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Western Siberian Peat Core Database (WSPC) - references 1. Akhteryakova, A. V. and Leshchinskiy, S. V.: Results of the comprehensive research on two Holocene peatlands of the Tobolsk-Irtysh lithofacies area, Tomsk State University Journal, 383, 171–180, 2014. 2. Andreev, A. A. and Klimanov, V. A.: Quantitative Holocene climatic reconstruction from Arctic Russia, Journal of Paleolimnology, 24, 81–91, https://doi.org/10.1023/A:1008121917521, 2000. 3. Andreev, A. and Tarasov, P. E.: Postglacial Pollen Records of Northern Asia, in: Encyclopedia of Quaternary Science, Elsevier, Amsterdam, vol. 4, 2721–2730, 2007. 4. Antipina, T. G., Preis, Yu. I., and Zenin, V. N.: Dynamics of Forest Vegetation and Climate in the Southern Taiga of Western Siberia in the Late Holocene According to Spore–Pollen Analysis and Ams Dating of the Peat Bog, Russian Journal of Ecology, 50, 445–452, https://doi.org/10.1134/S1067413619050035, 2019. 5. Arkhipov, S. A. and Votakh, M. P.: Palynological characteristics and absolute age of the peatland at the mouth of the Tom' River, in: Paleopalynology of Siberia, edited by: Saks, B. H., Nauka, Moscow, 118–122, 1980 (in Russian). 6. Arkhipov, S. A., Levina, T. P., and Panychev, V. A.: Palynological characteristics of two Holocene peats from the middle and lower Ob’ river valley, in: Paleopalynology of Siberia, edited by: Saks, V. N., Nauka, Moscow, 123–127, 1980 (in Russian). 7. Bakhareva, V. A.: The palynological characteristics of late Quaternary and Holocene deposits in the vicinity of Pershino Village on the Irtysh River, in: The Palynostratigraphy of Mesozoic and Cenozoic of Siberia, edited by: Vo lk ov a, V. S. a nd K hl on ov a, A . F., Nauka, Moscow, 115–120, 1985 (in Russian). 8. Beilman, D. W., MacDonald, G. M., Smith, L. C., and Reimer, P. J.: Carbon accumulation in peatlands of West Siberia over the last 2000 years, Global Biogeochemical Cycles, 23, https://doi.org/10.1029/2007GB003112, 2009. 9. Bigelow, N. H., Brubaker, L. B., Edwards, M. E., Harrison, S. P., Prentice, I. C., Anderson, P. M., Andreev, A. A., Bartlein, P. J., Christensen, T. R., Cramer, W., Kaplan, J. O., Lozhkin, A. V., Matveyeva, N. V., Murray, D. F., McGuire, A. D., Razzhivin, V. Y. , R itc h ie, J . C. , Sm it h, B ., Wal ke r , D. A. , Ga je ws ki , K. , Wol f, V., H ol mq vi st , B. H ., Igarashi, Y., Kremenetskii, K., Paus, A., Pisaric, M. F. J., and Volkova, V. S.: Climate change and Arctic ecosystems: 1. Vegetation changes north of 55°N between the last glacial maximum, mid-Holocene, and present, Journal of Geophysical Research: Atmospheres, 108, https://doi.org/10.1029/2002JD002558, 2003. 10. Blyakharchuk, T. A. and Sulerzhitsky, L. D.: Holocene vegetational and climatic changes in the forest zone of Western Siberia according to pollen records from the extrazonal palsa bog Bugristoye, The Holocene, 9, 621–628, https://doi.org/10.1191/095968399676614561, 1999. 11. Blyakharchuk, T. A., Kurina, I. V., and Pologova, N. N.: Late Holocene dynamics of vegetation cover and climate humidity in the southeastern sector of the West Siberian Plain based on palynological and rhizopod studies of peat deposits, Bulletin of Tomsk State University. Biology, 47, 164–189, https://doi.org/10.17223/156177932019/13, 2019 (in Russian). 12. Blyakharchuk, T. A.: Detailed subdivision of the Early and Middle Holocene based on the study of an azonal permafrost peatland in the south of Western Siberia, in: Abstracts of the Conference “Palynology and Mineral Sources”, Akademiya Nauk BSSR, Minsk, 1105–1145, 1989b (in Russian). 13. Blyakharchuk, T. A.: Four new pollen sections tracing the Holocene vegetational development of the southern part of the West Siberian Lowland, The Holocene, 13, 715–731, https://doi.org/10.1191/0959683603hl658rp, 2003. 14. Blyakharchuk, T. A.: The Holocene history of vegetation of south-eastern West Siberia by botanical and pollen analyses of peat deposits, Doctoral dissertation, Tomsk State University, Tomsk, Russia, 248 pp., 1989a (in Russian). 15. Blyakharchuk, T. A.: Vegetation history of southwestern Siberia in the Holocene (based on botanical and pollen analyses of peat), Cand. Sci. dissertation, Institute of Biology and Biophysics, Tomsk State University, Tomsk, Russia, 1990 (in Russian). 16. Blyakharchuk, T. A.: Spore and pollen characteristics of peatlands of the Verhneketskii region during the Holocene, in: Abstracts of the Conference “Young Scientist for Peoples Economy: Economical Evaluation of the Tomsk Region”, Tomsk University Press, Tomsk, Russia, 24–25, 1980 (in Russian). 