Molecular data indicate multiple independent colonizations of former lignite mining areas in Eastern Germany by Epipactis palustris (Orchidaceae)

被引:0
作者
Korinna Esfeld
I. Hensen
K. Wesche
S. S. Jakob
S. Tischew
F. R. Blattner
机构
[1] Martin-Luther University of Halle-Wittenberg,Institute of Biology/Geobotany and Botanical Garden
[2] Leibniz Institute of Plant Genetics and Crop Plant Research (IPK),undefined
[3] Anhalt University of Applied Sciences,undefined
来源
Biodiversity and Conservation | 2008年 / 17卷
关键词
Colonization; Donor population; Genetic diversity; Immigration; Mining pits; miRPF; Population structure; RAPD;
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摘要
Former lignite mining areas in Eastern Germany are valuable secondary habitats for many plant and animal species endangered in the natural landscape. Here, we present a study on genetic structure and diversity of 16 populations of the threatened orchid Epipactis palustris (Orchidaceae) from five mining pits and 11 natural habitats, which we carried out in order to ascertain how many times this species immigrated into former lignite mining areas, and where the source populations are located. We used two different anonymous genetic marker methods, random amplified polymorphic DNA (RAPD) and microRNA-primed genomic fingerprinting (miRPF) to analyze patterns of genetic variation. Results of a multivariate analysis based on asymmetric Soerensen similarity, principal coordinate analysis and a neighbor-joining cluster analysis indicate high within population-variability and a moderate genetic differentiation among E. palustris populations. We found no differences between genetic diversity values of populations from former mining areas and those of natural habitats. Thus, we could not find evidences for genetic bottlenecks in the mining populations due to founder events. Source populations are predominantly close surrounding populations as geographic distance and genetic dissimilarity were correlated. However, exchanges may reach beyond 125 km and repeated independent colonization events are highly likely.
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共 135 条
[1]  
Antonovics J(1970)Evolution in closely adjacent plant populations. VIII. Clinal patterns at a mine boundary Heredity 25 349-362
[2]  
Bradshaw AD(1994)The introduction of native plant species on industrial waste heaps: a test of immigration and other factors affecting primary succession J Appl Ecol 31 74-84
[3]  
Ash HJ(1996)Seed banks and seed dispersal: Important topics in restoration ecology Acta Bot Neerl 45 461-490
[4]  
Gemmell RP(1998)Echte Sumpfwurz ( Ber Arbeitskr heim Orchideen 14 36-46
[5]  
Bradshaw AD(2007) (L.) C Mol Ecol 16 3737-3758
[6]  
Bakker JP(1983)), Orchidee des Jahres 1998 J Appl Ecol 20 1-17
[7]  
Poschlod P(1997)Statistical analysis of amplified fragment length polymorphism data: a toolbox for molecular ecologists and evolutionists Ecol Eng 8 255-269
[8]  
Stryskstra RJ(2000)The reconstruction of ecosystems Landsc Urban Plann 51 89-100
[9]  
Bekker RM(2000)Restoration of mined lands–using natural processes Biodivers Conserv 9 1297-1311
[10]  
Thompson K(2007)The use of natural processes in reclamation–advantages and difficulties J Plant Res 120 99-112