Accelerate Literature Icon
Want to do a literature review? Try our new Literature Review workflow

The Species Composition of the Dendroflora in the Exposition Areas of “Nova Sofiyivka” Park

  • TL;DR
  • Abstract
  • Literature Map
  • Similar Papers
TL;DR

The study analyzed nine exhibition zones in “Nova Sofiyivka” park, identifying 112 woody plant taxa with varying species diversity across areas, to evaluate plant selection for thematic compositions and support planning of ethno- and recreational landscapes in urban environments.

Abstract
Translate article icon Translate Article Star icon

The study aimed to determine the species composition of the “Nova Sofiyivka” park and assess the appropriateness of plant selection for creating thematic compositions. The analysis of 9 exhibition zones in the “Nova Sofiyivka” park revealed differences in the species composition across the various areas. The dendroflora of the Entrance Zone plot includes 13 taxa from 5 families. The composition of the Entrance Group plot consists of 9 taxa of woody plants, which belong to 5 families. The species diversity of woody plants in the Fountain Square plot includes 19 taxa from 10 families. The dendroflora of the Regular Garden plot includes 16 taxa from 12 families, the Fairytale Garden plot includes 14 taxa from 8 families, and the Japanese Garden plot includes 68 taxa from 12 families. To createthe dendro-compositions in the Ukrainian Homestead plot, 7 taxa from 7 families are used, in the Dragon Garden plot, 7 taxa from 6 families, and in the Lake plot, 11 taxa from 4 families. The plant compositions on the territory of the “Nova Sofiyivka” park include 112 taxa of woody plants: 49 taxa of deciduous tree species, 47 taxa of deciduous shrubs, 8 taxa of coniferous tree species, and 8 taxa of coniferous shrubs. The research results can be used for planning ethno-compositions and creating recreational areas in urbanized environments.

Similar Papers
  • Research Article
  • Cite Count Icon 30
  • 10.1016/j.fecs.2022.100063
Urbanization strengthens the edge effects on species diversity and composition of woody plants in remnant forests
  • Jan 1, 2022
  • Forest Ecosystems
  • Zijin Wang + 1 more

Urbanization strengthens the edge effects on species diversity and composition of woody plants in remnant forests

  • Research Article
  • Cite Count Icon 8
  • 10.1002/bes2.1808
Variation in Results of Three Biology‐Focused Search Engines: A Case Study Using North American Tree Species
  • Nov 9, 2020
  • The Bulletin of the Ecological Society of America
  • Pete Bettinger + 4 more

Variation in Results of Three Biology‐Focused Search Engines: A Case Study Using North American Tree Species

  • Book Chapter
  • 10.4018/978-1-6684-5678-1.ch054
Predicting Woody Plant Diversity as Key Component of Ecosystems
  • Apr 8, 2022
  • Alexandra D Solomou + 1 more

The Mediterranean basin is a global hotspot of biodiversity. Woody plants are key components of ecosystems. This article explores the environmental impacts on woody plant species richness and diversity in maquis and abandoned olive groves in an important ecological area of central Greece. The results showed that woody plant species richness and diversity had increasing values in maquis compared to abandoned olive groves. According to Principal Component Analysis, woody plant species richness and diversity (Shannon diversity index) were positively correlated with soil organic matter, plant litter, N, P, K, slope and precipitation in maquis. Also, positive correlations among woody plant species richness and diversity, and soil organic matter, and slope were detected in abandoned olive groves. Conclusively, the present study is the first in the area and the results it will be utilized as a decision support tool for sustainability assessment of ecosystems with the help of the information systems.

  • PDF Download Icon
  • Research Article
  • Cite Count Icon 9
  • 10.4018/ijaeis.2019010101
Predicting Woody Plant Diversity as Key Component of Ecosystems
  • Jan 1, 2019
  • International Journal of Agricultural and Environmental Information Systems
  • Alexandra D Solomou + 1 more

The Mediterranean basin is a global hotspot of biodiversity. Woody plants are key components of ecosystems. This article explores the environmental impacts on woody plant species richness and diversity in maquis and abandoned olive groves in an important ecological area of central Greece. The results showed that woody plant species richness and diversity had increasing values in maquis compared to abandoned olive groves. According to Principal Component Analysis, woody plant species richness and diversity (Shannon diversity index) were positively correlated with soil organic matter, plant litter, N, P, K, slope and precipitation in maquis. Also, positive correlations among woody plant species richness and diversity, and soil organic matter, and slope were detected in abandoned olive groves. Conclusively, the present study is the first in the area and the results it will be utilized as a decision support tool for sustainability assessment of ecosystems with the help of the information systems.