17. Blyakharchuk, T., Shefer, N., Ponomareva, O., and Li, H.-C.: Late Quaternary Dynamics of Landscape and Climate in the North of the West Siberian Plain Revealed by Paleoecological Studies of Peat and Lake Sediments, Quaternary, 7, 1, https://doi.org/10.3390/quat7010001, 2024. 18. Borisova, O. K., Novenko, E. Yu., Zelikson, E. M., and Kremenetski, K. V.: Lateglacial and Holocene vegetational and climatic changes in the southern taiga zone of West Siberia according to pollen records from Zhukovskoye peat mire, Quaternary International, 237, 65–73, https://doi.org/10.1016/j.quaint.2011.01.015, 2011. 19. Borren, W., Bleuten, W., and Lapshina, E. D.: Holocene peat and carbon accumulation rates in the southern taiga of western Siberia, Quaternary Research, 61, 42–51, https://doi.org/10.1016/j.yqres.2003.09.002, 2004.
20. Cao, X., Tian, F., Andreev, A., Anderson, P. M., Lozhkin, A. V., Bezrukova, E., Ni, J., Rudaya, N., Stobbe, A., Wieczorek, M., and Herzschuh, U.: A taxonomically harmonized and temporally standardized fossil pollen dataset from Siberia covering the last 40 kyr, Earth System Science Data, 12, 119–135, https://doi.org/10.5194/essd-12-1192020, 2020. 21. Cao, X., Tian, F., Li, F., Gaillard, M.-J., Rudaya, N., Xu, Q., and Herzschuh, U.: Pollen-based quantitative land-cover reconstruction for northern Asia covering the last 40 ka cal BP, Climate of the Past, 15, 1503–1536, https://doi.org/10.5194/cp-15-1503-2019, 2019. 22. Charman, D. J., Beilman, D. W., Blaauw, M., Booth, R. K., Brewer, S., Chambers, F. M., Christen, J. A., GallegoSala, A., Harrison, S. P., Hughes, P. D. M., Jackson, S. T., Korhola, A., Mauquoy, D., Mitchell, F. J. G., Prentice, I. C., van der Linden, M., De Vleeschouwer, F., Yu, Z. C., Alm, J., Bauer, I. E., Corish, Y. M. C., Garneau, M., Hohl, V., Huang, Y., Karofeld, E., Le Roux, G., Loisel, J., Moschen, R., Nichols, J. E., Nieminen, T. M., MacDonald, G. M., Phadtare, N. R., Rausch, N., Sillasoo, Ü., Swindles, G. T., Tuittila, E.-S., Ukonmaanaho, L., Väliranta, M., van Bellen, S., van Geel, B., Vitt, D. H., and Zhao, Y.: Climate-related changes in peatland carbon accumulation during the last millennium, Biogeosciences, 10, 929–944, https://doi.org/10.5194/bg-10-929-2013, 2013. 23. Chichagova, O. A. and Cherkinsky, A. E.: Radiocarbon investigations in geography, Nauka, Moscow, 79 pp., 1988 (in Russian). 24. Feurdean, A., Diaconu, A. C., Pfeiffer, M., Gałka, M., Hutchinson, S. M., Butiseaca, G., Gorina, N., Tonkov, S., Niamir, A., Tantau, I., Zhang, H., and Kirpotin, S.: Holocene wildfire regimes in western Siberia: interaction between peatland moisture conditions and the composition of plant functional types, Climate of the Past, 18, 1255–1274, https://doi.org/10.5194/cp-18-1255-2022, 2022. 25. Feurdean, A., Gałka, M., Florescu, G., Diaconu, A.-C., Tanţău, I., Kirpotin, S., and Hutchinson, S. M.: 2000 years of variability in hydroclimate and carbon accumulation in western Siberia and the relationship with large-scale atmospheric circulation: A multi-proxy peat record, Quaternary Science Reviews, 226, 105948, https://doi.org/10.1016/j.quascirev.2019.105948, 2019. 26. Fiałkiewicz-Kozieł, B., Smieja-Król, B., Frontasyeva, M., Słowiński, M., Marcisz, K., Lapshina, E., Gilbert, D., Buttler, A., Jassey, V. E. J., Kaliszan, K., Laggoun-Défarge, F., Kołaczek, P., and Lamentowicz, M.: Anthropogenicand natural sources of dust in peatland during the Anthropocene, Scientific Reports, 6, 38731, https://doi.org/10.1038/srep38731, 2016. 27. Firsov, L. V., Levina, T. P., and Troitskii, S. L.: The Holocene climatic changes in northern Siberia, in: Climatic changes in arctic areas during the last ten thousand years, edited by: Vasari, Y., Hyvärinen, H., and Hicks, S., Acta Universitatis Ouluensis, Series A, Scientiae Rerum Naturalium, No. 3, Geologica, University of Oulu, Oulu, 341–349, 1972. 28. Firsov, L. V., Panychev, V. A., and Orlova, L. A.: Catalog of Radiocarbon Dates, Geological Institute of the Siberian Branch, USSR Academy of Sciences, Novosibirsk, Russia, 87 pp., 1985 (in Russian). 29. Firsov, L. V., Troitskii, S. L., Levina, T. P., and Panychev, V. A.: Absolute age and first for the north Siberia standard pollen diagram of the Holocene peat bog, Bulletin of the Commission for Quaternary Studies, 41, 121–127, 1974 (in Russian). 30. Firsov, L. V., Volkova, V. S., Levina, T. P., Nikolayeva, I. V., Orlova, L. A., Panychev, V. A., and Volkov, I. A.: The stratigraphy, geochronology, and standard spore-pollen diagram for Holocene peat, Gladkoye Bog, Novosibirsk, in: Problems of stratigraphy and paleogeography of the Pleistocene of Siberia, edited by: Arkhipov, S. A., Nauka, Novosibirsk, 96–107, 1982 (in Russian). 