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Heritable Genetic Effects Caused by a Single Generation of Captive Breeding
Filename Description eva70213-sup-0001-FigureS1-S6-TableS1-S6.docxWord 2007 document , 2.5 MB Figure S1: Examination of potential paternal effects in the Siletz River offspring (see Figure 3 for maternal effects). To test for these effects, we split the 385 main effects DEGs into those that were upregulated in hatchery HxH offspring (n = 290; panels A, B) and those that were upregulated in natural-origin NxN offspring (n = 95; panels C, D).
Parallel genetic adaptation amidst a background of changing effective population sizes in divergent yellow perch (Perca flavescens) populations
Abstract Aquatic ecosystems are highly dynamic environments vulnerable to natural and anthropogenic disturbances. High-economic value fisheries are one of many ecosystem services affected by these disturbances and it is critical to accurately characterize the genetic diversity and effective population sizes of valuable fish stocks through time. We used genome-wide data to reconstruct the demographic histories of economically important yellow perch (Perca flavescens) populations.
Rapid, simultaneous increases in the effective sizes of adaptively divergent yellow perch (Perca flavescens) populations
Abstract Aquatic ecosystems are highly dynamic environments vulnerable to a wide variety of natural and anthropogenic disturbances. High-economic value fisheries are one of many ecosystem services affected by these disturbances and it is critical to accurately characterize their genetic diversity and effective population sizes through time. We used genome-wide data to reconstruct the demographic histories of economically important yellow perch (Perca flavescens) populations.
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