The seed germination spectrum of alpine plants: a global meta‐analysis
Resource type
Journal article
Creator (person)
Fernández‐Pascual, Eduardo
Carta, Angelino
Mondoni, Andrea
Cavieres, Lohengrin
Rosbakh, Sergey
Venn, Susanna
Satyanti, Annisa
Guja, Lydia
Briceño, Verónica F.
Vandelook, Filip
Mattana, Efisio
Saatkamp, Arne
Bu, Haiyan
Sommerville, Karen
Poschlod, Peter
Liu, Kun
Nicotra, Adrienne
Jiménez‐Alfaro, Borja
Date published
November 18, 2020
Abstract
Assumptions about the germination ecology of alpine plants are presently based on individual species and local studies. A current challenge is to synthesize, at the global level, the alpine seed ecological spectrum.
We performed a meta‐analysis of primary data from laboratory experiments conducted across four continents (excluding the tropics) and 661 species, to estimate the influence of six environmental cues on germination proportion, mean germination time and germination synchrony; accounting for possible effects of seed morphology (mass, embryo:seed ratio) and phylogeny.
Most alpine plants show physiological seed dormancy, a strong need for cold stratification, warm‐cued germination and positive germination responses to light and alternating temperatures. Species restricted to the alpine belt have a higher preference for warm temperatures and a stronger response to cold stratification than species whose distribution extends also below the treeline. Seed mass, embryo size and phylogeny have strong constraining effects on germination responses to the environment.
Globally, overwintering and warm‐cued germination are key drivers of germination in alpine habitats. The interplay between germination physiology and seed morphological traits further reflects pressures to avoid frost or drought stress. Our results indicate the convergence, at the global level, of the seed germination spectrum of alpine species.
Journal title
New Phytologist
Publisher
Wiley
ISSN
0028-646X
eISSN
1469-8137
Official URL
Rights statement
In Copyright