  • PDF Download Icon
  • Research Article
  • Cite Count Icon 8
  • 10.1007/s42452-022-05265-9
Floristic composition and community analysis of woody species in Hereje Natural Forest, southwest Ethiopia
  • Dec 31, 2022
  • SN Applied Sciences
  • Abera Anamo + 2 more

The floristic composition, diversity, and conservation status of woody plant species in Ethiopia are determined in this study. Data on vegetation are collected using a systematic random sampling method from 45 20 m × 20 m (400m2) plots laid every 100 m along four parallel transect lines running from south to north. The Flora of Ethiopia and Eritrea identification key (Volume I–VIII) is used to identify the scientific names of all woody plant species. The Shannon–Wiener diversity index is used to calculate species diversity, whereas Sorensen's similarity coefficient is used to assess similarities and differences among plant communities. The studied forest contains 44 plant species from 29 families and 40 genera. The Fabaceae is the most dominant family, followed by the Rubiaceae and Combretaceae. In terms of habit, the collected woody species consisted of 30 (68.2%) trees and 14 (31.8%) shrubs. The two most frequent species are Syzygium guineense (51.11%) and Maytenus gracilipes (46.66%). Three plant community types are identified using Agglomerative Hierarchical Cluster Analysis. Most species (Calpurnia aurea-Combretum molle) are observed in community type two. The study is generally limited to the floristic and diversity of woody plant species. Therefore, a thorough investigation of all species' floristic composition, population structure, regeneration status, and ecological aspects is recommended.

  • Research Article
  • 10.67390/gjids.2016.yinia4zg
EXAMINATION OF THE INFLUENCE OF PLANT SPECIES AND BEEHIVE TYPES ON THE YIELD OF HONEY IN TOUNGO LOCAL GOVERNMENT AREA, ADAMAWA STATE, NIGERIA
  • Nov 1, 2016
  • Gashua Journal of Irrigation and Desertification Studies
  • Kwaga B T + 3 more

The study assessed the influence of plant species and beehives on the yield of honey in Mayo-Bakari Community Game Reserve in Toungo Local Government Area of Adamawa State. Data on list of woody and herbaceous plant species visited by honeybees were obtained through ocular assessment and total count method. Yield of honey was recorded from different bee hives for 2 years. Data on species list of plants visited by honeybees were subjected to descriptive statistics. Woody plant species diversity was analyzed using Simpson Diversity Index. Multiple regressions were used in the assessment of woody plant species diversity and herbaceous plant species cover on the yield of honey. Seventeen woody plant species belonging to 11 families and 10 herbaceous plant species belonging to 4 families were visited either occasionally, frequently and very frequently by honeybees in the study area. Results of woody and herbaceous plant species diversity were 0.9468 and 0.8305 respectively. Woody plant species diversity (111.416**) and temperature (0.627*) contributed more than other factors {P<0.05}. R.Square (65.9%) indicated high coefficient of determination between the determinant factors. Total honey yield of 110.47kg and 71.10kg were obtained for first and second years respectively. Langstronth and woven grass had the highest (39.19%) and lowest (8.10%) yields in the first year, while Langstronth (41.21%) and Kenya top-bar (7.31%) hives were noted in the second year. Further research on plants visited by honeybees and their nutrients composition is recommended.

  • Research Article
  • Cite Count Icon 33
  • 10.1007/s11258-008-9475-1
Relationships between spatial configuration of tropical forest patches and woody plant diversity in northeastern Puerto Rico
  • Sep 5, 2008
  • Plant Ecology
  • Ileana T Galanes + 1 more

