6533b872fe1ef96bd12d2fde
RESEARCH PRODUCT
The effects of drainage and restoration of pine mires on habitat structure, vegetation and ants
Olli J. LoukolaNorbertas NoreikaJanne S. KotiahoPekka PunttilaOlli AutioAnna VuoriKari VepsäläinenD. Johan Kotzesubject
0106 biological sciencesAichi Biodiversity Target 15PeatFORMICA-AQUILONIAta1172ecological restorationpine bogs and fens010603 evolutionary biology01 natural sciencesMiretransforming and transformed drained miresBOREAL FORESTSlcsh:ForestryditchingBogRestoration ecologyFormicidae4112 Forestrygeography.geographical_feature_categoryAgroforestryEcologyEcological ModelingASSEMBLY RULESEXTINCTION DEBTForestryVegetation15. Life on land010602 entomologywater-table levelGeographyHabitat destructionTree standBOGSWATER-LEVELlcsh:SD1-669.5ta1181COMMUNITIESSOUTHERN FINLANDWOOD ANTSExtinction debtdescription
Habitat loss and degradation are the main threats to biodiversity worldwide. For example, nearly 80% of peatlands in southern Finland have been drained. There is thus a need to safeguard the remaining pristine mires and to restore degraded ones. Ants play a pivotal role in many ecosystems and like many keystone plant species, shape ecosystem conditions for other biota. The effects of mire restoration and subsequent vegetation succession on ants, however, are poorly understood. We inventoried tree stands, vegetation, water-table level, and ants (with pitfall traps) in nine mires in southern Finland to explore differences in habitats, vegetation and ant assemblages among pristine, drained (30â40 years ago) and recently restored (1â3 years ago) pine mires. We expected that restoring the water-table level by ditch filling and reconstructing sparse tree stands by cuttings will recover mire vegetation and ants. We found predictable responses in habitat structure, floristic composition and ant assemblage structure both to drainage and restoration. However, for mire-specialist ants the results were variable and longer-term monitoring is needed to confirm the success of restoration since these social insects establish perennial colonies with long colony cycles. We conclude that restoring the water-table level and tree stand structure seem to recover the characteristic vegetation and ant assemblages in the short term. This recovery was likely enhanced because drained mires still had both acrotelm and catotelm, and connectedness was still reasonable for mire organisms to recolonize the restored mires either from local refugia or from populations of nearby mires.
year | journal | country | edition | language |
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2016-01-01 |