Javascript must be enabled to continue!
Vegetation classification of the Voronezhsky Nature Reserve
View through CrossRef
Voronezhsky nature reserve is situated in the forest-steppe zone of European Russia, on the border between Lipetsk and Voronezh regions. The reserve was established in 1923; the total area of the reserve is 31 053 ha. We have created the vegetation classification system for the reserve on basis of 1058 phytocoenotic relevés processing. Phytocoenotic relevés have been collected since 1929 by different generations of researchers. All relevés were included into the data processing. Five forest vegetation formations and one herbaceous formation were described. According to the reserve’s forest inventory from 1991, Pinussylvestris formation occupies 32.3% of the reserve area, broad-leaved forest (oak forest) formation — 29.3, Populus tremula formation — 19.3, birch forest formation — 5.7, and Alnus glutinosa formation — 5.2 correspondingly. Herbaceous formation covers 3 % of the area in dry, moderate moistened and moist soils, and swamps occupy 2.5 % of the reserve area (they are not described here). Within the bounds of the vegetation formations, we have distinguished the vegetation association groups on the basis of ground vegetation functional group composition and ordination (DCA) technique. 8 functional species groups (ecologic-coenotic species groups) were used for the classification. The ecologic-coenotic species groups were as follows: 1) nemoral, 2) boreal, 3) nitrophilous, 4) pine-forest, 5) meadow-forest edge, 6) steppe, 7) oligotrophic, and 8) water-swamp. Totally we have described 23 vegetation association groups united into the 9 ecologic-coenotic types of vegetation cover. 4 vegetation association groups were described for the herbaceous formation. We described in detail vegetation association groups including species, structural diversity and the ecological position calculated by Tsyganov’s ecological species values. We also discuss the group’s history and the succession status. Finally, we have compared the proposed vegetation classification system for the reserve with some other classification systems.
Komarov Botanical Institute of the Russian Academy of Sciences
Title: Vegetation classification of the Voronezhsky Nature Reserve
Description:
Voronezhsky nature reserve is situated in the forest-steppe zone of European Russia, on the border between Lipetsk and Voronezh regions.
The reserve was established in 1923; the total area of the reserve is 31 053 ha.
We have created the vegetation classification system for the reserve on basis of 1058 phytocoenotic relevés processing.
Phytocoenotic relevés have been collected since 1929 by different generations of researchers.
All relevés were included into the data processing.
Five forest vegetation formations and one herbaceous formation were described.
According to the reserve’s forest inventory from 1991, Pinussylvestris formation occupies 32.
3% of the reserve area, broad-leaved forest (oak forest) formation — 29.
3, Populus tremula formation — 19.
3, birch forest formation — 5.
7, and Alnus glutinosa formation — 5.
2 correspondingly.
Herbaceous formation covers 3 % of the area in dry, moderate moistened and moist soils, and swamps occupy 2.
5 % of the reserve area (they are not described here).
Within the bounds of the vegetation formations, we have distinguished the vegetation association groups on the basis of ground vegetation functional group composition and ordination (DCA) technique.
8 functional species groups (ecologic-coenotic species groups) were used for the classification.
The ecologic-coenotic species groups were as follows: 1) nemoral, 2) boreal, 3) nitrophilous, 4) pine-forest, 5) meadow-forest edge, 6) steppe, 7) oligotrophic, and 8) water-swamp.
Totally we have described 23 vegetation association groups united into the 9 ecologic-coenotic types of vegetation cover.
4 vegetation association groups were described for the herbaceous formation.
We described in detail vegetation association groups including species, structural diversity and the ecological position calculated by Tsyganov’s ecological species values.
We also discuss the group’s history and the succession status.
Finally, we have compared the proposed vegetation classification system for the reserve with some other classification systems.
Related Results
Impact of vegetation control measures on the bedform of braided gravel-bed river
Impact of vegetation control measures on the bedform of braided gravel-bed river
<p>Braiding is among the most dynamic landscape on Earth. It provides diverse habitats for freshwater creatures. Unfortunately, the number of braided rivers is reduci...
Determinants of Cerebrovascular Reserve in Patients with Significant Carotid Stenosis
Determinants of Cerebrovascular Reserve in Patients with Significant Carotid Stenosis
Abstract
Introduction
In patients with 70% to 99% diameter carotid artery stenosis cerebral blood flow reserve may be protectiv...
Vegetation mapping at Horseshoe Bend National Military Park: Photointerpretation key and final vegetation map
Vegetation mapping at Horseshoe Bend National Military Park: Photointerpretation key and final vegetation map
The University of Georgia Department of Geography’s Center for Geospatial Research (CGR), with the support of the National Park Service (NPS) Vegetation Mapping Inventory (VMI) Pro...
Vegetation mapping at Fort Matanzas National Monument: Photointerpretation key and final vegetation map
Vegetation mapping at Fort Matanzas National Monument: Photointerpretation key and final vegetation map
The University of Georgia Department of Geography’s Center for Geospatial Research (CGR), with the support of the National Park Service (NPS) Vegetation Mapping Inventory (VMI) Pro...
Vegetation mapping at Ocmulgee Mounds National Historical Park: Photointerpretation key and final vegetation map
Vegetation mapping at Ocmulgee Mounds National Historical Park: Photointerpretation key and final vegetation map
The University of Georgia Department of Geography’s Center for Geospatial Research (CGR), with the support of the National Park Service (NPS) Vegetation Mapping Inventory (VMI) Pro...
Incorporating Vegetation Type Transformation with NDVI Time-Series to Study the Vegetation Dynamics in Xinjiang
Incorporating Vegetation Type Transformation with NDVI Time-Series to Study the Vegetation Dynamics in Xinjiang
Time-series normalized difference vegetation index (NDVI) is commonly used to conduct vegetation dynamics, which is an important research topic. However, few studies have focused o...
Open areas in patchy ecosystems: key spaces for vegetation survival.
Open areas in patchy ecosystems: key spaces for vegetation survival.
<p>Drylands are one of the largest biomes over the Earth, covering around 40% of land surface. These are water limited ecosystems where vegetation occupies the most f...
Modeling of logistics of war reserve stockpiling for successful combat operations
Modeling of logistics of war reserve stockpiling for successful combat operations
This paper formulates and solves a multivariate problem related to modeling the logistics of war reserve stockpiling for successful combat operations in the armed conflict area. Th...