The destruction and fragmentation of tropical forests are major sources of global biodiversity loss. A better understanding of anthropogenically altered landscapes and their relationships with species diversity and composition is needed in order to protect biodiversity in these environments. The spatial patterns of a landscape may control the ecological processes that shape species diversity and composition. However, there is little information about how plant diversity varies with the spatial configuration of forest patches especially in fragmented tropical habitats. The northeastern part of Puerto Rico provides the opportunity to study the relationships between species richness and composition of woody plants (shrubs and trees) and spatial variables [i.e., patch area and shape, patch isolation, connectivity, and distance to the Luquillo Experimental Forest (LEF)] in tropical forest patches that have regenerated from pasturelands. The spatial data were obtained from aerial color photographs from year 2000. Each photo interpretation was digitized into a GIS package, and 12 forest patches (24–34 years old) were selected within a study area of 28 km2. The woody plant species composition of the patches was determined by a systematic floristic survey. The species diversity (Shannon index) and species richness of woody plants correlated positively with the area and the shape of the forest patch. Larger patches, and patches with more habitat edge or convolution, provided conditions for a higher diversity of woody plants. Moreover, the distance of the forest patches to the LEF, which is a source of propagules, correlated negatively with species richness. Plant species composition was also related to patch size and shape and distance to the LEF. These results indicate that there is a link between landscape structure and species diversity and composition and that patches that have similar area, shape, and distance to the LEF provide similar conditions for the existence of a particular plant community. In addition, forest patches that were closer together had more similarity in woody plant species composition than patches that were farther apart, suggesting that seed dispersal for some species is limited at the scale of 10 km.

  • Research Article
  • 10.9734/jaeri/2019/v20i230099
Impact of Exclosure on Species Diversity, Population Structure and Regeneration Status of Woody Plants in Lowland Northern Tigray, Ethiopia
  • Dec 14, 2019
  • Journal of Agriculture and Ecology Research International
  • Nuru Mohammed

Aim: This study was conducted to assessing woody plant composition, population structure and regeneration status in lowland exclosure (EX) of Northern Ethiopia.
 Study Design: Investigation of parameters was undertaken from 71 plots with size of 20 m x 10 m laid systematically along transect lines for vegetation data. These 200 m2 plots were used for assessment of trees with DBH >5 cm. Small quadrats of 4 m*4 m (16 m2) nested within the bigger plots was laid at the four corners and center of each plots. These were used for measuring seedling and sapling individuals. To analyze species diversity, population structure and regeneration status of woody plants were by computing abundance, density, basal area, Importance value index (IVI) and using Shannon-Weiner diversity and evenness indices.
 Results: According to vegetation survey result, a total of 23, 17 and 26 woody species were recorded, at Kara, Erba and Shektekli exclosures (EXs), respectively. While 8, 7 and 5 species of woody plant were in open grazing land (OGL). The total mean densities of all woody plants were found to be 1530, 1480 and 2999 individual’s ha-1 at Kara, Erba and Shektekli in EXs.
 Conclusion: The study suggested that the regional government have to considering EXs as useful for restoration or rehabitation strategy in the region, the vegetation in all the EXs in the study sites have a higher species composition, diversity, density, increment of basal area and regeneration woody plants than OGL, as a result of management differences in EXs. However, there are also variation on species composition, diversity, density increment of basal area and regeneration woody plants among exclosures having similar age and altitude for instance the species recorded in Erba site is lower than with other of EXs, This could be due to among local site characteristic variation and high grazing happen before Ex establishment exists. Therefore, we need to apply soil and water conservation, enrichment planting with indigenous tree species and strengthen local management institution in effectively protect the exclosure.

  • Research Article
  • Cite Count Icon 17
  • 10.1177/1940082918773298
Composition and Diversity of Woody Plants in Tree Plantations Versus Secondary Forests in Costa Rican Lowlands
  • Jan 1, 2018
  • Tropical Conservation Science
  • J Benjamin Longworth + 1 more

Efforts to sequester carbon through tree plantations and natural regeneration in the tropics may also provide an opportunity to restore native forest ecosystems. However, the degree to which species composition of native species differs between tree plantations and secondary forests is unknown. In this study, we conducted surveys of woody plants (≥2 cm dbh) in 20 secondary forest and tree plantation plots (30 × 30 m) in a tropical lowland forest landscape. Sites were 8 to 21 years old and were either abandoned cattle pastures (secondary forests) or monoculture tree plantations ( Hieronyma alchorneoides and Vochysia guatemalensis) planted for carbon sequestration. We compared species composition, ecological traits, and diversity of woody plants in secondary forests and tree plantations, while accounting for distance from primary forest. Species composition, but not species richness, of the natural regeneration was significantly different in tree plantations and secondary forests. The abundances of understory species, short-lived pioneers, and bat-dispersed species were all higher in secondary forests than in tree plantations. Abundances of canopy species, long-lived pioneers, shade-tolerant species, and dispersal categories besides bats were not associated with forest type. We conclude that tree plantations can alter species composition of regeneration compared with secondary forests perhaps by altering composition of seed disperser assemblages or inhibiting early successional species.

