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ISSN: 2542-2006

Ecology and dynamics

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Архив метки: large-scale mapping

COMPARATIVE ANALYSIS OF VEGETATION STRUCTURE IN MOUNTAIN FOREST ECOSYSTEMS OF NORTHERN MONGOLIA (BASED ON THE MODEL POLYGONS)

Ecology and dynamics Опубликовано 22 декабря, 2025 автором admin1 апреля, 2026

Petukhov I.A., Andreev A.V., Bazha S.N., Bogdanov E.A., Danzhalova E.V., Drobyshev Yu.I., Rupyshev Yu.A., Khadbaatar S. Comparative Analysis of Vegetation Structure in Mountain Forest Ecosystems of Northern Mongolia (Based on the Model Polygons) // Ecosystems: ecology and dynamics. No 4. 2025. P. 5-62. | Abstract | PDF | Reference

 

A field camp of the Joint Russian-Mongolian integrated biological expedition in a cedar forest
Mongolian students at work
Integrated field study of ecosystems
Cowberry-ledum green-moss cedar forest

Rubus arcticus in bloom
Cowberry-blueberry green-moss cedar forest
Petrophytic mountain meadow steppe
Ice remaining in a mountain-valley spruce forest

Burnt-out area in taiga, overgrown with birches
Mountain steppe meadow
Sparse larch forest on a mountain ridge
Mountain meadow steppe on the southern slope

 

In this research we conducted large-scale mapping (1:10,000-1:50,000) and description of natural ecosystems at the junction of two belts, forest and forest-steppe mountain, in the Selenga River Basin, Northern Mongolia. Part of broader studies on the forest growth conditions of the Lake Baikal Basin, this research took place in 2019 and 2022 across 4 model polygons: Zelter in the eastern Dzhida Range, Chandmani-Under in the central Eastern Khuvsgul Region, Zunkhara in the foothills of Western Khentii Highlands, and Selbe in the southwestern Khentii Upland.

“Selbe” and “Chandmani-Under” encompass 3 forest vegetation altitudinal belts: mountain-taiga, sub-taiga, and forest-steppe. The low-mountain “Zelter” and “Zunkhara” lack the mountain-taiga belt. Distinctively, unlike most mountain forest areas in Mongolia where only 1-2 coniferous species typically form the primary forest stands, the indigenous forest types in the upper Selbe River Basin are comprised of 4 coniferous species: Pinus sibirica, Larix sibirica, Pinus sylvestris and Picea obovata. In “Chandmani-Under” and “Zelter”, Larix sibirica is the dominant coniferous species, while in “Zunkhara” it is Pinus sylvestris and Larix sibirica.

The large-scale mapping data from the model polygons clearly demonstrated a regular altitudinal succession of altitudinal belts, transitioning from mountain-taiga forests at higher elevations of middle-mountain slopes, through sub-taiga, to forest-steppe communities bordering the steppe belt. As aridity increases from north to south, the lower boundaries of these altitudinal belts, including forest vegetation zones, shift upwards. For instance, taiga forests on north-facing slopes of “Selbe” are located above 1600 m a.s.l. (and above 1650 m on the south-facing slopes), whereas in “Chandmani-Under”, situated over 200 km further north, such forests descend steep north-facing slopes to below 1250 m.

The forest-covered area of the model polygons exceeds 70%. However, there is a significant proportion of secondary pyrogenic small-leaved forests, primarily dominated by Betula pendula subsp. mandshurica and Populus tremula. These secondary birch stands and early-stage post-fire successional forests account for 20-24% of the total forest area in “Selbe” and “Chandmani-Under”, over 50% in “Zelter”, and as high as 98% in “Zunkhara”, where indigenous mountain pine-larch and larch-pine sub-taiga forests are entirely absent.

Analysis of the maps depicting forest ecosystems with destroyed indigenous stands at various stages of recovery, alongside their legends characterizing topo-ecological development conditions, enables an assessment of forest degradation scales. This provides a basis for determining natural and technical restoration possibilities, methods, and volumes, and for selecting the most suitable forest cultures for restoration based on the dominant species in the original stands.