31. Forman, S. L., Ingólfsson, Ó., Gataullin, V., Manley, W., and Lokrantz, H.: Late Quaternary stratigraphy, glacial limits, and paleoenvironments of the Marresale area, western Yamal Peninsula, Russia, Quaternary Research, 57, 355–370, https://doi.org/10.1006/qres.2002.2322, 2002. 32. Glebov, F. Z. and Karpenko, L. V.: Comparison of the development history and palynological analysis of virgin and naturally drained areas of a raised bog, in: Structure and development of bog ecosystems and reconstruction of paleogeographic conditions, 10th All-Union seminar–excursion, Abstracts, Tallinn, 55–59, 1989 (in Russian). 33. Glebov, F. Z., Karpenko, L. V., and Dashkovskaya, I. S.: Climatic changes, successions of peatlands and zonal vegetation, and peat accumulation dynamics in the Holocene (the West-Siberia peat profile ‘Vodorasdel’), Climatic Change, 55, 175–181, https://doi.org/10.1023/A:1020216922975, 2002. 34. Glebov, F. Z., Karpenko, L. V., Klimanov, V. A., and Mindeeva, T. N.: The Holocene palaeoecology on the Ob’- Vas iu ga n wa te rsh ed af te r st ud ies o f th e pea t sec ti on ‘Vodor az de l’ , Ek ol og iy a, 6, 412–418, 1997 (in Russian). 35. Glebov, F. Z., Toleyko, L. S., Starikov, E. V., and Zhidovlenko, V. A.: Palynology and ¹⁴C dating of a peat bog from the Aleksandrovsk district of Tomsk region (middle taiga sub-belt), in: Types of the USSR Bogs and Principles of their Classification, edited by: Lavrenko, E. M., Nauka, Leningrad, 194–199, 1974 (in Russian). 36. Glebov, F. Z.: Relations of Forest and Bog in the Taiga Belt, Nauka, Novosibirsk, 183 pp., 1988 (in Russian).
37. Halaś, A., Lamentowicz, M., Łuców, D., and Słowiński, M.: Developing a new testate amoeba hydrological transfer function for permafrost peatlands of NW Siberia, Quaternary Science Reviews, 308, 108067, https://doi.org/10.1016/j.quascirev.2023.108067, 2023. 38. Halaś, A., Lamentowicz, M., Obremska, M., Łuców, D., and Słowiński, M.: Peatland development reconstruction and complex biological responses to permafrost thawing in Western Siberia, Biogeosciences, 22, 4797–4822, https://doi.org/10.5194/bg-22-4797-2025, 2025. 39. Hugelius, G., Loisel, J., Chadburn, S., Jackson, R. B., Jones, M., MacDonald, G., Marushchak, M., Olefeldt, D., Packalen, M., Siewert, M. B., Treat, C., Turetsky, M., Voigt, C., and Yu, Z.: Large stocks of peatland carbon and nitrogen are vulnerable to permafrost thaw, Proceedings of the National Academy of Sciences, 117, 20438–20446, https://doi.org/10.1073/pnas.1916387117, 2020. 40. Il’ina, N. S., Lapshina, E. I., and Lavrenko, N. I.: Vegetation cover of the Western Siberian continental plateau, Nauka, Moscow, 251 pp., 1985 (in Russian). 41. Karavaeva, N. A.: Evolution of Soils and Bog Development, Nauka, Moscow, 296 pp., 1982 (in Russian). 42. Karpenko, L. V.: Dynamics of vegetation cover, peat accumulation, and carbon in Tugulan Basin, Geography and Natural Resources, 3, 74–81, 1966 (in Russian). 43. Karpenko, L. V.: Vegetation, peat and carbon accumulation dynamics in the Toughen basin, and Natural Resources, 3, 74–81, 1996 (in Russian). 44. Kats, S. V.: History of vegetation of western Siberia during the Holocene, Bulletin of the Commission for the Study of the Quaternary, 13, 118–123, 1953 (in Russian). 45. Khotinsky, N. A. and Klimanov, V. A.: Radiocarbon age and climate of the development of peat hills in the NadymKazym watershed in the Holocene, in: Problems of the ecology of marsh plants, peatland habitats, and peat deposits, edited by: Lopatin, V. D. and Yudina, V. F., Institute of Biology, Karelian Branch of the USSR Academy of Sciences, Petrozavodsk, 132–140, 1985 (in Russian). 46. Khotinsky, N. A.: Holocene of Northern Eurasia, Nauka, Moscow, 200 pp., 1977 (in Russian). 47. Khotinsky, N. A.: Holocene vegetation history, in: Late Quaternary Environments of the Soviet Union, edited by: Vel ic hk o, A. A ., Wr igh t Jr., H. E. , and Ba rno sk y, C. W., L ong man, L ond on , 17 9–188, 1984. 48. Kind, N. V.: Geochronology of the Late Anthropogene based on isotope data, Transactions of the Geological Institute of the USSR Academy of Sciences, vol. 257, Nauka, Moscow, 255 pp., 1974 (in Russian). 49. Kind, N. V.: Lateand post-glacial of Siberia: new data about absolute chronology, in: Holocene, edited by: Neishtadt, M. I., Nauka, Moscow, 195–201, 1969 (in Russian). 