  • Research Article
  • Cite Count Icon 15
  • 10.1080/21513732.2012.681070
Land-use impacts on woody plant density and diversity in an African savanna charcoal production region
  • Apr 23, 2012
  • International Journal of Biodiversity Science, Ecosystem Services & Management
  • Vettes Neckemiah Kalema + 1 more

The density and diversity of woody plant species were studied within grazing, cultivation and charcoal production land-use areas in a multiple-use savanna woodland, central Uganda, using 75 plots with an area of 0.1 ha (Whittaker plots). Plant density was significantly higher under charcoal production (7131 ± 755 plants/ha) and cultivation (6612 ± 665 plants/ha) compared with the grazing lands (4152 ± 525 plants/ha). At the plot level, species richness and Fisher's alpha diversity (α) were relatively low, ranging 2–31 species and 0.34–6.34, respectively, but both were significantly higher under charcoal production and cultivation compared with grazing. Similarly, cumulative species richness and Fisher's alpha diversity were higher under charcoal production and cultivation compared with grazing. Community species composition differed significantly (Global R ANOSIM = 0.14, p = 0.001; ANOSIM, ANalysis Of SIMilarity) among land uses. However, the distance of sampling plots away from households, the assumed source of human disturbance to woodlands, accounts for a very small fraction (<14.2%) of the variation in woody species diversity within this multiple-use savanna. Beta diversity was highest under grazing, followed by cultivation and charcoal production, suggesting a more heterogeneous spatial distribution of species under grazing. Within each land use, mean similarities were low, ranging 25–31%. Mean pairwise dissimilarities between land uses were relatively high, ranging 73–81%. This suggests that variations in species composition and diversity are to a great extent influenced by land-use and anthropogenic disturbances. The relatively low woody species diversity and richness in this savanna indicates woodland degradation, fragmentation and local species loss resulting from unsustainable harvesting for charcoal, and short interval shifting cultivation.

  • Research Article
  • Cite Count Icon 10
  • 10.1007/bf00045657
Population structure and succession in temperate forests of southwestern Japan
  • May 1, 1990
  • Vegetatio
  • Nobukazu Nakagoshi + 1 more

In the temperate forests of southwestern Japan, the population density of woody plants in the community increases in the early stage of secondary succession, reaches a peak in the old oak-chestnut forest, and decreases towards the climax beech forest. The species richness and diversity of woody plants also show a trend similar to that of the population density. The canopy-tree population decreases in the course of the succession while the basal area increases, showing a self-thinning process. The species richness, diversity and population density of herbaceous plants are much influenced by the dominance of the bamboo, Sasa palmata. The life-history traits of trees, lower trees and shrubs are discussed in relation to their shoot system, reproductive pattern and successional processes.

  • PDF Download Icon
  • Research Article
  • 10.3390/f14102111
Microtopographic Variation in Biomass and Diversity of Living and Dead Wood in a Forest in Dongling Mountains, China
  • Oct 22, 2023
  • Forests
  • Fang Ma + 4 more

Habitat heterogeneity caused by topographic variations at the local scale is the environmental basis for the establishment and evolution of biodiversity and biomass patterns. The similarities and distinctions between the effects of microtopographic variables on living wood (LWD) and dead wood (CWD) remain unknown. In the present study, the response mechanisms of biomass and species diversity patterns of living wood (LWD) and coarse woody debris (CWD) to microtopographic parameters were quantified in a warm temperate secondary forest located in Dongling Mountain, China. This quantification was achieved using a generalized additive model on a completely mapped 20-hectare permanent plot. The evaluation of biomass and species diversity of woody plants was carried out by utilizing the total basal area of all individuals and the species richness within each 20 m × 20 m quadrat as a standard. The results indicate that there are notable disparities in the influence of microtopographic elements on the LWD and CWD. In the case of LWD, microtopography accounts for 22.90% of the variation in total basal area, with convexity making a greater relative contribution than elevation, slope, and aspect. Additionally, microtopography explains 46.20% of the variation in species richness, with aspect making a greater relative contribution than elevation, convexity, and slope. Nevertheless, the influence of microtopography on CWD may only account for a deviation of 10.20% in the total basal area and 4.95% in the species richness; aspect and slope have been identified as the primary drivers in this regard. The inclusion of microtopographic factors in the model resulted in a 23.10% increase in the explanatory deviations of LWD biomass and an 8.70% increase in the explanatory deviations of CWD biomass. The findings suggest that topographic considerations have a greater impact on the biomass distribution of LWD compared to that of CWD. Conversely, the biomass of CWD is more influenced by the species richness. The presence of microtopography plays a vital role in determining the spatial distribution of species and biomass at local scales, reflecting the multiple response mechanisms and growth strategies of vegetation in response to redistribution in water, soil, and light.

