Affiliation:
1. Tomsk State University; Institute of Monitoring of Climatic and Ecological Systems SB RAS
2. Tomsk State University
3. Georg-August-University of Göttingen
Abstract
The global climate change and significantly increased anthropogenic pressure on the Arctic and Subarctic regions require modern ecosystem monitoring and understanding of the past environmental changes. Vegetation history is reflected by pollen spectra recorded in peat deposits, investigation of which is one of the main methods in the research of long-term climatic changes. In order to reconstruct the vegetation and fire history of today’s south tundra in the lower reaches of the Taz river, we carried out palynological exploration of peat and underlying lake sediments covering the last 11.2 cal ka BP in the Tazovsky district of the Yamalo-Nenets Autonomous Okrug (Russia). In the course of the research, we found 31 pollen taxa, 4 taxa of spore plants, 2 types of fungal spores, one species of shell amoeba and green algae. We have identified several stages in the development of the local wetland biocenosis at the study site and reconstructed the history of changes in the vegetation cover of the region, including changes in the composition of the woody vegetation. Grasslands, with groups of trees among thickets of shrubs and lake-mire complexes dominated in the study area by 11.2 cal ka BP. The grasslands were gradually supplemented by wet grass communities, which were then replaced by swamps and tundra complexes in the mid-Holocene. The time periods of the local fires have been established. The fire that had the greatest effect on the vegetation at the study site was detected in the period of 8.1 cal ka BP. We have revealed periods of the least fire activity – 7.6–5.5 cal ka BP and the highest fire activity – 12.5–8 cal ka BP.
Publisher
FSBI Arctic and Antarctic Research Institute (FSBI AARI)
Reference33 articles.
1. Il’ina I.S., Lapshina E.I., Lavrenko N.N., Mel’tser L.I., Romanova E.A., Bogoiavlenskii B.A., Makhno V.D. Rastitel’nyi pokrov Zapadno-Sibirskoi ravniny. Vegetation cover of the West Siberian Plain. Novosibirsk: Nauka, 1985: 251 p. [In Russian].
2. Bliakharchuk T.A., Kur’ina I.V., Pologova N.N. Late-Holocene dynamics of vegetation cover and humidity of climate in the southeastern sector of the West Siberian Plain according to the data of palynological and rhizopod research of peat deposits. Vestnik Tomskogo gosudarstvennogo universiteta. Biologiia. Tomsk State University Journal of Biology. 2019, 45: 164–189. [In Russian]. https://doi.org/10.17223/19988591/45/9.
3. Andreev A.A., Klimanov V.A., Sulerzhitsky L.D. Vegetation and climate history of the Yana River lowland, Russia, during the last 6400 yr. Quaternary Science Reviews. 2001, 20: 259–266.
4. Andreev A.A., Siegert C., Klimanov V.A., Derevyagin A.Y., Shilova G.N., Melles M. Late Pleistocene and Holocene vegetation and climate on the Taymyr Lowland, Northern Siberia. Quat. Res. 2002, 57: 138–150.
5. Panova N.K., Trofimova S.S., Antipina T.G., Zinov’ev E.V., Gilev A.V., Erokhin N.G. Dynamics of vegetation and ecological conditions in the Holocene in the South Yamal (according to the complex analysis of deposits of the relict peat bog). Ekologiia. Ecology. 2010, 1: 22–30. [In Russian].