A synthesis of multi-taxa management experiments to guide forest biodiversity conservation in Europe
Julkaisuvuosi
2023
Tekijät
Tinya, Flora; Doerfler, Inken; de Groot, Maarten; Heilman-Clausen, Jacob; Kovacs, Bence; Marell, Anders; Norden, Bjorn; Aszalos, Reka; Baessler, Claus; Brazaitis, Gediminas; Burrascano, Sabina; Camprodon, Jordi; Chudomelova, Marketa; Cizek, Lukas; D'Andrea, Ettore; Gossner, Martin; Halme, Panu; Hedl, Radim; Korboulewsky, Nathalie; Kouki, Jari; Kozel, Petr; Lohmus, Asko; Lopez, Rosana; Malis, Frantisek; Martin, Juan A.; Matteucci, Giorgio; Mattioli, Walter; Mundet, Roser; Mueller, Jorg; Nicolas, Manuel; Olden, Anna; Pique, Miriam; Preiksa, Zydrunas; Ciuro, Joan Rovira; Remm, Liina; Schall, Peter; Sebek, Pavel; Seibold, Sebastian; Simoncic, Primoz; Ujhazy, Karol; Ujhazyova, Mariana; Vild, Ondrej; Vincenot, Lucie; Weisser, Wolfgang; Odor, Peter
Näytä enemmänTiivistelmä
Most European forests are used for timber production. Given the limited extent of unmanaged (and especially primary) forests, it is essential to include commercial forests in the conservation of forest biodiversity. In order to develop ecologically sustainable forest management practices, it is important to understand the management impacts on forest-dwelling organisms. Experiments allow testing the effects of alternative management strategies, and monitoring of multiple taxa informs us on the response range across forest-dwelling organisms. To provide a representative picture of the currently available information, metadata on 28 multi-taxa forest management experiments were collected from 14 European countries. We demonstrate the potential of compiling these experiments in a single network to upscale results from the local to continental level and indicate directions for future research. Among the different forest types, temperate deciduous beech and oak-dominated forests are the best represented in the multi-taxa management experiments. Of all the experimental treatments, innovative ways of traditional management techniques (e.g., gap cutting and thinning) and conservation-oriented interventions (e.g., microhabitat enrichment) provide the best opportunity for large-scale analyses. Regarding the organism groups, woody regeneration, herbs, fungi, beetles, bryophytes, birds and lichens offer the largest potential for addressing management–biodiversity relationships at the European level. We identified knowledge gaps regarding boreal, hemiboreal and broadleaved evergreen forests, the treatments of large herbivore exclusion, prescribed burning and forest floor or water manipulations, and the monitoring of soil-dwelling organisms and some vertebrate classes, e.g., amphibians, reptiles and mammals. To improve multi-site comparisons, design of future experiments should be fitted to the set-up of the ongoing projects and standardised biodiversity sampling is suggested. However, the network described here opens the way to learn lessons on the impact on forest biodiversity of different management techniques at the continental level, and thus, supports biodiversity conservation in managed forests.
Näytä enemmänOrganisaatiot ja tekijät
Itä-Suomen yliopisto
Kouki Jari Juhani
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Artikkeli
Emojulkaisun tyyppi
Lehti
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Katsausartikkeli
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TieteellinenVertaisarvioitu
VertaisarvioituOKM:n julkaisutyyppiluokitus
A2 Katsausartikkeli tieteellisessä aikakauslehdessäJulkaisukanavan tiedot
Volyymi
46
Artikkelinumero
e02553
ISSN
Julkaisufoorumi
Julkaisufoorumitaso
1
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CC BY NC ND
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Muut tiedot
Tieteenalat
Ekologia, evoluutiobiologia; Metsätiede
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[object Object],[object Object],[object Object],[object Object],[object Object]
Kustantajan kansainvälisyys
Kansainvälinen
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englanti
Kansainvälinen yhteisjulkaisu
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Yhteisjulkaisu yrityksen kanssa
Ei
DOI
10.1016/j.gecco.2023.e02553
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