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Evaluating methodologies for species delimitation: the mismatch between phenotypes and genotypes in lichenized fungi (<i>Bryoria</i> sect. <i>Implexae</i>, <i>Parmeliaceae</i>)
Boluda, C. G., Rico, V. J., Divakar, P. K., Nadyeina, O., Myllys, L., McMullin, R. T., … Hawksworth, D. L. (2019). Evaluating methodologies for species delimitation: the mismatch between phenotypes and genotypes in lichenized fungi (Bryoria sect. Implexae, Parmeliaceae). Persoonia, 42, 75-100. https://doi.org/10.3767/persoonia.2019.42.04
Microsatellite based genetic diversity of the widespread epiphytic lichen &lt;em&gt;Usnea subfloridana&lt;/em&gt; (Parmeliaceae, Ascomycota) in Estonia: comparison of populations from the mainland and an island
Degtjarenko, P., Jüriado, I., Mandel, T., Tõrra, T., Saag, A., Scheidegger, C., & Randlane, T. (2019). Microsatellite based genetic diversity of the widespread epiphytic lichen Usnea subfloridana (Parmeliaceae, Ascomycota) in Estonia: comparison of populations from the mainland and an island. MycoKeys, 58, 27-45. https://doi.org/10.3897/mycokeys.58.36557
Climate change-induced range shift of the endemic epiphytic lichen <i>Lobaria pindarensis</i> in the Hindu Kush Himalayan region
Devkota, S., Dymytrova, L., Chaudhary, R. P., Werth, S., & Scheidegger, C. (2019). Climate change-induced range shift of the endemic epiphytic lichen Lobaria pindarensis in the Hindu Kush Himalayan region. Lichenologist, 51(2), 157-173. https://doi.org/10.1017/S002428291900001X
Genetic diversity and structure of the epiphytic foliose lichen &lt;em&gt;Lobaria&lt;/em&gt; &lt;em&gt;pindarensis&lt;/em&gt; in the Himalayas depends on elevation
Devkota, S., Chaudhary, R. P., Werth, S., & Scheidegger, C. (2019). Genetic diversity and structure of the epiphytic foliose lichen Lobaria pindarensis in the Himalayas depends on elevation. Fungal Ecology, 41, 245-255. https://doi.org/10.1016/j.funeco.2019.07.002
Autochthone Gebirgswälder in der Schweiz anhand von baumbewohnenden Flechten erkennen
Dymytrova, L., Brändli, U. B., Stofer, S., & Scheidegger, C. (2019). Autochthone Gebirgswälder in der Schweiz anhand von baumbewohnenden Flechten erkennen. Schweizerische Zeitschrift für Forstwesen, 170(5), 258-265.
«Sammlungen sind viel wertvoller geworden»
Scheidegger, C., & Koechlin, S. (2019). «Sammlungen sind viel wertvoller geworden». Tierwelt, 12, 14-15.
Variation in plant functional traits along altitudinal gradient and land use types in Sagarmatha National Park and Buffer Zone, Nepal
Shah, S., Shrestha, K. K., & Scheidegger, C. (2019). Variation in plant functional traits along altitudinal gradient and land use types in Sagarmatha National Park and Buffer Zone, Nepal. American Journal of Plant Sciences, 10(4), 595-614. https://doi.org/10.4236/ajps.2019.104043
Die Revision der Roten Liste der Flechten der Schweiz
Stofer, S., Dietrich, M., Gabathuler, M., Keller, C., von Hirschheydt, G., Vust, M., & Scheidegger, C. (2019). Die Revision der Roten Liste der Flechten der Schweiz. Meylania, 63, 30-34.
New species and records of <i>Pyxine</i> (Caliciaceae) in China
Yang, M. X., Wang, X. Y., Liu, D., Zhang, Y. Y., Li, L. J., Yin, A. C., … Wang, L. S. (2019). New species and records of Pyxine (Caliciaceae) in China. MycoKeys, 45, 93-109. https://doi.org/10.3897/mycokeys.45.29374
Die Revision der Roten Liste der Flechten der Schweiz - Wer macht mit?
von Hirschheydt, G., Dietrich, M., Gabathuler, M., Keller, C., Scheidegger, C., Vust, M., & Stofer, S. (2019). Die Revision der Roten Liste der Flechten der Schweiz - Wer macht mit? Meylania, 63, 35-37.
