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Botanical and mycological research of the Bielański Forest (Central Poland) during the twentieth century and current times

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A bstract The Bielański Forest is one of the most valuable remnants of natural vegetation in Warsaw, being the subject of research since the 18th century. This article presents the research on vegetation cover and mycobiota of the Forest, conducted in the 20th century and to the present. The studies are discussed chronologically and divided by the biota of fungi and lichens, the flora of bryophytes and vascular plants, plant communities, veteran trees, and the issues of protecting these resources. The scope and completeness of the research results are discussed, particularly in the context of the forest’s conservation status. Significant differences in the completeness of data were found between the individual groups of living organisms discussed. The identification of the vascular flora and plant communities is relatively complete, both in terms of historical and contemporary data. The assessment of the forest’s conservation based on these components shows that it is a site that has undergone profound and unfavorable changes. The forest’s flora includes common species, while the rare species are only locally rare. The identification of the bryophyte resources is similar to that of the vascular flora. Additionally, this group includes species considered as relics of primeval forests. The current state of knowledge about mycobiota resources is unsatisfactory. It requires compilation, analysis, and publication of existing data. A thorough assessment of the contemporary fungal biota would be useful, allowing for the identification of its changes in relation to historical data. It is also worthwhile to continue the relatively recent research on the lichen biota. The state of the fungal and lichen biota, despite existing deficiencies, currently gives an image of the relatively best condition of the Forest. The knowledge of the ancient trees and deadwood in the Bielański Forest is quite good, but it is worth supplementing it with, for example, maps showing their distribution. In future mycobiota studies, it would also be worthwhile to pay special attention to epiphytic and saproxylic microhabitats. The Bielański Forest also offers opportunities for historical research. Based on the species found here over nearly three centuries, it is possible to describe the forest’s transformations resulting from the conditions in which it functioned.

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  • Cite Count Icon 65
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Functional diversity and trait composition of vascular plant and Sphagnum moss communities during peatland succession across land uplift regions
  • Feb 15, 2021
  • Journal of Ecology
  • Anna M Laine + 5 more

Most of the carbon accumulated into peatlands is derived from Sphagnum mosses. During peatland development, the relative share of vascular plants and Sphagnum mosses in the plant community changes, which impacts ecosystem functions. Little is known on the successional development of functional plant traits or functional diversity in peatlands, although this could be a key for understanding the mechanisms behind peatland resistance to climate change. Here we aim to assess how functionality of successive plant communities change along the autogenic peatland development and the associated environmental gradients, namely peat thickness and pH, and to determine whether trait trade‐offs during peatland succession are analogous between vascular plant and moss communities. We collected plant community and trait data on successional peatland gradients from post‐glacial rebound areas in coastal Finland, Sweden and Russia, altogether from 47 peatlands. This allowed us to analyse the changes in community‐weighted mean trait values and functional diversity (diversity of traits) during peatland development. Our results show comparative trait trade‐offs from acquisitive species to conservative species in both vascular plant and Sphagnum moss communities during peatland development. However, mosses had higher resistance to environmental change than vascular plant communities. This was seen in the larger proportion of intraspecific trait variation than species turnover in moss traits, while the proportions were opposite for vascular plants. Similarly, the functional diversity of Sphagnum communities increased during the peatland development, while the opposite occurred for vascular plants. Most of the measured traits showed a phylogenetic signal. More so, the species common to old successional stages, namely Ericacae and Sphagna from subgroup Acutifolia were detected as most similar to their phylogenetic neighbours. Synthesis . During peatland development, vegetation succession leads to the dominance of conservative plant species accustomed to high stress. At the same time, the autogenic succession and ecological engineering of Sphagna leads to higher functional diversity and intraspecific variability, which together indicate higher resistance towards environmental perturbations.

