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Habitat‐related seed germination traits in alpine habitats
Authors:Maria Tudela‐Isanta  Eduardo Fernández‐Pascual  Malaka Wijayasinghe  Simone Orsenigo  Graziano Rossi  Hugh W Pritchard  Andrea Mondoni
Institution:1. Department of Earth and Environmental Sciences, University of Pavia, Pavia, Italy;2. Department of Biological Sciences, George Washington University, Washington, DC, USA;3. Comparative Plant and Fungal Biology, Royal Botanic Gardens, Ardingly, UK;4. Department of Agricultural and Environmental Sciences, University of Milan, Milano, Italy
Abstract:Understanding the key aspects of plant regeneration from seeds is crucial in assessing species assembly to their habitats. However, the regenerative traits of seed dormancy and germination are underrepresented in this context. In the alpine zone, the large species and microhabitat diversity provide an ideal context to assess habitat‐related regenerative strategies. To this end, seeds of 53 species growing in alpine siliceous and calcareous habitats (6230 and 6170 of EU Directive 92/43, respectively) were exposed to different temperature treatments under controlled laboratory conditions. Germination strategies in each habitat were identified by clustering with k‐means. Then, phylogenetic least squares correlations (PGLS) were fitted to assess germination and dormancy differences between species’ main habitat (calcareous and siliceous), microhabitat (grasslands, heaths, rocky, and species with no specific microhabitats), and chorology (arctic–alpine and continental). Calcareous and siliceous grasslands significantly differ in their germination behaviour with a slow, mostly overwinter germination and high germination under all conditions, respectively. Species with high overwinter germination occurs mostly in heaths and have an arctic–alpine distribution. Meanwhile, species with low or high germinability in general inhabit in grasslands or have no specific microhabitat (they belong to generalist), respectively. Alpine species use different germination strategies depending on habitat provenance, species’ main microhabitat, and chorotype. Such differences may reflect adaptations to local environmental conditions and highlight the functional role of germination and dormancy in community ecology.
Keywords:alpine zone  dormancy  functional traits  germinability  germination strategies  microhabitats  phylogenetic least squared regression
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