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Adaptive evolutionary conservation: towards a unified concept for defining conservation units

Molecular Ecology · 2001 · Vol. 10(12) · pp. 2741–2752
Dylan J. FraserLouis Bernatchez

Abstract

Recent years have seen a debate over various methods that could objectively prioritize conservation value below the species level. Most prominent among these has been the evolutionarily significant unit (ESU). We reviewed ESU concepts with the aim of proposing a more unified concept that would reconcile opposing views. Like species concepts, conflicting ESU concepts are all essentially aiming to define the same thing: segments of species whose divergence can be measured or evaluated by putting differential emphasis on the role of evolutionary forces at varied temporal scales. Thus, differences between ESU concepts lie more in the criteria used to define the ESUs themselves rather than in their fundamental essence. We provide a context-based framework for delineating ESUs which circumvents much of this situation. Rather than embroil in a befuddled debate over an optimal criterion, the key to a solution is accepting that differing criteria will work more dynamically than others and can be used alone or in combination depending on the situation. These assertions constitute the impetus behind adaptive evolutionary conservation.

Ecology and Vegetation Dynamics StudiesSpecies Distribution and Climate ChangePlant and animal studiesDivergence (linguistics)Context (archaeology)BiologyEcologyEpistemology

MeSH terms

AnimalsConservation of Natural ResourcesEcologyBiological EvolutionFishesMothsPhylogenyGenetic Variation
Citations
995
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18.83
field-weighted impact
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82
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References
Adaptive environmental assessment and management
Ecological Modelling · 1980 · 1,631 citations
Defining ‘Evolutionarily Significant Units’ for conservation
Trends in Ecology & Evolution · 1994 · 3,321 citations
Considering evolutionary processes in conservation biology
Trends in Ecology & Evolution · 2000 · 1,981 citations
Ecology and the origin of species
Trends in Ecology & Evolution · 2001 · 1,900 citations
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