  • Research Article
  • Cite Count Icon 75
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Community development along a proglacial chronosequence: are above‐ground and below‐ground community structure controlled more by biotic than abiotic factors?
  • Aug 4, 2010
  • Journal of Ecology
  • Matthew L Carlson + 3 more

Summary 1. We studied vascular plant and soil‐dwelling testate amoeba communities in deglaciated sites across a range of substrate ages in Kenai Fjords, Alaska, USA to test four hypotheses. (i) Patterns of community assembly are similar for vascular plants and testate amoebae. (ii) Vascular plant and testate amoeba communities are more strongly correlated to abiotic variables than to each other, since these communities are not directly linked trophically. (iii) Plant community structure becomes less associated with abiotic condition in succession relative to testate amoebae, as species replacement is believed to be more common for plants than testate amoebae. (iv) Above‐ and below‐ground communities become more strongly linked over the succession, due a shift from predominantly allogenic to autogenic forces. 2. We assessed relationships among biotic communities and abiotic site variables across the chronosequence using multiple factor analysis, redundancy analysis (RDA) and a moving‐window analysis. 3. The diversity patterns and the communities’ response to site and soil variables differed between groups. The composition of both communities was significantly explained by bedrock type and moisture regime. The vascular plant community, however, was more influenced by distance from the glacier. 4. Testate amoeba and vascular plant community patterns were significantly linked to each other and to location and physical conditions. The moving‐window RDA indicates the variation explained by the physical and chemical environment tended to slightly decrease through the chronosequence for testate amoebae, while a bell‐shape response was evidenced for vascular plants. The variation of the microbial community explained by the plant community was very low in the early stages of the succession and became higher than the variation explained by the environmental variables later in the chronosequence. 5. Synthesis. These results suggest that vascular plants and testate amoebae are as linked or more in ecosystem development than either community is to changes in site condition. Furthermore, the strength of interactions varies along the succession. Thus, ecological links may be more important than macro‐scale abiotic site condition is to community development, even between communities without direct trophic interactions.

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Road verges provide alternative habitats for some, but not all, meadow plants
  • Jul 1, 2021
  • Applied Vegetation Science
  • Anna Oldén + 4 more

QuestionsAgricultural intensification has led to the decline of biodiverse meadows and other semi‐natural grasslands. Road verges offer potential alternative habitats for meadow species, but they may not be suitable for all meadow species due to different soil properties, frequent disturbances, pollution or suboptimal management. Are their communities of vascular plants and bryophytes similar or dissimilar to those in mown or grazed meadows? What kind of species are associated with road verges, mown meadows or grazed meadows? How do the habitat types differ in their soil conditions and disturbance intensity?LocationThe study was conducted at 36 sites in central Finland.MethodsWe compared the vascular plant and bryophyte flora and the habitat characteristics of road verges, mown meadows and grazed meadows.ResultsThe community composition of both vascular plants and bryophytes differed among the habitat types. Many species occurred in all three habitat types, but several meadow specialists were absent or less frequent in the road verges. In contrast, road verges hosted more forest species and ruderal species, especially bryophytes. Road verges differed from meadows in their soil conditions.ConclusionsWe conclude that although road verges may host some species typical to meadows, their value as alternative habitats could be increased by improved soil preparation and vegetation management. Meanwhile, the continued decline of quality habitats for meadow species underscores the need to maintain, increase and improve meadow management.

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Secondary succession in alvar grasslands – do changes in vascular plant and cryptogam communities correspond?
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  • David García De León + 4 more

Although bryophytes and lichens are frequently vital components of aboveground communities, their interrelationships with vascular plant communities are poorly known. We addressed small-scale covariation of vascular plant and cryptogam (bryophytes and lichens) communities during secondary succession from abandoned gravel pit towards thin soil calcareous (alvar) grassland communities. The cover, richness and diversity of vascular plants, bryophytes and lichens were studied. Whereas vascular plants showed the fastest successional dynamics in terms of richness, bryophytes showed a fast successional dynamic in terms of cover and diversity; the establishment of lichens was the slowest. THe cover, richness and diversity of different life forms changed concurrently. There were significant associations among the species composition of all life forms considered. The strongest relationship was found between lichens and vascular plants in mature stages. We conclude that alvar grasslands are certainly an example of a community in which the association between the vascular plant and the cryptogam communities may influence the overall vegetation succession, and the strength of this association increases during secondary succession.