Conservation of fungi
Ainsworth, A. M., Canteiro, C., Dahlberg, A., Douglas, B., Furci, G., Minter, D., … Williams, E. (2018). Conservation of fungi. In K. J. Willis (Ed.), State of the world's fungi 2018 (pp. 70-77). Kew: Royal Botanic Gardens.
From natural forest to cultivated land: lichen species diversity along land-use gradients in Kanchenjunga, Eastern Nepal
Chongbang, T. B., Keller, C., Nobis, M., Scheidegger, C., & Baniya, C. B. (2018). From natural forest to cultivated land: lichen species diversity along land-use gradients in Kanchenjunga, Eastern Nepal. eco.mont, 10(1), 46-60. https://doi.org/10.1553/eco.mont-10-1s46
Are species-pairs diverging lineages? A nine-locus analysis uncovers speciation among species-pairs of the <i>Lobaria meridionalis</i>-group (Ascomycota)
Cornejo, C., Chabanenko, S., & Scheidegger, C. (2018). Are species-pairs diverging lineages? A nine-locus analysis uncovers speciation among species-pairs of the Lobaria meridionalis-group (Ascomycota). Molecular Phylogenetics and Evolution, 129, 48-59. https://doi.org/10.1016/j.ympev.2018.07.011
Estimating the timescale of <i>Lobaria</i> diversification
Cornejo, C., & Scheidegger, C. (2018). Estimating the timescale of Lobaria diversification. Lichenologist, 50(1), 113-121. https://doi.org/10.1017/S0024282917000676
Unconstrained gene flow between populations of a widespread epiphytic lichen <i>Usnea subfloridana</i> (Parmeliaceae, Ascomycota) in Estonia
Degtjarenko, P., Tõrra, T., Mandel, T., Marmor, L., Saag, A., Scheidegger, C., & Randlane, T. (2018). Unconstrained gene flow between populations of a widespread epiphytic lichen Usnea subfloridana (Parmeliaceae, Ascomycota) in Estonia. Fungal Biology, 122(8), 731-737. https://doi.org/10.1016/j.funbio.2018.03.013
Forest history and epiphytic lichens: testing indicators for assessing forest autochthony in Switzerland
Dymytrova, L., Brändli, U. B., Ginzler, C., & Scheidegger, C. (2018). Forest history and epiphytic lichens: testing indicators for assessing forest autochthony in Switzerland. Ecological Indicators, 84, 847-857. https://doi.org/10.1016/j.ecolind.2017.08.009
"Lebensraum Gewässer - Sedimentdynamik und Vernetzung", ein Projekt im Forschungsprogramm. "Milieux aquatiques - dynamique sédimentaire et connectivité", un projet du programme de recherche "Aménagement et écologie des cours d'eau"
Fink, S., Belser, A., Juez, C., Scheidegger, C., Weber, C., & Vetsch, D. (2018). "Lebensraum Gewässer - Sedimentdynamik und Vernetzung", ein Projekt im Forschungsprogramm. "Milieux aquatiques - dynamique sédimentaire et connectivité", un projet du programme de recherche "Aménagement et écologie des cours d'eau". Nature + Paysage. Natur + Landschaft: Inside, (4), 27-32.
Effects of barriers on functional connectivity of riparian plant habitats under climate change
Fink, S., & Scheidegger, C. (2018). Effects of barriers on functional connectivity of riparian plant habitats under climate change. Ecological Engineering, 115, 75-90. https://doi.org/10.1016/j.ecoleng.2018.02.010
Bergahornweiden im Alpenraum. Kulturgeschichte, Biodiversität und Rudolphis Trompetenmoos
Kiebacher, T., & Bergamini, A. (2018). Bergahornweiden im Alpenraum. Kulturgeschichte, Biodiversität und Rudolphis Trompetenmoos. Bristol-Schriftenreihe: Vol. 54. (C. Scheidegger & M. Bürgi, Eds.). Bern: Haupt Verlag.
Genetic structure of <i> Lobaria pulmonaria</i> in the Alps as a result of post-glacial recolonization history
Lerch, M., Nadyeina, O., & Scheidegger, C. (2018). Genetic structure of Lobaria pulmonaria in the Alps as a result of post-glacial recolonization history. Herzogia, 31(1), 650-665. https://doi.org/10.13158/heia.31.1.2018.650
 

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