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The GenTree leaf collection: inter‐ and intraspecific leaf variation in seven forest tree species in Europe
Benavides, R., Carvalho, B., Bastias, C. C., López‐Quiroga, D., Mas, A., Cavers, S., … Valladares, F. (2021). The GenTree leaf collection: inter‐ and intraspecific leaf variation in seven forest tree species in Europe. Global Ecology and Biogeography, 30(3), 590-597. https://doi.org/10.1111/geb.13239
The GenTree Platform: growth traits and tree-level environmental data in 12 European forest tree species
Opgenoorth, L., Dauphin, B., Benavides, R., Heer, K., Alizoti, P., Martínez-Sancho, E., … Cavers, S. (2021). The GenTree Platform: growth traits and tree-level environmental data in 12 European forest tree species. GigaScience, 10, 1-13. https://doi.org/10.1093/gigascience/giab010
Genetische Vielfalt von <em>Trichopria drosophilae</em>, einem Feind der Kirschessigfliege
Gugerli, F., Moretti, M., Graf, R., Maier, M., Cara, C., Collatz, J., & Trivellone, V. (2019). Genetische Vielfalt von Trichopria drosophilae, einem Feind der Kirschessigfliege. Agrarforschung Schweiz, 10(10), 396-401.
The phylogeographic structure of <i>Arabis alpina</i> in the Alps shows consistent patterns across different types of molecular markers and geographic scales
Rogivue, A., Graf, R., Parisod, C., Holderegger, R., & Gugerli, F. (2018). The phylogeographic structure of Arabis alpina in the Alps shows consistent patterns across different types of molecular markers and geographic scales. Alpine Botany, 128(1), 35-45. https://doi.org/10.1007/s00035-017-0196-8
Local adaptation (mostly) remains local: reassessing environmental associations of climate-related candidate SNPs in <I>Arabidopsis halleri</I>
Rellstab, C., Fischer, M. C., Zoller, S., Graf, R., Tedder, A., Shimizu, K. K., … Gugerli, F. (2017). Local adaptation (mostly) remains local: reassessing environmental associations of climate-related candidate SNPs in Arabidopsis halleri. Heredity, 118(2), 193-201. https://doi.org/10.1038/hdy.2016.82
Signatures of local adaptation in candidate genes of oaks (<I>Quercus</I> spp.) with respect to present and future climatic conditions
Rellstab, C., Zoller, S., Walthert, L., Lesur, I., Pluess, A. R., Graf, R., … Gugerli, F. (2016). Signatures of local adaptation in candidate genes of oaks (Quercus spp.) with respect to present and future climatic conditions. Molecular Ecology, 25(23), 5907-5924. https://doi.org/10.1111/mec.13889
Using joint multivariate analyses of leaf morphology and molecular-genetic markers for taxon identification in three hybridizing European white oak species (<em>Quercus</em> spp.)
Rellstab, C., Bühler, A., Graf, R., Folly, C., & Gugerli, F. (2016). Using joint multivariate analyses of leaf morphology and molecular-genetic markers for taxon identification in three hybridizing European white oak species (Quercus spp.). Annals of Forest Science, 73(3), 669-679. https://doi.org/10.1007/s13595-016-0552-7
Highly polymorphic microsatellite markers in <i>Pulsatilla vulgaris</i> (Ranunculaceae) using next-generation sequencing
DiLeo, M. F., Graf, R., Holderegger, R., Rico, Y., & Wagner, H. H. (2015). Highly polymorphic microsatellite markers in Pulsatilla vulgaris (Ranunculaceae) using next-generation sequencing. Applications in Plant Sciences, 3(7), 1500031 (3 pp.). https://doi.org/10.3732/apps.1500031
Genetic consequences of using seed mixtures in restoration: a case study of a wetland plant <I>Lychnis flos-cuculi</I>
Aavik, T., Edwards, P. J., Holderegger, R., Graf, R., & Billeter, R. (2012). Genetic consequences of using seed mixtures in restoration: a case study of a wetland plant Lychnis flos-cuculi. Biological Conservation, 145(1), 195-204. https://doi.org/10.1016/j.biocon.2011.11.004
Using the 454 pyrosequencing-based technique in the development of nuclear microsatellite loci in the alpine plant <em>Arabis alpina</em> (Brassicaceae)
Buehler, D., Graf, R., Holderegger, R., & Gugerli, F. (2011). Using the 454 pyrosequencing-based technique in the development of nuclear microsatellite loci in the alpine plant Arabis alpina (Brassicaceae). American Journal of Botany, 98(5), e103-e105. https://doi.org/10.3732/ajb.1000488
Effects of floral neighborhood on seed set and degree of outbreeding in a high-alpine cushion plant
Waser, N. M., Wirth, L. R., Graf, R., Gugerli, F., Landergott, U., Erhardt, A., … Holderegger, R. (2011). Effects of floral neighborhood on seed set and degree of outbreeding in a high-alpine cushion plant. Oecologia, 167(2), 427-434. https://doi.org/10.1007/s00442-011-1985-1
Between-year variation in seed weights across altitudes in the high-alpine plant <i>Eritrichium nanum</i>
Wirth, L. R., Graf, R., Gugerli, F., Landergott, U., & Holderegger, R. (2010). Between-year variation in seed weights across altitudes in the high-alpine plant Eritrichium nanum. Plant Ecology, 207(2), 227-231. https://doi.org/10.1007/s11258-009-9667-3
Lower selfing rate at higher altitudes in the alpine plant <em>Eritrichium nanum</em> (Boraginaceae)
Wirth, L., Graf, R., Gugerli, F., Landergott, U., & Holderegger, R. (2010). Lower selfing rate at higher altitudes in the alpine plant Eritrichium nanum (Boraginaceae). American Journal of Botany, 97(5), 899-901. https://doi.org/10.3732/ajb.0900297
Fully informative microsatellite markers for the tetraploid plant <i>Eritrichium nanum</i> (Boraginaceae)
Wirth, L. R., Graf, R., Brodbeck, S., Reber-Funk, C., Holderegger, R., & Landergott, U. (2009). Fully informative microsatellite markers for the tetraploid plant Eritrichium nanum (Boraginaceae). Molecular Ecology Resources, 9(1), 312-314. https://doi.org/10.1111/j.1755-0998.2008.02449.x
Biologisch kontrollierbar. Der Kastanienrindenkrebs auf der Alpennordseite
Heiniger, U., Graf, R., & Rigling, D. (2007). Biologisch kontrollierbar. Der Kastanienrindenkrebs auf der Alpennordseite. Wald und Holz, 88(5), 50-53.