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  • Research Article
  • Cite Count Icon 6
  • 10.1002/ece3.9102
Different temporal trends in vascular plant and bryophyte communities along elevational gradients over four decades.
  • Aug 1, 2022
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History of Botanical Research in the Czech Republic
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The history of non-experimental scientific botany, including research on the flora of vascular plants, bryophytes, lichens and plant communities, is reviewed for the territory that is now the Czech Republic. This review is organized chronologically, starting from the Middle Ages. For each period it describes the development of universities, research institutions and scientific societies and outlines the developments in various branches of botany.

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  • Cite Count Icon 10
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The lichen, bryophyte, and vascular plant flora and vegetation of the Landing Lake area, Prince Patrick Island, Arctic Canada
  • Apr 15, 1975
  • Canadian Journal of Botany
  • Charles D Bird

The relative abundance and ecology of 123 lichens, 12 liverworts, 1 peat moss, 59 mosses, and 40 vascular plants are described from the southeastern part of Prince Patrick Island, 76° N latitude. One hundred and three of the lichens, 25 of the bryophytes, and 6 of the vascular plants are first reports for the island. One lichen, Blastenia arctica, is reported for the first time from North America. One hundred and seventy of the species were found on the ground, 51 on rock, 9 on decaying plant material, 9 on bone, 5 on fossil wood, 4 on caribou dung, and 2 on mosses. Sixteen habitat types are described, based upon a relevé analysis of 31 different sites. A percentage of the lichens (95.1%), of the bryophytes (95.8%), and of the vascular plants (60.0%) encountered have a Circumpolar distribution. A percentage of the lichens (3.3%), of the bryophytes (1.4%), of the vascular plants (22.5%) have an American distribution. Eight species have an Amphi-Beringian distribution: lichens, 1.6%; bryophytes, 1.4%; vascular plants, 12.5%. One bryophyte (1.4%) and two vascular plants (5.0%) have an Amphi-Atlantic distribution.

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Phylogenetic clustering found in lichen but not in plant communities in European heathlands
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Species richness is a widespread measure to evaluate the effect of different management histories on plant communities and their biodiversity. However, analysing the phylogenetic structure of plant communities could provide new insights into the effects of different management methods on community assemblages and provide further guidance for conservation decisions. Heathlands require permanent management to ensure the existence of such a cultural landscape. While traditional management with grazing is time consuming, mechanical methods are often applied but their consequences on the phylogenetic community assemblages are still unclear. We sampled 60 vegetation plots in dry sandy heathlands (EU habitat type 2310) in northern Germany stratified by five different heathland management histories: fire, plaggen (turf cutting), mowing, deforestation and intensive grazing. Due to the distant relationship of vascular plants and lichens, we assembled two phylogenetic trees, one for vascular plants and one for lichens. We then calculated phylogenetic diversity (PD) and measures of phylogenetic community structure for vascular plant and lichen communities. Deforested areas supported significantly higher PD values for vascular plant communities. We found that PD was strongly correlated with species richness (SR) but the calculation of rarefied PD was uncorrelated to SR leading to a different ranking of management histories. We observed phylogenetic clustering in the lichen communities but not for vascular plants. Thus, management by mowing and intensive grazing promotes habitat filtering of lichens, while management histories that cause greater disturbance such as fire and plaggen do not seem to affect phylogenetic community structure. The set of management strategies fulfilled the goals of the managers in maintaining a healthy heathland community structure. However, management strategies that cause less disturbance can offer an additional range of habitat for other taxonomic groups such as lichen communities.

  • Research Article
  • Cite Count Icon 53
  • 10.1111/jvs.12579
Long‐term community change: bryophytes are more responsive than vascular plants to nitrogen deposition and warming
  • Oct 18, 2017
  • Journal of Vegetation Science
  • Antoine Becker Scarpitta + 3 more