50. Klimanov, V. A., Levina, T. P., Orlova, L. A., and Panychev, V. A.: Climate of Barabinskaya plain in Subatlantic period as indicated by investigation of Suminskoe zaimische bog, in: Regional Chronology of Siberia and Far East, Nauka, Novosibirsk, 143–149, 1987 (in Russian). 51. Klimanov, V. A.: Methods for interpreting characteristics of past climate, Vestnik Moskovskogo Gosudarstvennogo Universiteta, Seriya Geograficheskaya, 2, 92–98, 1976 (in Russian). 52. Koshkarova, V. L., Karpenko, L. V., and Orlova, L. A.: Vegetation and upper tree-line dynamics in Holocene on the Polar Ural, Ekologiya, 6, 121–125, 1999 (in Russian). 53. Koshkarova, V. L., Kutafieva, T. K., Zhidovlenko, V. A., and Starikov, E. V.: Investigation of a peatland in the surrounding of Igarka, in: Holocene History of Siberian Forests, edited by: Savina, L. N., Krasnoyarsk, 60–71, 1975 (in Russian). 54. Koshkarova, V. L.: History of taiga forests evolution in the Yenissey River basin (based on macrofossils studies), in: Palaeobotanic Investigations in Forests of Northern Asia, edited by: Savina, L. N., Nauka, Novosibirsk, 5–30, 1981 (in Russian). 55. Koshkarova, V. L.: Holocene flora of south taiga in Middle Siberia, in: Holocene History of Siberian Forests, edited by: Savina, L. N., Krasnoyarsk, 96–101, 1975 (in Russian). 56. Kremenetski, K. V., Velichko, A. A., Borisova, O. K., MacDonald, G. M., Smith, L. C., Frey, K. E., and Orlova, L. A.: Peatlands of the Western Siberian lowlands: current knowledge on zonation, carbon content and Late Quaternary history, Quaternary Science Reviews, 22, 703–723, https://doi.org/10.1016/S0277-3791(02)00196-8, 2003. 57. Krivonogov, S. K., Orlova, L. A., and Panychev, V. A.: Seed flora and absolute age of II Irtysh River terrace, in: Mesozoic and Cenozoic Palynostratigraphy of Siberia, Nauka, Novosibirsk, 99–115, 1985 (in Russian). 58. Krivonogov, S. K., Takahara, H., Yamamuro, M., Preis, Y. I., Khazina, I. V., Khazin, L. B., Kuzmin, Y. V., Safonova, I. Y., and Ignatova, N. V.: Regional to local environmental changes in southern Western Siberia: Evidence from biotic records of mid to late Holocene sediments of Lake Beloye, Palaeogeography, Palaeoclimatology, Palaeoecology, 331– 332, 177–193, https://doi.org/10.1016/j.palaeo.2011.09.013, 2012. 59. Krivonogov, S. K.: Stratigraphy and paleogeography of lower Irtysh area during last glacial time after results of palaeobotanic analysis, Nauka, Novosibirsk, 232 pp., 1988 (in Russian).
60. Krutikov, V. A., Preis, Y. I., Kuskov, A. I., and Cheredko, N. N.: Cyclicity of the peat formation process in the south of the forest zone of Western Siberia, News of Tomsk Polytechnic University. Engineering of Georesources, 317, 2010 (in Russian). 61. Kurina, I. V. and Blyakharchuk, T. A.: Analysis of surface wetness changes in mires of Southwestern Siberia during the Little Ice Age (550–50 cal yr BP), IOP Conf. Ser.: Earth Environ. Sci., 211, 012036, https://doi.org/10.1088/17551315/211/1/012036, 2018a. 62. Kurina, I. V. and Blyakharchuk, T. A.: Testate amoebae analysis in the peat deposits of the swamp Dolgon’koye in the south of Western Siberia and peatland paleohydrology for last 3100 years, IOP Conf. Ser.: Earth Environ. Sci., 138, 012009, https://doi.org/10.1088/1755-1315/138/1/012009, 2018b. 63. Kurina, I. V. and Golovatskaya, E. A.: Testate amoebae assemblages (Rhizopoda and Testacea) in the peat deposits of the floodplain terrace swamp (the south of forested zone of Western Siberia), Biology Bulletin, 45, 91–99, https://doi.org/10.1134/S1062359018010077, 2018. 64. Kurina, I. V., Li, H., and Barashkov, D. R.: Use of testate amoebae to infer paleohydrology during fen and fen-bog transition stages of ombrotrophic mire development, Journal of Paleolimnology, 63, 147–158, https://doi.org/10.1007/s10933-019-00107-y, 2020. 65. Kurina, I. V., Veretennikova, E. E., Golovatskaya, E. A., Blyakharchuk, T. A., and Smirnov, S. V.: Dynamics of the surface wetness of mires in the southern taiga subzone of Western Siberia in the Middle and Late Holocene, Bulletin of Tomsk State University. Biology, 44, 218–241, https://doi.org/10.17223/a15617793/44/17, 2018b (in Russian). 66. Kurina, I. V., Veretennikova, E. E., Il’ina, A. A., Dyukarev, E. A., Golovatskaya, E. A., and Smirnov, S. V.: Reconstruction of conditions of formation of the eutrophic peatland deposits in south of the taiga zone of Western Siberia, Bulletin of the Russian Academy of Sciences: Geography, 82, 66–76, https://doi.org/10.1134/S2587556618040106, 2018a (in Russian). 