Long-Term Cumulative Effect of Management Decisions on Forest Structure and Biodiversity in Hemiboreal Forests

被引:0
作者
Paluots, Teele [1 ,2 ]
Liira, Jaan [3 ]
Leis, Mare [4 ]
Laarmann, Diana [1 ]
Poldveer, Eneli [1 ]
Franklin, Jerry F. [5 ]
Korjus, Henn [1 ]
机构
[1] Estonian Univ Life Sci, Inst Forestry & Engn, Kreutzwaldi 5, EE-51006 Tartu, Estonia
[2] Estonian State Forest Management Ctr, Moisa 3, EE-45403 Haljala Municipality, Estonia
[3] Univ Tartu, Fac Sci & Technol, Inst Ecol & Earth Sci, J Liivi Tn 2, EE-50409 Tartu, Estonia
[4] Estonian Univ Life Sci, Inst Agr & Environm Sci, Fr R Kreutzwaldi 5, EE-51006 Tartu, Estonia
[5] Univ Washington, Sch Environm & Forest Sci, Seattle, WA 98195 USA
关键词
bryophytes; management history; Natura; 2000; sites; vascular plants; CONTINUOUS COVER FORESTRY; UNDERSTOREY VEGETATION; ECOLOGICAL MEMORY; LANDSCAPE; DISTURBANCE; OLD; DYNAMICS; HABITAT; STANDS; AREAS;
D O I
10.3390/f15112035
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
We evaluated the long-term impacts of various forest management practices on the structure and biodiversity of Estonian hemiboreal forests, a unique ecological transition zone between temperate and boreal forests, found primarily in regions with cold winters and moderately warm summers, such as the northern parts of Europe, Asia, and North America. The study examined 150 plots across stands of different ages (65-177 years), including commercial forests and Natura 2000 habitat 9010* "Western Taiga". These plots varied in stand origin-multi-aged (trees of varying ages) versus even-aged (uniform tree ages), management history-historical (practices before the 1990s) and recent (post-1990s practices), and conservation status-protected forests (e.g., Natura 2000 areas) and commercial forests focused on timber production. Data on forest structure, including canopy tree diameters, deadwood volumes, and species richness, were collected alongside detailed field surveys of vascular plants and bryophytes. Management histories were assessed using historical maps and records. Statistical analyses, including General Linear Mixed Models (GLMMs), Multi-Response Permutation Procedures (MRPP), and Indicator Species Analysis (ISA), were used to evaluate the effects of origin, management history, and conservation status on forest structure and species composition. Results indicated that multi-aged origin forests had significantly higher canopy tree diameters and deadwood volumes compared to even-aged origin stands, highlighting the benefits of varied-age management for structural diversity. Historically managed forests showed increased tree species richness, but lower deadwood volumes, suggesting a biodiversity-structure trade-off. Recent management, however, negatively impacted both deadwood volume and understory diversity, reflecting short-term forestry consequences. Protected areas exhibited higher deadwood volumes and bryophyte richness compared to commercial forests, indicating a small yet persistent effect of conservation strategies in sustaining forest complexity and biodiversity. Indicator species analysis identified specific vascular plants and bryophytes as markers of long-term management impacts. These findings highlight the ecological significance of integrating historical legacies and conservation priorities into modern management to support forest resilience and biodiversity.
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页数:28
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共 70 条
[1]   Vegetation change in boreonemoral forest during succession - trends in species composition, richness and differentiation diversity [J].
Aavik, Tsipe ;
Pussa, Kersti ;
Roosaluste, Elle ;
Moora, Mari .
ANNALES BOTANICI FENNICI, 2009, 46 (04) :326-335
[2]  
Ahti T., 1968, Annales Botanici Fennici, Helsinki, V5, P168
[3]   Maintaining and restoring biodiversity in European boreal forests by developing natural disturbance regimes [J].
Angelstam, PK .
JOURNAL OF VEGETATION SCIENCE, 1998, 9 (04) :593-602
[4]  
Axelsson A.-L., 2001, Forest landscape change in boreal Sweden. Acta Universitatis Agriculturae Sueciae. Silvestria, V183
[5]   Retrospective gap analysis in a Swedish boreal forest landscape using historical data [J].
Axelsson, AL ;
Östlund, L .
FOREST ECOLOGY AND MANAGEMENT, 2001, 147 (2-3) :109-122
[6]   Understory vegetation in old and young Douglas-fir forests of western Oregon [J].
Bailey, JD ;
Mayrsohn, C ;
Doescher, PS ;
St Pierre, E ;
Tappeiner, JC .
FOREST ECOLOGY AND MANAGEMENT, 1998, 112 (03) :289-302
[7]   The harvested side of edges: Effect of retained forests on the re-establishment of biodiversity in adjacent harvested areas [J].
Baker, Susan C. ;
Spies, Thomas A. ;
Wardlaw, Timothy J. ;
Balmer, Jayne ;
Franklin, Jerry F. ;
Jordan, Gregory J. .
FOREST ECOLOGY AND MANAGEMENT, 2013, 302 :107-121
[8]   THREATENED PLANT, ANIMAL, AND FUNGUS SPECIES IN SWEDISH FORESTS - DISTRIBUTION AND HABITAT ASSOCIATIONS [J].
BERG, A ;
EHNSTROM, B ;
GUSTAFSSON, L ;
HALLINGBACK, T ;
JONSELL, M ;
WESLIEN, J .
CONSERVATION BIOLOGY, 1994, 8 (03) :718-731
[9]  
Borggreve B., 1891, Die Holzzucht: Ein Grundriss fr Unterricht und Wirtschaft
[10]   The diversity of epixylic bryophytes in relation to dead wood properties and forest management in New Brunswick, Canada [J].
Bourgouin, Maurane ;
Haughian, Sean R. ;
Jean, Melanie .
FOREST ECOLOGY AND MANAGEMENT, 2024, 554