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No distinct barrier effects of highways and a wide river on the genetic structure of the Alpine newt (<i>Ichthyosaura alpestris</i>) in densely settled landscapes
Luqman, H., Muller, R., Vaupel, A., Brodbeck, S., Bolliger, J., & Gugerli, F. (2018). No distinct barrier effects of highways and a wide river on the genetic structure of the Alpine newt (Ichthyosaura alpestris) in densely settled landscapes. Conservation Genetics, 19(3), 673-685. https://doi.org/10.1007/s10592-018-1046-y
How to make landscape genetics beneficial for conservation management?
Keller, D., Holderegger, R., van Strien, M. J., & Bolliger, J. (2015). How to make landscape genetics beneficial for conservation management? Conservation Genetics, 16(3), 503-512. https://doi.org/10.1007/s10592-014-0684-y
Identifying genetic signatures of selection in a non-model species, alpine gentian (<i>Gentiana nivalis</i> L.), using a landscape genetic approach
Bothwell, H., Bisbing, S., Therkildsen, N. O., Crawford, L., Alvarez, N., Holderegger, R., & Manel, S. (2013). Identifying genetic signatures of selection in a non-model species, alpine gentian (Gentiana nivalis L.), using a landscape genetic approach. Conservation Genetics, 14(2), 467-481. https://doi.org/10.1007/s10592-012-0411-5
Microsatellite markers for <i>Dictyochloropsis reticulata</i> (Trebouxiophyceae), the symbiotic alga of the lichen <i>Lobaria pulmonaria</i> (L.)
Dal Grande, F., Widmer, I., Beck, A., & Scheidegger, C. (2010). Microsatellite markers for Dictyochloropsis reticulata (Trebouxiophyceae), the symbiotic alga of the lichen Lobaria pulmonaria (L.). Conservation Genetics, 11(3), 1147-1149. https://doi.org/10.1007/s10592-009-9904-2
Field surveys of capercaillie (<i>Tetrao urogallus</i>) in the Swiss Alps underestimated local abundance of the species as revealed by genetic analyses of non-invasive samples
Jacob, G., Debrunner, R., Gugerli, F., Schmid, B., & Bollmann, K. (2010). Field surveys of capercaillie (Tetrao urogallus) in the Swiss Alps underestimated local abundance of the species as revealed by genetic analyses of non-invasive samples. Conservation Genetics, 11(1), 33-44. https://doi.org/10.1007/s10592-008-9794-8
Applications of landscape genetics in conservation biology: concepts and challenges
Segelbacher, G., Cushman, S. A., Epperson, B. K., Fortin, M. J., Francois, O., Hardy, O. J., … Manel, S. (2010). Applications of landscape genetics in conservation biology: concepts and challenges. Conservation Genetics, 11(2), 375-385. https://doi.org/10.1007/s10592-009-0044-5
Low RAPD variation and female-biased sex ratio indicate genetic drift in small populations of the dioecious conifer <I>Taxus baccata</I> in Switzerland
Hilfiker, K., Gugerli, F., Schütz, J. P., Rotach, P., & Holderegger, R. (2004). Low RAPD variation and female-biased sex ratio indicate genetic drift in small populations of the dioecious conifer Taxus baccata in Switzerland. Conservation Genetics, 5(3), 357-365. https://doi.org/10.1023/B:COGE.0000031144.95293.1b