Stocking impacts the expression of candidate genes and physiological condition in introgressed brook charr (Salvelinus fontinalis) populations
Version of Record online: 23 OCT 2012
© 2012 The Authors. Evolutionary Applications published by Blackwell Publishing Ltd.
This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
Volume 6, Issue 2, pages 393–407, February 2013
How to Cite
Lamaze, F. C., Garant, D. and Bernatchez, L. (2013), Stocking impacts the expression of candidate genes and physiological condition in introgressed brook charr (Salvelinus fontinalis) populations. Evolutionary Applications, 6: 393–407. doi: 10.1111/eva.12022
- Issue online: 18 FEB 2013
- Version of Record online: 23 OCT 2012
- Manuscript Accepted: 19 SEP 2012
- Manuscript Received: 30 JUL 2012
- Natural Sciences and Engineering Research Council
- Canadian Research Chair in Genomics and Conservation of Aquatic Resources
- Collaborative Research and Training Experience
Figure S1. Individual admixture proportion with the 90% confidence interval based on 23 microsatellites using the structure software.
Figure S2. Relationship between the mass (g) and the fork length (mm) of all the fish sampled in Petit Saint-Bernard Lake and Méthot Lake for both years 2008 and 2009.
Table S1. Multiplex PCR protocole.
Table S2. Sequencing primers, real-time PCR primers, and Taqman minor groove binder probe for each candidate gene.
Table S3. Descriptive genetic analyses for each population, the number of fish genotyped (N), allelic richness based on minimum sample size of 37 individuals (Ar), observed (HO) and expected (HE) heterozygosity and FIS.
Table S4. Pairwise genetic differentiation (FST) based on 23 microsatellite markers.
Table S5. structure statistic output and the ad hoc statistic of Evanno et al. (2005) to determine the best K for all comparisons.
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