Ecology and Evolution | |
Photosynthetic traits of Sphagnum and feather moss species in undrained, drained and rewetted boreal spruce swamp forests | |
Laura Kangas1  Liisa Maanavilja1  Tomáš Hájek2  Eija Juurola1  Rodney A. Chimner3  Lauri Mehtätalo4  | |
[1] Peatland Ecology Group, Department of Forest Sciences, University of Helsinki, Helsinki, Finland;Institute of Botany, Academy of Sciences of the Czech Republic, Třeboň, Czech Republic;School of Forest Resources and Environmental Science, Michigan Technological University, Houghton, Michigan;School of Forest Sciences, University of Eastern Finland, Joensuu, Finland | |
关键词: chlorophyll fluorescence; ecophysiology; light responses; peatland; restoration; | |
DOI : 10.1002/ece3.939 | |
来源: Wiley | |
【 摘 要 】
In restored peatlands, recovery of carbon assimilation by peat-forming plants is a prerequisite for the recovery of ecosystem functioning. Restoration by rewetting may affect moss photosynthesis and respiration directly and/or through species successional turnover. To quantify the importance of the direct effects and the effects mediated by species change in boreal spruce swamp forests, we used a dual approach: (i) we measured successional changes in moss communities at 36 sites (nine undrained, nine drained, 18 rewetted) and (ii) photosynthetic properties of the dominant Sphagnum and feather mosses at nine of these sites (three undrained, three drained, three rewetted). Drainage and rewetting affected moss carbon assimilation mainly through species successional turnover. The species differed along a light-adaptation gradient, which separated shade-adapted feather mosses from Sphagnum mosses and Sphagnum girgensohnii from other Sphagna, and a productivity and moisture gradient, which separated Sphagnum riparium and Sphagnum girgensohnii from the less productive S. angustifolium, S. magellanicum and S. russowii. Undrained and drained sites harbored conservative, low-production species: hummock-Sphagna and feather mosses, respectively. Ditch creation and rewetting produced niches for species with opportunistic strategies and high carbon assimilation. The direct effects also caused higher photosynthetic productivity in ditches and in rewetted sites than in undrained and drained main sites.Abstract
【 授权许可】
CC BY
© 2014 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd.
Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
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