0000000000419147

AUTHOR

Jouni Penttinen

showing 5 related works from this author

The effect of peatland drainage and restoration on Odonata species richness and abundance

2015

Background Restoration aims at reversing the trend of habitat degradation, the major threat to biodiversity. In Finland, more than half of the original peatland area has been drained, and during recent years, restoration of some of the drained peatlands has been accomplished. Short-term effects of the restoration on peatland hydrology, chemistry and vegetation are promising but little is known about how other species groups apart from vascular plants and bryophytes respond to restoration efforts. Results Here, we studied how abundance and species richness of Odonata (dragonflies and damselflies) respond to restoration. We sampled larvae in three sites (restored, drained, pristine) on each o…

Conservation of Natural ResourcesDragonflyPeatOdonataBiodiversityOdonataMireEnvironmental Science(all)Abundance (ecology)MireAnimalsEcological restorationRestoration ecologyEnvironmental Restoration and RemediationFinlandEcology Evolution Behavior and SystematicsGeneral Environmental SciencebiologyEcologyBiodiversityDisturbancebiology.organism_classificationbiodiversiteettiHabitat destructionLarvaWetlandsLinear ModelsSpecies richnessResearch ArticleBMC Ecology
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Rapid recovery of invertebrate communities after ecological restoration of boreal mires

2015

Mire degradation due to drainage for forestry results in the loss of mire specialist species. To halt the loss in biodiversity, ecological restoration is needed and already implemented. However, a major challenge in ecological restoration is whether actions taken have the desired outcome. Key abiotic and biotic conditions for the successful restoration of invertebrate communities can be identified by testing the “Field of Dreams” hypothesis, which postulates that if a habitat is successfully restored, species will return. This study was conducted in nine boreal mires located in Eastern Finland, 1–3 years after restoration. Parts of each mire were drained for forestry during the 1960s and 19…

geographygeography.geographical_feature_categoryEcologyEcologyVegetation15. Life on landGeneralist and specialist speciesHabitat13. Climate actionMireEnvironmental scienceSpecies richnessTransectBogRestoration ecologyEcology Evolution Behavior and SystematicsNature and Landscape ConservationRestoration Ecology
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Local Extinction of Dragonfly and Damselfly Populations in Low- and High-Quality Habitat Patches

2010

Understanding the risk of extinction of a single population is an important problem in both theoretical and applied ecology. Local extinction risk depends on several factors, including population size, demographic or environmental stochasticity, natural catastrophe, or the loss of genetic diversity. The probability of local extinction may also be higher in low-quality sink habitats than in high-quality source habitats. We tested this hypothesis by comparing local extinction rates of 15 species of Odonata (dragonflies and damselflies) between 1930-1975 and 1995-2003 in central Finland. Local extinction rates were higher in low-quality than in high-quality habitats. Nevertheless, for the thre…

Extinction thresholdeducation.field_of_studyEcologyEcologyPopulation sizePopulationsocial sciencesBiologyDragonflybiology.organism_classificationhumanitiesHabitatCommon speciesLocal extinctioneducationEcology Evolution Behavior and SystematicsNature and Landscape ConservationExtinction debtConservation Biology
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Specialist butterflies benefit most from the ecological restoration of mires

2016

Abstract Anthropogenic disturbances cause biotic homogenization through the replacement of specialist species with generalists. Restoration has the potential to counteract these negative effects. Recently, restoration in the peatlands of Northern Europe has started to show positive effects on biodiversity. However, seldom have studies evaluated the response of insects to restoration by comparing populations prior to restoration to those thereafter with a Before-After Control-Impact (BACI) design. The aim of this study was to evaluate whether the restoration actions taken were appropriate to facilitate the successful recolonization of mire butterflies and plants. We found that, generally, dr…

0106 biological sciencesBoloria aquilonarista1172BiodiversityGeneralist and specialist species010603 evolutionary biology01 natural sciencesspecialist speciesMireRestoration ecologyEcology Evolution Behavior and SystematicsNature and Landscape ConservationbiologyEcologypeatland restoration010604 marine biology & hydrobiologyfungiPlant community15. Life on landbiology.organism_classificationBACI-designbiotic homogenizationHabitatButterflyta1181butterfly communitiesdrainage for forestryBiological Conservation
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High within- and between-trunk variation in the nematoceran (Diptera) community and its physical environment in decaying aspen trunks

2012

Dead wood is a primary habitat for a large number of insects, including species from many nematoceran (Diptera) groups. The species living in dead wood must be adapted to the ephemeral and ever-changing nature of their substrate. There is a growing body of knowledge about the effects of dead wood quality and the surrounding landscape on the saproxylic beetle community, but we know very little about the other saproxylic insects. Moreover, we know only very little about the variation in the insect community between different parts of decaying wood pieces. Using emergence traps, we studied the saproxylic nematoceran communities occupying different parts of decaying fallen aspen trunks in a bor…

0106 biological sciencesFungus gnatbiologyEcologymedia_common.quotation_subjectEphemeral keyTaigaInsect15. Life on landbiology.organism_classification010603 evolutionary biology01 natural sciencesSubstrate (marine biology)HabitatInsect ScienceCrane flyta1181Species richnessEcology Evolution Behavior and Systematics010606 plant biology & botanymedia_commonInsect Conservation and Diversity
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