AimsMany studies of vegetation change over multiple decades have focused on vascular plants, but very few on bryophytes, despite the importance of bryophytes for overall plant biodiversity and ecosystem functioning. Using a repeated survey of vascular plants and bryophytes in a forest ecosystem, we tested predictions of the hypotheses that: (1) vegetation change has been driven by N deposition and climate warming, and (2) bryophytes are more responsive to environmental change than vascular plants.LocationLowland temperate forest, northwest France.MethodsIn forest plots initially surveyed in 1976, we re‐surveyed both vascular plants and bryophytes in 2009 and 2012, respectively. We analysed changes in α‐diversity, β‐diversity, and species composition, and we used community‐weighted mean values of species affinities for temperature, light, pH, soil moisture and N to assess the temporal responses potentially caused by warming, N deposition, or possibly a changing light regime.ResultsWe observed significantly increased species richness of bryophytes and decreased richness of vascular plants. Community affinities to N, pH and temperature increased significantly for bryophytes, but not for vascular plants, although the change over time in N affinities for vascular plants was qualitatively in the predicted direction. Bryophytes showed a higher magnitude of temporal community change than vascular plants, both in terms of overall species composition and environmental affinities, indicating a higher responsiveness of bryophytes to environmental change.ConclusionOverall, the result of more marked temporal community change for bryophytes suggests that the many studies of changes in vascular plant communities over time might underestimate the sensitivity of the broader plant community (including cryptogams) to environmental change.

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  • Feb 1, 2024
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  • Yanping Liu + 9 more

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  • Cite Count Icon 11
  • 10.1007/s10531-010-9914-x
Plant diversity in wooded moderate-rich fens across boreal western Canada: an ecoregional perspective
  • Sep 17, 2010
  • Biodiversity and Conservation
  • David A Locky + 1 more

Ecoregions are increasingly being used as a framework for conservation planning. The Mid-Boreal Uplands Ecoregion stretches across Canada from Manitoba to British Columbia. From the perspective of conservation and to understand the dynamics of plant diversity and community composition in a common wetland type, we examined the plant communities and environmental variables in 80 wooded moderate-rich fens within this ecoregion. Regional diversity totalled 273 species, with 86 bryophytes and 187 vascular plants. Total diversity was greatest in Manitoba and decreased in a longitudinal trend west through Saskatchewan and Alberta. This may be related, in part, to orographic precipitation at Manitoba sites and a gradient of growing degree days. Richness of locally rare vascular plants exhibited a clear west to east gradient. Ten species of provincially rare vascular plants were observed across the ecoregion, but without pattern. Ordinations and other analyses revealed distinct plant communities for all three locations, with vascular plant assemblages more discrete than bryophyte assemblages. Bryophyte diversity increased with latitude and longitude, whereas vascular plant diversity decreased. Additionally, elevation, precipitation, surface water alkalinity, water temperature, percent overstory density, and peat organic C played a role in determining species richness and community composition. Overall, species composition and diversity in a single wetland type exhibited continuous change across multiple political jurisdictions at the ecoregion scale. Conservation plans for wetlands at the ecodistrict scale may be preferable.

  • Research Article
  • Cite Count Icon 209
  • 10.1111/j.1365-2435.2004.00820.x
Mosses mediate grazer impacts on grass abundance in arctic ecosystems
  • Feb 1, 2004
  • Functional Ecology
  • R Van Der Wal + 1 more

Summary Large herbivores have significant impacts on the structure and function of temperate and tropical ecosystems. Yet herbivore impacts on arctic systems, particularly the mechanisms by which they influence plant communities, are largely unknown. High arctic vegetation, commonly overlying permafrost soils, is often moss‐dominated with sparse vascular plant cover. We investigated the potential influence of large herbivores on arctic plant communities via their impact on the depth of the moss layer, leading to warmer soils and potentially benefiting vascular plants. We found that grazer impacts on moss depth, and subsequently soil temperature, may influence vascular plant abundance and community composition because of the observed positive but growth‐form‐specific response of vascular plants to soil warming, promoting grasses in particular. We propose that the positive association of grasses and large herbivores in arctic moss‐dominated systems results from two simultaneously operating positive feedback loops. First, herbivore grazing and trampling reduces moss layer depth, increasing soil temperatures. Second, grasses benefit directly from grazers as a result of additional nutrients from faeces and urine. Additionally, the tolerance of grasses to grazing may enable grasses to expand despite the losses suffered from herbivory.

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