  • Research Article
  • Cite Count Icon 51
  • 10.1016/j.foreco.2004.04.020
Plant species diversity and composition along an experimental gradient of northern hardwood abundance in Picea mariana plantations
  • Jul 15, 2004
  • Forest Ecology and Management
  • Robert Jobidon + 2 more

Plant species diversity and composition along an experimental gradient of northern hardwood abundance in Picea mariana plantations

  • Research Article
  • Cite Count Icon 14
  • 10.1111/aje.12798
The effects of human disturbance on the species composition, species diversity and functional diversity of a Miombo woodland in northern Malawi
  • Oct 21, 2020
  • African Journal of Ecology
  • Chisato Yamashina + 2 more

Anthropogenic disturbances have serious impacts on ecosystems across the world. Understanding the effects of disturbance on woodlands, especially in regions where local people depend on these natural resources, is essential for sustainable natural resource management and biodiversity conservation. In this study, we evaluated the effects of anthropogenic disturbance, specifically selective logging of Brachystegia floribunda, on woodlands by comparing species composition, species diversity and functional diversity of woody plants between disturbed and undisturbed woodlands. We combined species data and functional trait data for leaves, fruits and other traits related to resource and disturbance responses to calculate functional indices (functional richness, evenness and divergence) and community‐weighted means of each trait. Shifts in taxonomic species composition were analysed using nonmetric multi‐dimensional scaling. Species composition differed significantly between disturbed and undisturbed woodlands. Tree density was greater in disturbed woodlands, whereas evenness, functional evenness and functional divergence were greater in undisturbed woodlands. In terms of forest cover, selective logging of B. floribunda appeared to have little impact on Miombo woodlands, but some shifts in functional traits, such as the shift from a deciduous to evergreen phenology, may increase the vulnerability of these ecosystems to environmental change, especially drought.

  • Research Article
  • Cite Count Icon 2
  • 10.5897/ijbc2022.1545
English
  • Feb 28, 2025
  • International Journal of Biodiversity and Conservation
  • A Saria G + 3 more

Agroforestry practices (AFPs) have the potential to improve species composition and the ecological integrity of various landscapes. However, site-specific studies on the role of AFPs in enhancing plant species composition, richness, and diversity are scarce. This study aimed to determine variations in useful plant species composition and diversity across five agroforestry practices: Boundary Planting Agroforestry Practice (BAP), Multiple Woody Perennial Agroforestry Practice (MWPAP), Agrosilvopastoral Practice (ASP), Coffee Intercropped Agroforestry Practice (CIAP), and Mixed Intercropping Agroforestry Practice (MAP). A 10 &times; 10 m plot size was used to assess plant species composition and richness. Four plant species life forms were identified: trees, shrubs, climbers, and herbs. Variations in plant species composition and diversity among the AFPs were statistically analysed using ANOVA in R software, while correlations between plant life forms were determined using Pearson product-moment analysis. A total of 58 tree species (61.6%), 20 shrub species (21.3%), 10 climber species (10.5%), and 6 herb species (6.6%) belonging to 40 families and 72 genera were identified. Fabaceae and Euphorbiaceae were the most represented families, with 13 and 9 species, respectively. The highest mean species richness for trees (39), shrubs (19), and herbs (6) was recorded in ASP, while the highest mean climber species richness (10) was observed in CIAP. MAP exhibited the highest mean diversity for tree and herb species, whereas shrub and climber species diversity was highest in MWPAP and CIAP, respectively. Tree, shrub, climber, and herb species richness and diversity differed significantly (p &lt; 0.001) across all AFPs. A significant positive correlation was observed between the species richness in trees, shrubs, and climbers in all practices (p &lt; 0.05). The ASP and MAP demonstrated higher potential for supporting plant species richness and diversity, as well as a greater number of plant life forms. These two systems should be prioritized for their ecological and socio-economic benefits. &nbsp; Key words: Plant life forms, agroforestry practices, useful, species diversity, species richness.

Save Icon
Up Arrow
Open/Close
Notes

Save Important notes in documents

Highlight text to save as a note, or write notes directly

You can also access these Documents in Paperpal, our AI writing tool

Powered by our AI Writing Assistant