Union of phylogeography and landscape genetics

Объединение филогеографии и ландшафтной генетики
Leslie J. Rissler
2016-07-18

biogeography of speciationlandscape geneticsphylogeographyspatially explicit genomicsspecies delimitation
Phylogeography and landscape genetics have arisen within the past 30 y. Phylogeography is said to be the bridge between population genetics and systematics, and landscape genetics the bridge between landscape ecology and population genetics. Both fields can be considered as simply the amalgamation of classic biogeography with genetics and genomics; however, they differ in the temporal, spatial, and organismal scales addressed and the methodology used. I begin by briefly summarizing the history and purview of each field and suggest that, even though landscape genetics is a younger field (coined in 2003) than phylogeography (coined in 1987), early studies by Dobzhansky on the "microgeographic races" of Linanthus parryae in the Mojave Desert of California and Drosophila pseudoobscura across the western United States presaged the fields by over 40 y. Recent advances in theory, models, and methods have allowed researchers to better synthesize ecological and evolutionary processes in their quest to answer some of the most basic questions in biology. I highlight a few of these novel studies and emphasize three major areas ripe for investigation using spatially explicit genomic-scale data: the biogeography of speciation, lineage divergence and species delimitation, and understanding adaptation through time and space. Examples of areas in need of study are highlighted, and I end by advocating a union of phylogeography and landscape genetics under the more general field: biogeography.
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Advances in theory, models, and methods now enable stronger synthesis of ecological and evolutionary processes using genomic-scale spatial data.
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Dobzhansky’s studies of Linanthus parryae microgeographic races and Drosophila pseudoobscura anticipated both fields by more than 40 years.
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Phylogeography and landscape genetics integrate biogeography with genetics but differ in temporal, spatial, organismal scales, and methodologies.
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The abstract advocates unifying phylogeography and landscape genetics within the broader field of biogeography.
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Three major research opportunities are biogeography of speciation, lineage divergence and species delimitation, and adaptation across time and space.

phylogeography and landscape genetics as integrated biogeographic research fields

their complementary temporal, spatial, and organismal scales, methodologies, and applications to speciation biogeography, lineage divergence, species delimitation, and adaptation through time and space

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2016-07-18
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Leslie J. Rissler
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