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Wiley InterScience

Journal of Evolutionary Biology

Journal of Evolutionary Biology

Volume 21 Issue 2, Pages 492 - 501

Published Online: 10 Jan 2008

Journal compilation © 2010 European Society for Evolutionary Biology



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Rapid evolution towards heavy metal resistance by mountain birch around two subarctic copper–nickel smelters
J. K. ERÄNEN
Section of Ecology, Department of Biology, University of Turku, Finland
Correspondence to J K Eränen, Section of Ecology, Department of Biology, University of Turku, FI-20014 Turku, Finland.
Tel.: +358 2 3335852; fax: +358 2 3336550; e-mail: janera@utu.fi
Copyright Journal compilation © 2008 European Society for Evolutionary Biology
KEYWORDS
Betula • common garden • co-resistance • copper • heavy metal adaptation • industrial barren • nickel • parallel evolution • rapid evolution • trade-off

ABSTRACT

Adaptations to pollution among long-lived trees have rarely been documented, possibly because of their long reproductive cycles and the evolutionarily short timescales of anthropogenic pollution. Here, I present the results of a greenhouse experiment that suggest rapid evolutionary adaptation of mountain birch [Betula pubescens subsp. czerepanovii (Orlova) Hämet-Ahti] to heavy metal (HM) stress around two copper–nickel smelters in NW Russia. The adaptation incurs a cost with reduced performance of adapted seedlings in pristine conditions. The industrial barrens around the studied smelters are extremely high-stress sites with low seed germination and survival. It is likely that strong natural selection has eliminated all sensitive genotypes within one or two generations, with only the most tolerant individuals persisting and producing adapted seeds in the individual barrens. The results were similar from around both smelters, suggesting parallel evolution towards HM resistance.


Received 11 September 2007; revised 26 November 2007; accepted 5 December 2007

DIGITAL OBJECT IDENTIFIER (DOI)
10.1111/j.1420-9101.2007.01491.x About DOI

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