67. Kurina, I. V., Veretennikova, E. E., Il’ina, A. A., Egorova, M. L., Salisch, L. V., Dolgin, V. N., Udaloi, A. V., Golovatskaya, E. A., Dyukarev, E. A., and Smirnov, S. V.: Multi-proxy climate and environmental records from a Holocene eutrophic mire, southern taiga subzone, West Siberia, Boreas, 52, 223–239, https://doi.org/10.1111/bor.12604, 2023. 68. Kurina, I. V., Veretennikova, E. E., Salisch, L. V., Egorova, M. L., Dolgin, V. N., Udaloi, A. V., and Golovatskaya, E. A.: The use of zoo-indicators for the reconstruction of paleoenvironments in the Holocene in the peat deposits of an eutrophic peatland, Zoologicheskii Zhurnal, 96, 973–986, https://doi.org/10.7868/S0044513417080086, 2017 (in Russian). 69. Lamentowicz, M., Słowiński, M., Marcisz, K., Zielińska, M., Kaliszan, K., Lapshina, E., Gilbert, D., Buttler, A., Fiałkiewicz-Kozieł, B., Jassey, V. E. J., Laggoun-Défarge, F., and Kołaczek, P.: Hydrological dynamics and fire history of the last 1300 years in western Siberia reconstructed from a high-resolution, ombrotrophic peat archive, Quaternary Research, 84, 312–325, https://doi.org/10.1016/j.yqres.2015.09.002, 2015. 70. Lapshina, E. D. and Zarov, E. A.: Stratigraphy of peat deposits and mire development in the southern part of the forest zone of Western Siberia in Holocene, Environmental Dynamics and Global Climate Change, 14, 70–101, https://doi.org/10.18822/edgcc568688, 2023. 71. Larina, N. S., Larin, S. I., and Merkushina, G. A.: Accumulation of chemical elements in the raised peatbogs of the subtaiga Trans-Urals in the Holocene, Eurasian Soil Science, 47, 670–681, https://doi.org/10.1134/S1064229314050123, 2014. 72. Leonova, G. A., Maltsev, A. E., Preis, Yu. I., and Miroshnichenko, L. V.: Biogeochemistry of Holocene peatlands in the Baraba forest-steppe (southern West Siberia), Applied Geochemistry, 124, 104811, https://doi.org/10.1016/j.apgeochem.2020.104811, 2021. 73. Leonova, G. A., Maltsev, A. E., Preis, Yu. I., Miroshnichenko, L. V., Shavekin, A. S., and Rubanov, M. V.: Biogeochemical features of Holocene sediments in oligotrophic bogs of the Baraba forest steppe, Geochemistry International, 60, 183–202, https://doi.org/10.1134/S0016702922020069, 2022b. 74. Leonova, G. A., Melgunov, M. S., Mezina, K. A., Preis, Y. I., Maltsev, A. E., Shavekin, A. S., and Rubanov, M. V.: Natural and manmade (¹³⁷Cs) radioisotopes in Holocene sequence of the Sherstobitovsky raised bog in the Barabinsk forest-steppe (West Siberia), Applied Geochemistry, 140, 105258, https://doi.org/10.1016/j.apgeochem.2022.105258, 2022a. 75. Levina, T. P. and Nikitin, V. P.: Paleobotanical characteristics of Holocene peat in the Karginskii Cape region of the Yenisei River, in: Pleistocene of Siberia and Bordering Regions, edited by: Saks, V. N. et al., Nauka, Moscow, 80–85, 1973 (in Russian). 76. Levina, T. P. and Sukhorukova, S. S.: Palynology of the Holocene peat bog near Karasino settlement on the Yenisei River, in: Studies of the Paleophytology of Siberia (Transactions of the Institute of Geology and Geophysics, vol. 322), edited by: Khlonova, A. F., Nauka, Moscow, 102–107, 1976 (in Russian).
77. Levina, T. P., Orlova, L. A., Panychev, V. A., and Ponomareva, E. A.: Radiochronometry and pollen stratigraphy of Holocene peat of Kayakskoye Zaimischye (Barabinskaya forest-steppe), in: Regional Geochronology of Siberia and the Far East, edited by: Nikolayeva, I. V., Nauka, Novosibirsk, 136–143, 1987 (in Russian). 78. Levkovskaya, G. M., Kind, N. V., Zavelsky, F. C., and Forova, V. S.: Absolute age of peat bogs of the Igarka City region and the division of the West Siberia Holocene, Bulletin of the Commission for Quaternary Studies, 37, 94–101, 1970 (in Russian). 79. Liss, O. L. and Berezina, N. A.: Bogs of the West Siberian Lowland, Moscow University Publishing, Moscow, 206 pp., 1981 (in Russian). 80. Liss, O. L. and Kulikova, G. G.: About the regional classification of bogs in Tomsk region, Vestnik Moskovskogo Universiteta, Seriya 4, 87–91, 1967 (in Russian). 81. Loisel, J., Yu, Z., Beilman, D. W., Camill, P., Alm, J., Amesbury, M. J., Anderson, D., Andersson, S., Bochicchio, C., Barber, K., Belyea, L. R., Bunbury, J., Chambers, F. M., Charman, D. J., De Vleeschouwer, F., Fiałkiewicz-Kozieł, B., Finkelstein, S. A., Gałka, M., Garneau, M., Hammarlund, D., Hinchcliffe, W., Holmquist, J., Hughes, P., Jones, M. C., Klein, E. S., Kokfelt, U., Korhola, A., Kuhry, P., Lamarre, A., Lamentowicz, M., Large, D., Lavoie, M., MacDonald, G., Magnan, G., Mäkilä, M., Mallon, G., Mathijssen, P., Mauquoy, D., McCarroll, J., Moore, T. R., Nichols, J., O’Reilly, B., Oksanen, P., Packalen, M., Peteet, D., Richard, P. J., Robinson, S., Ronkainen, T., Rundgren, M., Sannel, A. B. K., Tarnocai, C., Thom, T., Tuittila, E.