Data from: Historical species distribution models predict species limits in western Plethodon salamanders
Data files
Dec 02, 2014 version files 56.92 MB
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cytb.Pid.nex
14.40 KB
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cytb.Pla.nex
17.58 KB
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cytb.Pva.nex
17.54 KB
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gapd.Pid.nex
29.46 KB
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gapd.Pla.nex
20.18 KB
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gapd.Pva.nex
18.30 KB
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hspa8.Pid.nex
16.05 KB
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hspa8.Pla.nex
18.22 KB
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hspa8.Pva.nex
13.97 KB
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its.Pid.nex
23.38 KB
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M1.Pid.nex
10.63 KB
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M14.Pid.nex
12.51 KB
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M14.Pla.nex
21.36 KB
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M96.Pid.nex
10.57 KB
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M96.Pla.nex
13.59 KB
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rag1.Pid.nex
61.74 KB
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rag1.Pla.nex
54.15 KB
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rag1.Pva.nex
46.43 KB
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rpl12.Pid.nex
22.83 KB
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rpl12.Pla.nex
14.05 KB
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rpl12.Pva.nex
20.67 KB
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SuppInfo1.pdf
127.26 KB
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SuppInfo2.pdf
209.24 KB
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SuppInfo3.pdf
236.37 KB
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SuppInfo4.pdf
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SuppInfo5.pdf
55.60 MB
Abstract
Allopatry is commonly used to predict boundaries in species delimitation investigations under the assumption that currently allopatric distributions are indicative of reproductive isolation; however, species ranges are known to change over time. Incorporating a temporal perspective of geographic distributions should improve species delimitation; to explore this, we investigate three species of western Plethodon salamanders that have shifted their ranges since the end of the Pleistocene. We generate species distribution models (SDM) of the current range, hindcast these models onto a climatic model 21 Ka, and use three molecular approaches to delimit species in an integrated fashion. In contrast to expectations based on the current distribution, we detect no independent lineages in species with allopatric and patchy distributions (Plethodon vandykei and Plethodon larselli). The SDMs indicate that probable habitat is more expansive than their current range, especially during the last glacial maximum (LGM) (21 Ka). However, with a contiguous distribution, two independent lineages were detected in Plethodon idahoensis, possibly due to isolation in multiple glacial refugia. Results indicate that historical SDMs are a better predictor of species boundaries than current distributions, and strongly imply that researchers should incorporate SDM and hindcasting into their investigations and the development of species hypotheses.