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Climatic control of forest herb seed banks along a latitudinal gradient

Jan Plue; Pieter De Frenne; Kamal Acharya; Jörg Brunet; Olivier Chabrerie; Guillaume Decocq; Martin Diekmann; Bente J. Graae; Thilo Heinken; Martin Hermy; Annette Kolb; Isgard Lemke; Jaan Liira; Tobias Naaf; Anna Shevtsova; Kris Verheyen; Monika Wulf; Sara A. O. Cousins
Global Ecology and Biogeography · Vol. 22, Issue 10 · pp. 1106-1117 · 2013

Abstract

Aim Seed banks are central to the regeneration strategy of many plant species. Any factor altering seed bank density thus affects plant regeneration and population dynamics. Although seed banks are dynamic entities controlled by multiple environmental drivers, climatic factors are the most comprehensive, but still poorly understood. This study investigates how climatic variation structures seed production and resulting seed bank patterns. Location Temperate forests along a 1900 km latitudinal gradient in north‐western ( NW ) E urope. Methods Seed production and seed bank density were quantified in 153 plots along the gradient for four forest herbs with different seed longevity: G eum urbanum , M ilium effusum , P oa nemoralis and S tachys sylvatica . We tested the importance of climatic and local environmental factors in shaping seed production and seed bank density. Results Seed production was determined by population size, and not by climatic factors. G . urbanum and M . effusum seed bank density declined with decreasing temperature (growing degree days) and/or increasing temperature range (maximum–minimum temperature). P . nemoralis and S . sylvatica seed bank density were limited by population size and not by climatic variables. Seed bank density was also influenced by other, local environmental factors such as soil pH or light availability. Different seed bank patterns emerged due to differential seed longevities. Species with long‐lived seeds maintained constant seed bank densities by counteracting the reduced chance of regular years with high seed production at colder northern latitudes. Main conclusions Seed bank patterns show clear interspecific variation in response to climate across the distribution range. Not all seed banking species may be as well equipped to buffer climate change via their seed bank, notably in short‐term persistent species. Since the buffering capacity of seed banks is key to species persistence, these results provide crucial information to advance climatic change predictions on range shifts, community and biodiversity responses.

Bibliographic Information

JournalGlobal Ecology and Biogeography
PublisherWiley
Publication Date2013-10-01
Publication Year2013
Volume22
Issue10
Pages1106-1117
Document TypeJournal Article
Print ISSN1466-822X
eISSN1466-8238
DOI10.1111/geb.12068
SubjectEcology & Organismal Biology

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NARA Access Coverage1998-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/14668238
Publisher PageOpen Publisher Page
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