-S., Turetsky, M., Väliranta, M., van der Linden, M., van Geel, B., van Bellen, S., Vitt, D., Zhao, Y., and Zhou, W.: A database and synthesis of northern peatland soil properties and Holocene carbon and nitrogen accumulation, The Holocene, 24, 1028–1042, https://doi.org/10.1177/0959683614538073, 2014. 82. MacDonald, G. M., Beilman, D. W., Kremenetski, K. V., Sheng, Y., Smith, L. C., and Velichko, A. A.: Rapid early development of circumarctic peatlands and atmospheric CH₄ and CO₂ variations, Science, 314, 285–288, https://doi.org/10.1126/science.1131722, 2006. 83. Malyasova, E. S., Novikov, S. M., and Usova, L. I.: Dynamics of peat accumulation and the formation of palsa mires in Western Siberia, Botanicheskii Zhurnal, 9, 1227–1238, 1991 (in Russian). 84. Mezhibor, A. M., Arbuzov, S. I., Rikhvanov, L. P., Preis, Y. I., and Syso, A. I.: Reconstruction of radioactive elements (U, Th) input in the environment of western Siberia according to the study of an upland peatland, in: Proceedings of the V International Conference, Tomsk, 13–16 September 2016, 2016. 85. Minayeva, T., Bleuten, W., Sirin, A., and Lapshina, E. D.: Eurasian mires of the southern taiga belt: modern features and response to Holocene palaeoclimate, in: Wetlands and Natural Resource Management, edited by: Verhoeven, J. T. A., Beltman, B., Bobbink, R., and Whigham, D. F., Springer, Berlin, Heidelberg, 315–341, https://doi.org/10.1007/978-3-540-33187-2_14, 2006. 86. Moskovchenko, D. V., Afonin, A. S., and Pozhitkov, R. Y.: Development history and composition of peatland in the Numto natural park in Western Siberia, Russia, IOP Conf. Ser.: Earth Environ. Sci., 1093, 012010, https://doi.org/10.1088/1755-1315/1093/1/012010, 2022. 87. Neishtadt, M. I.: About environmental changes in middle taiga of western Siberia during the Holocene, in: Palynology of the USSR, edited by: Zaklinskaya, E. D. and Neishtadt, M. I., Nauka, Moscow, 156–161, 1976b (in Russian). 88. Neishtadt, M. I.: Holocene processes in western Siberia and associated problems, in: Studying and Mastering the Environment, edited by: Neishtadt, M. I., Institute of Geography, USSR Academy of Sciences, Moscow, 90–99, 1976a (in Russian). 89. Neishtadt, M. I.: Regional regularities of phytocoenoses history in the USSR during the Holocene by palynological data, in: History of Biogeocoenoses in the USSR During the Holocene, edited by: Dinesman, L. G., Nauka, Moscow, 79–91, 1976c (in Russian). 90. Neustadt, M. I. and Selikson, E. M.: Neue Angaben zur Stratigraphie der Torfmoore Westsibiriens, Acta Agralia Fennica, 123, 27–32, 1971 (in German). 91. Neustadt, M. I., Firsov, L. V., Panychev, V. A., and Orlova, L. A.: Some peculiarities of Holocene processes in Western Siberia, Geoforum, 24, 17–25, 1974. 92. Neustadt, M. I.: On absolute age of peat bogs of Western Siberia, Revue Roumaine de Biologie, Série de Botanique, 12, 181–186, 1967 (in Russian). 93. Novenko, E. Y., Kupryanov, D. A., Mazei, N. G., Prokushkin, A. S., Phelps, L. N., Buri, A., and Davis, B. A. S.: Evidence that modern fires may be unprecedented during the last 3400 years in permafrost zone of Central Siberia, Russia, Environmental Research Letters, 17, 025004, https://doi.org/10.1088/1748-9326/ac4b53, 2022a. 94. Novenko, E. Y., Mazei, N. G., Kupriyanov, D., Shatunov, A. E., Andreev, R. A., Makarova, E. A., Borodina, K. A., Rudenko, O., Prokushkin, A. S., and Volkova, E. M.: Vegetation changes in Yenisei Siberia over the last 4700 years: new palaeoecological data from Igarka area, Krasnoyarsk Region, Geomorfologiya, 53, 5–6, https://doi.org/10.31857/S0435428122030129, 2022c (in Russian).
95. Novenko, E. Y., Mazei, N. G., Prokushkin, A. S., Kupriyanov, D. A., Shatunov, A. E., Andreev, R. A., and Serikov, S. I.: The Holocene palaeoecology of the palsa mire near Igarka (Yenisei Siberia), IOP Conf. Ser.: Earth Environ. Sci., 1093, 012029, https://doi.org/10.1088/1755-1315/1093/1/012029, 2022b. 96. Novenko, E. Y., Prokushkin, A. S., Mazei, N. G., Zazovskaya, E. P., Kupriyanov, D. A., Shatunov, A. E., Andreev, R. A., Makarova, E. A., Kusilman, M. V., Serikov, S. I., Xiuyuan, G., Babeshko, K. V., Tsyganov, A. N., and Mazei, Y. A.: The midand late Holocene palsa palaeoecology and hydroclimatic changes in Yenisei Siberia revealed by a highresolution peat archive, Quaternary International, 682, 8–21, https://doi.org/10.1016/j.quaint.2024.01.013, 2024. 