NARA Discovery
Article Details
← Back to Search Results
Journal Article

Flowering phenology in alpine grassland strongly responds to shifts in snowmelt but weakly to summer drought

Maria Vorkauf; Ansgar Kahmen; Christian Körner; Erika Hiltbrunner
Alpine Botany · Vol. 131, Issue 1 · pp. 73-88 · 2021

Abstract

Alpine plants complete their seasonal phenological cycle during two to three snow-free months. Under climate change, snowmelt advances and the risk of summer droughts increases. Yet, photoperiodism may prevent alpine plants from benefiting from an earlier start of the growing season. To identify the drivers of flowering phenology in the seven main species of an alpine grassland, we experimentally shifted the snowmelt date through snow manipulations, and excluded precipitation during summer. With “time-to-event” models, we analysed the beginning of main flowering with respect to temperature sums, time after snowmelt, and calendar day (photoperiod). We identified two phenology types: four species tracking snowmelt dates directly or with a certain lag set by temperature sums, including the dominant sedge Carex curvula , Anthoxanthum alpinum Helictotrichon versicolor , and Trifolium alpinum , and three species tracking photoperiod: Geum montanum , Leontodon helveticus and Potentilla aurea . Photoperiodism did not act as daylength threshold but rather modulated the thermal sums at flowering. Hence, photoperiod delayed flowering after earlier snowmelt. The grass A. alpinum was the only one of seven species that clearly responded to drought by earlier and longer flowering. The remarkably high importance of snowmelt dates for both phenology types suggests an earlier onset of flowering in a warmer climate, particularly for non-photoperiod-sensitive species, with an increasing risk for freezing damages and potential disruptions of biotic interactions in the most frequent type of alpine grassland across the Alps. Consequentially, the distinct microclimate and species-specific responses to photoperiod challenge temperature-only based projections of climate warming effects on alpine plant species.

Bibliographic Information

JournalAlpine Botany
PublisherSpringer
Publication Date2021-04-01
Publication Year2021
Volume131
Issue1
Pages73-88
Document TypeJournal Article
Print ISSN1664-2201
eISSN1664-221X
DOI10.1007/s00035-021-00252-z

Access Information

NARA Access Coverage2005-01-01~Current
Journal Homepagehttps://www.springer.com/journal/35
Publisher PageOpen Publisher Page
Full-text access depends on NARA's subscribed coverage and institutional access.