Funding. This work was carried out within the framework of the scientific program of the Joint Russian-Mongolian Integrated Biological Expedition of the Russian Academy of Sciences and the Mongolian Academy of Sciences, and the state task of the Severtsov Institute of Ecology and Evolution of the Russian Academy of Sciences, topic No. FFER-2024-0025 “Biogeocenology and Ecosystem Evolution”.

Keywords: mountain forest ecosystems, topo-ecological conditions, altitudinal belts, forest-forming species, secondary stands, large-scale mapping.

DOI: 10.24412/2542-2006-2025-4-5-62

EDN: ADAUJU

Метки: altitudinal belts, forest-forming species, large-scale mapping, mountain forest ecosystems, secondary stands, topo-ecological conditions

CURRENT STATE OF NATURAL ECOSYSTEMS OF HYDROGENIC TERRITORIES OF SOUTHEASTERN MONGOLIA ON THE EXAMPLE OF KEY SITES

Ecology and dynamics Опубликовано 25 марта, 2024 автором admin6 ноября, 2024

Petukhov I.A., Andreev A.V., Khadbaatar S., Danzhalova E.V., Bazha S.N. Current State of Natural Ecosystems of Hydrogenic Territories of Southeastern Mongolia on the Example of Key Sites // Ecosystems: ecology and dynamics. No 1. 2024. P. 5-50. | Abstract | PDF | Reference

 

Swans and ducks at Lake Ganga (“Ganga” key plot)
Demoiselle cranes (“Ganga” key plot)
Swampy meadows of the lake shoals (“Ganga” key plot)

Coastal cryogenic-vegetative tussock bog (“Dar Ganga” key plot)
Reed beds (“Dar Ganga” key plot)
Shallows of Dagshin-Bulag Brook near its channel (“Darganga” key plot)

One of the functional springs (“Burt” key plot)
Flooded meadows (“Burt” key plot)
Cattle at the Ongon-Tavan-bulag pastures (“Burt” key plot)

Valley of the Bayan-Gol River (“Bayangol” key plot)
Mudcrack (“Burdenebulag” key plot)
Horses in the pasture (“Burdenebulag” key plot)

 

In 2023, in southeastern Mongolia, natural terrestrial ecosystems of hydrogene depressions of 5 model sites and their land cover were surveyed as part of the scientific program of the Joint Russian-Mongolian Integrated Biological Expedition of the Russian and Mongolian Academies of Sciences.

Trends of changes in hydromorphic and automorphic ecosystems associated with differences in topo-ecological conditions, such as decreasing absolute altitudes and increasing aridity from northeast to southwest were determined. Taking into account the nature and intensity of the anthropogenic impact on the ecosystems, a general (integral) expert assessment of their condition was given. The main results of these studies are shown on large-scale maps of the key sites ecosystems, created in the course of mapping with the use of up-to-date aerial images, which were obtained by quadrocopter during field studies.

The main factor in the development and change of meadow ecosystems is the nature of habitat moisture, as well as the volume and degree of mineralization of incoming water. No significant zonal differences were found between soils and vegetation of meadow and swampy-meadow ecosystems of key sites, which are fed mainly by groundwater, temporary lake flooding and small watercourses. The feature of meadow communities in the studied key sites turne out to be a wide distribution of halophilic and halomesophilic plant species in the composition of the grass layer.

Keywords: hydrogenic depression, topo-ecological conditions, hydromorphic ecosystems, large-scale mapping, anthropogenic disturbance, pasture digression.

Funding. This work was carried out within the framework of the theme No. 0109-2019-0007 “Historical Ecology and Biogeocenology”.

DOI: 10.24412/2542-2006-2024-1-5-50

EDN: ABWFMB

Метки: anthropogenic disturbance, hydrogenic depression, hydromorphic ecosystems, large-scale mapping, pasture digression, topo-ecological conditions

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