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Data from: Time to get moving: assisted gene flow of forest trees

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Author(s)
Aitken, Sally N.
Bemmels, Jordan B.
Keywords
assisted migration
climate change
ecological genetics
forest policy
genetic clines
local adaptation
provenance
temperate species

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URI
http://hdl.handle.net/20.500.12424/241381
Online Access
http://hdl.handle.net/10255/dryad.93303
Abstract
Geographic variation in trees has been investigated since the mid-18th century. Similar patterns of clinal variation have been observed along latitudinal and elevational gradients in common garden experiments for many temperate and boreal species. These studies convinced forest managers that a ‘local is best’ seed source policy was usually safest for reforestation. In recent decades, experimental design, phenotyping methods, climatic data and statistical analyses have improved greatly and refined but not radically changed knowledge of clines. The maintenance of local adaptation despite high gene flow suggests selection for local adaptation to climate is strong. Concerns over maladaptation resulting from climate change have motivated many new genecological and population genomics studies; however, few jurisdictions have implemented assisted gene flow (AGF), the translocation of pre-adapted individuals to facilitate adaptation of planted forests to climate change. Here, we provide evidence that temperate tree species show clines along climatic gradients sufficiently similar for average patterns or climate models to guide AGF in the absence of species-specific knowledge. Composite provenancing of multiple seed sources can be used to increase diversity and buffer against future climate uncertainty. New knowledge will continue to refine and improve AGF as climates warm further.
Date
2015-07-24
Type
Article
Identifier
oai:localhost:10255/dryad.93303
doi:10.5061/dryad.rj15h
Aitken SN, Bemmels JB (2016) Time to get moving: assisted gene flow of forest trees. Evolutionary Applications, 9(1): 271-290
http://hdl.handle.net/10255/dryad.93303
DOI
10.5061/dryad.rj15h
ae974a485f413a2113503eed53cd6c53
10.5061/dryad.rj15h
Scopus Count
Collections
Climate Ethics

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