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Testing the correlation between norstictic acid content and species evolution in the <em>Cetraria aculeata</em> group in Europe
Lutsak, T., Fernández-Mendoza, F., Nadyeina, O., Şenkardeşler, A., & Printzen, C. (2017). Testing the correlation between norstictic acid content and species evolution in the Cetraria aculeata group in Europe. Lichenologist, 49(1), 39-56. https://doi.org/10.1017/S0024282916000566
Population genetics of lichen-forming fungi - a review
Werth, S. (2010). Population genetics of lichen-forming fungi - a review. Lichenologist, 42(5), 499-519. https://doi.org/10.1017/S0024282910000125
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
Effect of disturbances on the genetic diversity of an old-forest associated lichen
Werth, S., Wagner, H. H., Holderegger, R., Kalwij, J. M., & Scheidegger, C. (2006). Effect of disturbances on the genetic diversity of an old-forest associated lichen. Molecular Ecology, 15(4), 911-921. https://doi.org/10.1111/j.1365-294X.2006.02838.x
Quantifying dispersal and establishment limitation in a population of an epiphytic lichen
Werth, S., Wagner, H. H., Gugerli, F., Holderegger, R., Csencsics, D., Kalwij, J. M., & Scheidegger, C. (2006). Quantifying dispersal and establishment limitation in a population of an epiphytic lichen. Ecology, 87(8), 2037-2046. https://doi.org/10.1890/0012-9658(2006)87[2037:QDAELI]2.0.CO;2
Species-specific detection of &lt;em&gt;Lobaria pulmonaria&lt;/em&gt; (lichenized ascomycetes) diaspores in litter samples trapped in snow cover
Walser, J. C., Zoller, S., Büchler, U., & Scheidegger, C. (2001). Species-specific detection of Lobaria pulmonaria (lichenized ascomycetes) diaspores in litter samples trapped in snow cover. Molecular Ecology, 10(9), 2129-2138. https://doi.org/10.1046/j.1365-294X.2001.01353.x
Effects of ozone fumigation on epiphytic macrolichens: ultrastructure, CO&lt;sub&gt;2&lt;/sub&gt; gas exchange and chlorophyll fluorescence
Scheidegger, C., & Schroeter, B. (1995). Effects of ozone fumigation on epiphytic macrolichens: ultrastructure, CO2 gas exchange and chlorophyll fluorescence. Environmental Pollution, 88(3), 345-354. https://doi.org/10.1016/0269-7491(95)93449-A
Structural and functional processes during water vapour uptake and desiccation in selected lichens with green algal photobionts
Scheidegger, C., Schroeter, B., & Frey, B. (1995). Structural and functional processes during water vapour uptake and desiccation in selected lichens with green algal photobionts. Planta, 197(2), 399-409. https://doi.org/10.1007/BF00202663
Transplantation of symbiotic propagules and thallus fragments: methods for the conservation of threatened epiphytic lichen populations
Scheidegger, C., Frey, B., & Zoller, S. (1995). Transplantation of symbiotic propagules and thallus fragments: methods for the conservation of threatened epiphytic lichen populations. In C. Scheidegger, P. A. Wolseley, & G. Thor (Eds.), Mitteilungen der Eidgenössischen Forschungsanstalt für Wald, Schnee und Landschaft: Vol. 70/1. Conservation biology of lichenised fungi (pp. 41-62). Eidgenössische Forschungsanstalt für Wald, Schnee und Landschaft.
Water relations of lichens at subzero temperatures: structural changes and carbon dioxide exchange in the lichen &lt;em&gt;Umbilicaria aprina&lt;/em&gt; from continental Antarctica
Schroeter, B., & Scheidegger, C. (1995). Water relations of lichens at subzero temperatures: structural changes and carbon dioxide exchange in the lichen Umbilicaria aprina from continental Antarctica. New Phytologist, 131(2), 273-285. https://doi.org/10.1111/j.1469-8137.1995.tb05729.x