6533b7dafe1ef96bd126d898
RESEARCH PRODUCT
Lichen communities on Populus tremula are affected by the density of Picea abies
Juha PykäläPanu HalmeAtte KomonenAleksi Nirhamosubject
0106 biological scienceshaapaBiodiversityEcological succession01 natural sciencestiheysvanhat metsätboreal forestsLichenFinlandbiodiversitysienitiededensitygeography.geographical_feature_categoryEcologybiologyjäkälätEcologyTaigaesiintyminenOld-growth forestekologiasuccessionold growth forestsboreaalinen vyöhykeEuropean aspenNorway spruceboreal zoneold-growth forestsvuorovaikutuslichen communitiesEcology (disciplines)epiphytic lichenscyanolichensinteractionManagement Monitoring Policy and Lawlichen010603 evolutionary biologyred‐listed speciessuojelualueetoccurenceSouthern FinlandPopulus tremulaNature and Landscape ConservationgeographyCommunityPicea abiesPicea abies15. Life on landbiology.organism_classificationbiodiversiteettimycologyprotected areasmetsäkuusired-listed speciescommunity ecology010606 plant biology & botanydescription
Questions Aspen (Populus tremula) is declining in the old‐growth forests of boreal Fennoscandia. This threatens the numerous taxa that are dependent on old aspens, including many epiphytic lichens. Potential methods to aid epiphytic lichens on aspen are centered around treatments which affect the density of Norway spruce (Picea abies). In this study, we investigated how epiphytic lichen communities on aspen are affected by the variation of spruce density in the immediate vicinity of the focal aspen. Location Southern boreal forests in Finland. Methods We recorded the occurrence of lichens from 120 aspens in 12 semi‐natural forest sites. We used spruce basal area as the measure for spruce density. The selected aspens represented a gradient in spruce basal area in the vicinity of the aspen from 0 to 36 m2/ha. We also measured other tree‐ and stand‐level variables that are known to influence lichen occurrence. Results Lichen communities on aspen were affected by spruce density, stand age and bark pH. Both lichen species richness and the richness of red‐listed species were highest at an intermediate spruce density, and both increased with stand age. Lichen species richness was higher when bark pH was lower. Additionally, community composition was influenced the most by spruce density, followed by bark pH. Conclusions Our study highlights the detrimental effects of high spruce density on lichen diversity on aspens. This is caused by high spruce density resulting in low light availability. Lichen diversity on aspens was highest when spruce density was intermediate. Spruce thinning in aspen‐rich old‐growth forests can be helpful in ensuring the long‐term persistence of old‐growth lichens on aspen in protected forests. peerReviewed
year | journal | country | edition | language |
---|---|---|---|---|
2021-04-01 | Applied Vegetation Science |