97. Novenko, E., Rudenko, O., Mazei, N., Kupriyanov, D., Andreev, R., Shatunov, A., Kusilman, M., Prokushkin, A., and Olchev, A.: Effects of climate change and fire on the middle and late Holocene forest history in Yenisei Siberia, Forests, 14, 2321, https://doi.org/10.3390/f14122321, 2023. 98. Novikov, S. M., Usova, L. I., and Malyasova, E. S.: Age and dynamics of bogs in west Siberia, in: Bolota i zabolochennye lesa v svete zadach ustoichivogo prirodopolzovaniya, edited by: Vompersky, S. E. and Sirin, A. A., GEOS, Moscow, 72–76, 1999 (in Russian). 99. Orlova, L. A.: The Holocene of Baraba: Stratigraphy and Radiocarbon Chronology, Nauka, Moscow, 125 pp., 1990 (in Russian). 100. P’yavchenko, N. I.: On the age of peatlands and Holocene changes of vegetation in the south of Western Siberia, Bulletin of the Commission for the Study of the Quaternary Period, 52, 164–170, 1983 (in Russian). 101. Panova, N. K.: New data about paleoecology and vegetation history of southern Yamal during the Holocene, in: Chetvertichnyi period: Metody issledovaniya, stratigrafiya i ekologiya, vol. 3, edited by: Miidel, A. M. and Molod’kov, A. N., Akademiya Nauk Estonii, Tallinn, 45–46, 1990 (in Russian). 102. Panova, N. K.: Palynological study of Karasieozerskii peatland on middle Ural, in: Issledovanie lesov Urala: Materialy nauchnykh chteniy posvyashchennykh pamyati B. P. Kolesnikova, Institute of Forest, USSR Academy of Sciences, Ekaterinburg, Russia, 28–31, 1997 (in Russian). 103. Panova, N. K., Trofimova, S. S., Antipina, T. G., Zinoviev, E. V., Gilev, A. V., and Erokhin, N. G.: Holocene dynamics of vegetation and ecological conditions in the southern Yamal Peninsula according to the results of comprehensive analysis of a relict peat bog deposit, Russian Journal of Ecology, 41, 20–27, https://doi.org/10.1134/S1067413610010042, 2010. 104. Paradossky, V. L., Pechatnova, Y. V., and Solomonova, M. Y.: The natural transformations of the Northern Kulunda in the second half of the Holocene based on studying the microbiomorphic profile of swampy phytocenosis, Ukrainian Journal of Ecology, 9, 406–411, 2019. 105. Pastukhov, A., Marchenko-Va gapo va , T. , Lo ik o, S. , an d Ka ve ri n, D. : Vu ln era bi lit y of th e an ci en t pea t plat ea us i n Western Siberia, Plants, 10, 2813, https://doi.org/10.3390/plants10122813, 2021. 106. Peregon, A., Uchida, M., and Shibata, Y.: Sphagnum peatland development at their southern climatic range in West Siberia: trends and peat accumulation patterns, Environmental Research Letters, 2, 045014, https://doi.org/10.1088/1748-9326/2/4/045014, 2007. 107. Peregon, A., Uchida, M., and Yamagata, Y.: Lateral extension in Sphagnum mires along the southern margin of the boreal region, Western Siberia, Environmental Research Letters, 4, 045028, https://doi.org/10.1088/17489326/4/4/045028, 2009. 108. Peteet, D., Andreev, A., Bardeen, W., and Mistretta, F.: Long-term Arctic peatland dynamics, vegetation and climate history of the Pur-Taz region, Western Siberia, Boreas, 27, 115–126, https://doi.org/10.1111/j.15023885.1998.tb00872.x, 1998. 109. Peterson, G. M.: Vegetational and climatic history of the western former Soviet Union, in: Global Climates Since the Last Glacial Maximum, edited by: Wright Jr., H. E. et al., University of Minnesota Press, Minneapolis, 169–193, 1993. 110. Piavchenko, N. I.: On age of peatbogs and sequences of the vegetation in the south of West Siberia, Bulletin of the Commission for Quaternary Studies, 52, 164–170, 1985 (in Russian). 111. Piavchenko, N. I., Meteltseva, E. P., Kozlovskaya, L. S., and Gorlova, R. N.: Holocene palaeogeography in the south of West Siberia after the complex studies of peatlands, in: Problemy biogeotsenologii, geobotaniki i botanicheskoi geografii, edited by: Tikhomirov, B. A., Nauka, Leningrad, 207–218, 1973 (in Russian). 112. Pitkänen, A., Turunen, J., Tahvanainen, T., and Tolonen, K.: Holocene vegetation history from the Salym-Yugan Mire Area, West Siberia, The Holocene, 12, 353–362, https://doi.org/10.1191/0959683602hl533rp, 2002. 113. Preis, Y. I.: Detailed reconstruction of bog functional state as a response to continental climate changes in Holocene (the middle taiga of Western Siberia), News of Tomsk Polytechnic University. Engineering of Georesources, 326, 90– 102, 2015 (in Russian).
