scholarly journals Relevance of Broad-Leaved Forest Stands for Maintaining Epiphytic Bryophyte Species and Functional Trait Diversity in Forest Landscape in Latvia

Author(s):  
Linda Gerra-Inohosa ◽  
Līga Strazdiņa

Abstract Broad-leaved trees play an important role in supporting epiphyte richness in deciduous forests. In this study we tested which broad-leaved forest stands in terms of tree composition best predicted biodiversity in regard to bryophyte species number and their functional traits. The bryoflora was surveyed in 70 stands differing in dominant broad-leaved tree species. One circular plot with diameter 30 meters was established in each stand situated in different parts of Latvia. Fifty-three of the plots were located in stands identified as protected habitats of the European Union. In total, 82 bryophyte species were recorded. At plot level the total number of species ranged between 6 and 38 species. Using principal component analysis (PCA), the ordination axes explained 41% of the variation in composition of bryophytes. The PCA axes were related to tree species composition. The presence of broad-leaved trees, especially ash, lime, and oak, was connected with higher species richness. Generalised linear models confirmed that epiphyte richness, both at the total and indicator species levels, was higher in ash stands. From the functional traits, all expected life-strategy and life-form categories were recorded. The most represented life-forms were smooth mats, tall turfs, and rough mats, while the dominant life-strategy was perennial stayers, followed by competitive perennials and long-lived shuttles. Functional trait richness was highest in Fraxinus excelsior, Tilia cordata, and Quercus robur forest stands.

Ecosystems ◽  
2009 ◽  
Vol 12 (7) ◽  
pp. 1103-1116 ◽  
Author(s):  
Catharina Meinen ◽  
Dietrich Hertel ◽  
Christoph Leuschner

2019 ◽  
Vol 39 (17) ◽  
Author(s):  
邹顺 ZOU Shun ◽  
周国逸 ZHOU Guoyi ◽  
张倩媚 ZHANG Qianmei ◽  
孟泽 MENG Ze ◽  
褚国伟 CHU Guowei ◽  
...  

2015 ◽  
Vol 23 (5) ◽  
pp. 601-609 ◽  
Author(s):  
Xiaoli Hu ◽  
◽  
Chia-Hao Chang-Yang ◽  
Xiangcheng Mi ◽  
Yanjun Du ◽  
...  

2010 ◽  
Vol 150 (10) ◽  
pp. 1347-1357 ◽  
Author(s):  
Sebastian Bittner ◽  
Ulrike Talkner ◽  
Inga Krämer ◽  
Friedrich Beese ◽  
Dirk Hölscher ◽  
...  

Flora ◽  
2002 ◽  
Vol 197 (2) ◽  
pp. 118-125 ◽  
Author(s):  
Dirk Hölscher ◽  
Dietrich Hertel ◽  
Christoph Leuschner ◽  
Magnus Hottkowitz

2021 ◽  
Vol 45 (4) ◽  
pp. 394-403
Author(s):  
Ming-Yuan NI ◽  
Amy Ny Aina ARITSARA ◽  
Yong-Qiang WANG ◽  
Dong-Liu HUANG ◽  
Wei XIANG ◽  
...  

2020 ◽  
Author(s):  
Junsong Long ◽  
Mengping Tang ◽  
Guangsheng Chen

Abstract Background: Regeneration is an extremely important and complex ecological process, which is disturbed by many factors. The current stand structure has an important influence on regeneration. The aim of this study is to provide theoretical reference for improving the regeneration capacity subtropical evergreen broad-leaved forest and formulating management measures of regeneration restoration.Methods: A permanent plot of 100m × 100m was set up in the evergreen broad-leaved forest of Tianmu Mountain National Nature Reserve, Zhejiang Province, China. The plot was divided into 25 survey units of 20m × 20m by the adjacent grid survey method, and all the trees in the plot were investigated. The tree height, DBH, crown width, density, species richness index, aggregation index, competition index and mingling of each forest stratum were used as the stand structure index. The tree height, DBH, crown width, density and species richness index of regeneration trees were used as regeneration indicators. Redundancy analysis (RDA) was used to explore the relationship between forest strata structure and regeneration of evergreen broad-leaved forest. Results: In the whole stand, DBH, tree species richness index and crown width were the main structure factors affecting regeneration. In the upper forest stratum, the tree height was the main structure factor affecting regeneration. In the middle forest stratum, the tree species richness index and crown width were the main factors affecting regeneration. In the lower forest stratum, crown width, competition index, tree height and tree species richness index were the main factors affecting regeneration. The effects of tree species richness index and crown width on regeneration in the whole stand were mainly reflected in the middle and lower forest strata in each forest stratum. Conclusions: The influencing order of each forest stratum structure on regeneration was: lower forest stratum > middle forest stratum > upper forest stratum. Different regeneration indicators had different responses to the main stand structure indices, while the young tree height and DBH, and the tree species diversity and density of regeneration trees were most affected by the main stand structure indices. In order to promote the regeneration of evergreen broad-leaved forest in the future, different management measures should be taken for different forest strata, and the threshold value of each index should be controlled.


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