Mattias Edman

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Forskningsområden

My research focuses on how human caused environmental changes influence forest biodiversity and ecosystem functioning. I’m particularly interested in understanding how climate change, forest management and wildfire affect decomposing fungi and what the consequences are for terrestrial carbon cycling.

Publikationer

Artiklar i tidskrifter

Venugopal, P. , Junninen, K. , Linnakoski, R. , Edman, M. & Kouki, J. (2016). Climate and wood quality have decayer-specific effects on fungal wood decomposition. Forest Ecology and Management, vol. 360, ss. 341-351.

Ottosson, E. , Kubartova, A. , Edman, M. , Jonsson, M. , Lindhe, A. , Stenlid, J. & Dahlberg, A. (2015). Diverse ecological roles within fungal communities in decomposing logs of Picea abies. FEMS Microbiology Ecology, vol. 91: 3

Carlsson, F. , Edman, M. , Holm, S. & Jonsson, B. G. (2014). Effect of heat on interspecific competition in saprotrophic wood fungi. Fungal ecology, vol. 11, ss. 100-106.

Fagerlund-Edfeldt, A. , Hedenström, E. , Edman, M. & Jonsson, B. G. (2014). Effect of Debarking Water from Norway Spruce (Picea abies) on the Growth of Five Species of Wood-Decaying Fungi. Zeitschrift für Naturforschung C - A Journal of Biosciences, vol. 9-10: 69c, ss. 418-424.

Ottosson, E. , Nordén, J. , Dahlberg, A. , Edman, M. , Jönsson, M. , Larsson, K. , Olsson, J. , Penttillä, R. & et al. (2014). Species associations during the succession of wood-inhabiting fungal communities. Fungal ecology, vol. 11, ss. 17-28.

Eriksson, A. , Olsson, J. , Jonsson, B. G. , Toivanen, S. & Edman, M. (2013). Effects of restoration fire on deadwood heterogeneity and availability in three Pinus sylvestris forests in Sweden. Silva Fennica, vol. 47: 2, ss. Art. no. 954

Edman, M. & Fällström, I. (2013). An introduced tree species alters the assemblage structure and functional composition of wood-decaying fungi in microcosms. Forest Ecology and Management, vol. 306, ss. 9-14.

Olsson, J. , Johansson, T. , Jonsson, B. G. , Hjältén, J. , Edman, M. & Ericson, L. (2012). Landscape and substrate properties affect species richness and community composition of saproxylic beetles. Forest Ecology and Management, vol. 286, ss. 108-120.

Carlsson, F. , Edman, M. , Holm, S. , Eriksson, A. & Jonsson, B. G. (2012). Increased heat resistance in mycelia from wood fungi prevalent in forests characterized by fire : a possible adaptation to forest fire.. Fungal Biology, vol. 116: 10, ss. 1025-1031.

Jönsson, M. , Edman, M. & Jonsson, B. G. (2008). Colonization and extinction patterns of wood-decaying fungi in a boreal old-growth Picea abies forest. Journal of Ecology, vol. 96: 5, ss. 1065-1075.

Poulin, J. , Villard, M. , Edman, M. , Goulet, P. J. & Eriksson, A. (2008). Thresholds in nesting habitat requirements of an old forest specialist, the Brown Creeper (Certhia americana), as conservation targets. Biological Conservation, vol. 141: 4, ss. 1129-1137.

Edman, M. , Eriksson, A. & Villard, M. (2008). Effects of selection cutting on the abundance and fertility of indicator lichens Lobaria pulmonaria and Lobaria quercizans. Journal of Applied Ecology, vol. 45: 1, ss. 26-33.

Edman, M. , Jönsson, M. & Jonsson, B. G. (2007). Fungi and wind strongly influence the temporal availability of logs in an old-growth spruce forest. Ecological Applications, vol. 17: 2, ss. 482-490.

Edman, M. , Möller, R. & Ericson, L. (2006). Effects of enhanced tree growth rate on the decay capacities of three saprotrophic wood-fungi. Forest Ecology and Management, vol. 232: 1-3, ss. 12-18.

Berglund, H. , Edman, M. & Ericson, L. (2005). Temporal variation of wood-fungi diversity in boreal old-growth forests: Implications for monitoring. Ecological Applications, vol. 15: 3, ss. 970-982.

Edman, M. , Gustafsson, M. , Stenlid, J. & Ericson, L. (2004). Abundance and viability of fungal spores along a forestry gradient: responses to habitat loss and isolation?. Oikos, vol. 104: 1, ss. 35-42.

Edman, M. , Kruys, N. & Jonsson, B. G. (2004). Local dispersal sources strongly affect colonization patterns of wood-decaying fungi on experimental spruce logs. Ecological Applications, vol. 14: 3, ss. 893-901.

Edman, M. , Gustafsson, M. , Stenlid, J. , Jonsson, B. G. & Ericson, L. (2004). Spore deposition of wood-decaying fungi : Importance of landscape composition. Ecography, vol. 27: 1, ss. 103-111.

Edman, M. & Gustafsson, M. (2003). Wood-disc traps provide a robust method for studying spore dispersal of wood-decaying basidiomycetes. Mycologia, vol. 95: 3, ss. 553-556.

Edman, M. & Jonsson, B. G. (2001). Spatial pattern of downed logs and wood-living fungi in an old-growth spruce forest. Journal of Vegetation Science, vol. 12: 5, ss. 609-620.

Dettki, H. , Edman, M. , Esseen, P. , Hedenås, H. , Jonsson, B. G. , Kruys, N. , Moen, J. & Renhorn, K. E. (1998). Screening for species potentially sensitive to habitat fragmentation. Ecography, vol. 21: 6, ss. 649-652.