University, United States of America
– name: 2 Centre of Biodiversity, Ecology and Conservation, Department of Genetics, Evolution and Environment, University College London, London, United Kingdom
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  givenname: David W.
  surname: Redding
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Competing Interests: The authors have declared that no competing interests exist.
Conceived and designed the experiments: DR. Performed the experiments: DR. Analyzed the data: DR. Contributed reagents/materials/analysis tools: DR. Contributed to the writing of the manuscript: DR FM AM.
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Snippet Conservation planning needs to account for limited resources when choosing those species on which to focus attention and resources. Currently, funding is...
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StartPage e113490
SubjectTerms Animals
Biodiversity
Biological evolution
Biology and Life Sciences
Birds of prey
Carnivores
Computer Simulation
Conservation
Conservation of Natural Resources
Ecology and Environmental Sciences
Endangered Species
Evolution
Linear Models
Phylogeny
Redundancy
Reproductive Isolation
Species
Species diversity
Trees
Wildlife conservation
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Title Measuring Evolutionary Isolation for Conservation
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Volume 9
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