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Global Change Biology · 2015 · Vol. 21 · Issue 5 · Wiley
Pacific salmon migration timing can drive population productivity, ecosystem dynamics, and human harvest. Nevertheless, little is known about long‐term variation in salmon migration timing for multiple species across broad regions. We used long‐term data for five Pacific salmon species throughout rapidly warming southeast Alaska to describe long‐term changes in salmon migration timing, interannual phenological synchrony, relat...
Conservation Biology · 2005 · Vol. 19 · Issue 1 · Wiley
Noninvasive genetic methods can be used to estimate animal abundances and offer several advantages over conventional methods. Few attempts have been made, however, to evaluate the accuracy and precision of the estimates. We compared four methods of estimating population size based on fecal sampling. Two methods used rarefaction indices and two were based on capture‐mark‐recapture (CMR) estimators, one combining genetic and fie...
Conservation Biology · 2004 · Vol. 18 · Issue 6 · Wiley
We examined demographic responses of California red‐backed voles ( Clethrionomys californicus ) to forest fragmentation in southwestern Oregon at sites where this species has previously shown negative responses to fragmentation. Voles were captured in live traps and released. Voles were rarely caught in clearcuts surrounding 11 forest fragments, but relative vole density did not decrease from the forest‐fragment interiors to e...
Conservation Biology · 2001 · Vol. 15 · Issue 4 · Wiley
A rich theory has been developed to explain the evolution of populations at equilibrium conditions of gene flow, inbreeding, and selection. There are, however, few empirical examples of the effects of gene flow into recently isolated, small populations under nonequilibrium conditions, such as are expected following population fragmentation. We studied the effects of inbreeding and gene flow in small, experimental populations o...
Molecular Ecology · 1999 · Vol. 8 · Issue 10 · Wiley
The effective population sizes ( N e ) of six populations of the long‐toed salamander ( Ambystoma macrodactylum ) from Montana and Idaho, USA were estimated from allozyme data from samples collected in 1978, 1996 and 1997 using the temporal allele frequency method. Five of the six estimates ranged from 23 to 207 (mean = 123 ± 79); one estimate was indistinguishable from infinity. In order to infer the actual N e of salamander...