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  • (-) Keywords = genetic structure
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A range‐wide postglacial history of Swiss stone pine based on molecular markers and palaeoecological evidence
Gugerli, F., Brodbeck, S., Lendvay, B., Dauphin, B., Bagnoli, F., van der Knaap, W. O., … Schwörer, C. (2023). A range‐wide postglacial history of Swiss stone pine based on molecular markers and palaeoecological evidence. Journal of Biogeography, 50(6), 1049-1062. https://doi.org/10.1111/jbi.14586
Evaluating the functionality of expert-assessed wildlife corridors with genetic data from roe deer
Burkart, S., Gugerli, F., Senn, J., Kuehn, R., & Bolliger, J. (2016). Evaluating the functionality of expert-assessed wildlife corridors with genetic data from roe deer. Basic and Applied Ecology, 17(1), 52-60. https://doi.org/10.1016/j.baae.2015.09.001
Combining landscape genetics, radio-tracking and long-term monitoring to derive management implications for Natterjack toads (<I>Epidalea calamita</I>) in agricultural landscapes
Frei, M., Csencsics, D., Brodbeck, S., Schweizer, E., Bühler, C., Gugerli, F., & Bolliger, J. (2016). Combining landscape genetics, radio-tracking and long-term monitoring to derive management implications for Natterjack toads (Epidalea calamita) in agricultural landscapes. Journal for Nature Conservation, 32, 22-34. https://doi.org/10.1016/j.jnc.2016.04.002
Contemporary gene flow and mating system of <i>Arabis alpina</i> in a Central European alpine landscape
Buehler, D., Graf, R., Holderegger, R., & Gugerli, F. (2012). Contemporary gene flow and mating system of Arabis alpina in a Central European alpine landscape. Annals of Botany, 109(7), 1359-1367. https://doi.org/10.1093/aob/mcs066
Genetische Struktur von Waldbäumen im Alpenraum als Folge (post)glazialer Populationsgeschichte
Gugerli, F., & Sperisen, C. (2010). Genetische Struktur von Waldbäumen im Alpenraum als Folge (post)glazialer Populationsgeschichte. Schweizerische Zeitschrift für Forstwesen, 161(6), 207-215. https://doi.org/10.3188/szf.2010.0207
History or ecology? Substrate types as a major driver of spatial genetic structure in Alpine plants
Alvarez, N., Thiel-Egenter, C., Tribsch, A., Holderegger, R., Manel, S., Schönswetter, P., … IntraBioDiv Consortium (2009). History or ecology? Substrate types as a major driver of spatial genetic structure in Alpine plants. Ecology Letters, 12(7), 632-640. https://doi.org/10.1111/j.1461-0248.2009.01312.x
Concordant genetic breaks, identified by combining clustering and tessellation methods, in two co-distributed alpine plant species
Thiel-Egenter, C., Holderegger, R., Brodbeck, S., IntraBioDiv Consortium, & Gugerli, F. (2009). Concordant genetic breaks, identified by combining clustering and tessellation methods, in two co-distributed alpine plant species. Molecular Ecology, 18(21), 4495-4507. https://doi.org/10.1111/j.1365-294X.2009.04360.x
Pronounced fluctuations of spruce bark beetle (Scolytinae: <i>Ips typographus</i>) populations do not invoke genetic differentiation
Gugerli, F., Gall, R., Meier, F., & Wermelinger, B. (2008). Pronounced fluctuations of spruce bark beetle (Scolytinae: Ips typographus) populations do not invoke genetic differentiation. Forest Ecology and Management, 256(3), 405-409. https://doi.org/10.1016/j.foreco.2008.04.038
Landscape-level gene flow in <i>Lobaria pulmonaria</i>, an epiphytic lichen
Werth, S., Gugerli, F., Holderegger, R., Wagner, H. H., Csencsics, D., & Scheidegger, C. (2007). Landscape-level gene flow in Lobaria pulmonaria, an epiphytic lichen. Molecular Ecology, 16(13), 2807-2815. https://doi.org/10.1111/j.1365-294X.2007.03344.x