114. Preis, Y.: Indicators of paleocryogenic processes that disrupt the patterns of peatland autogenic development in the zone of seasonal freezing of rocks of Western Siberia, Limnology and Freshwater Biology, 4, 562–567, https://doi.org/10.31951/2658-3518-2024-A-4-562, 2024. 115. Preis, Y. I. and Kurina, I. V.: Hydrological regime reconstruction of peatland ecotopes with rhizopod analysis (choice of optimal methodological approach), News of the Penza State Pedagogical University named after V. G. Belinsky, 412–420, 2011 (in Russian). 116. Preis, Y. I., Simonova, G. V., and Slagoda, E. A.: Detailed stratigraphy and dynamics of central Yamal khasyrey during the late Holocene, Bulletin of the Tomsk Polytechnic University. Geo Assets Engineering, 327, 35–49, 2016 (in Russian). 117. Preis, Y., Maltsev, A., and Leonova, G.: Assessment of Holocene climate influence on hydrothermal regime of paleoecotopes within Ryams of the Baraba forest-steppe (southern Western Siberia), Limnology and Freshwater Biology, 4, 580–587, https://doi.org/10.31951/2658-3518-2024-A-4-580, 2024. 118. Punning, J. M., Kakum, T., and Rajamäe, R.: Tallinn Radiocarbon Dates II, Radiocarbon, 16, 388–394, https://doi.org/10.1017/S0033822200059683, 1974. 119. Rudmin, M., Ruban, A., Savichev, O., Mazurov, A., Dauletova, A., and Savinova, O.: Authigenic and detrital minerals in peat environment of Vasyugan Swamp, Western Siberia, Minerals, 8, 500, https://doi.org/10.3390/min8110500, 2018. 120. Ryabogina, N. E. and Yuzhanina, E. D.: Palaeoecological reconstructions in the Tobol-Ishim interfluve: combination of on-site pollen data from cultural layers and off-site peatland records, Vestnik Arkheologii, Antropologii i Etnografii, 51, 85–98, https://doi.org/10.20874/2071-0437-2020-51-4-8, 2020 (in Russian). 121. Ryabogina, N. E., Afonin, A. S., Ivanov, S. N., Li, H.-C., Kalinin, P. A., Udaltsov, S. N., and Nikolaenko, S. A.: Holocene paleoenvironmental changes reflected in peat and lake sediment records of Western Siberia: Geochemical and plant macrofossil proxies, Quaternary International, 528, 73–87, https://doi.org/10.1016/j.quaint.2019.04.006, 2019. 122. Ryabogina, N. E., Nesterova, M. I., Utaygulova, R. R., and Trubitsyna, E. D.: Forest fires in southwest Western Siberia: the impact of climate and economic transitions over 9000 years, Journal of Quaternary Science, 39, 432–442, https://doi.org/10.1002/jqs.3593, 2024. 123. Shchuryakov, D. S.: The history of the development of the Ishtan mire massif (Western Siberia), Environmental Dynamics and Global Climate Change, 16, 4–12, https://doi.org/10.18822/edgcc634517, 2025. 124. Shchuryakov, D. S.: The results of study of botanical composition of peat deposit of the Ishtan swamp massif, in: Botanika i botaniki v menyayushchemsya mire: Trudy Mezhdunarodnoi nauchnoi konferentsii, posvyashchennoi 135letiyu kafedry botaniki i 145-letiyu Tomskogo gosudarstvennogo universiteta, Tomsk State University, Tomsk, https://doi.org/10.17223/978-5-7511-2661-2/75, 2023 (in Russian). 125. Shefer, N. V., Loiko, S. V., Krickov, I. V., and Lim, A. G.: The most comprehensive history of fire activity in the PurTaz interfluve over the last 11,000 years (Western Siberia, Russia), 1, 10, 1755–1777, https://doi.org/10.5281/zenodo.14525710, 2024. 126. Shefer, N., Blyakharchuk, T., Loiko, S., Shumilovskikh, L., and Gureyeva, I.: History of vegetation and fires in the Arctic part of the Pur-Taz interfluve in the Holocene, Arctic and Antarctic Research, 69, 244–263, https://doi.org/10.30758/0555-2648-2023-69-2-244-263, 2023. 127. Sheng, Y., Smith, L. C., MacDonald, G. M., Kremenetski, K. V., Frey, K. E., Velichko, A. A., Lee, M., Beilman, D. W., and Dubinin, P.: A high-resolution GIS-based inventory of the west Siberian peat carbon pool, Global Biogeochemical Cycles, 18, GB3004, https://doi.org/10.1029/2003GB002190, 2004. 128. Shiyatov, S. G., Hantemirov, R. M., Schweingruber, F. H., Briffa, K. R., and Moell, M.: Potential long-chronology development on the Northwest Siberian Plain: early results, Dendrochronologia, 14, 13–29, 1996. 129. Shvartseva, O., Gaskova, O., Yurtaev, A., Boguslavsky, A., Kolpakova, M., and Mashkova, D.: Water–rock–organic matter interactions in wetland ecosystem: hydrogeochemical investigation and computer modeling, Water, 16, 428, https://doi.org/10.3390/w16030428, 2024. 130. Smith, L. C., Beilman, D. W., Kremenetski, K. V., Sheng, Y., MacDonald, G. M., Lammers, R. B., Shiklomanov, A. I., and Lapshina, E. D.: Influence of permafrost on water storage in West Siberian peatlands revealed from a new database of soil properties, Permafrost and Periglacial Processes, 23, 69–79, https://doi.org/10.1002/ppp.735, 2012. 131. Smith, L. C., MacDonald, G. M., Velichko, A. A., Beilman, D. W., Borisova, O. K., Frey, K. E., Kremenetski, K. V., and Sheng, Y.: Siberian peatlands a net carbon sink and global methane source since the early Holocene, Science, 303, 353–356, https://doi.org/10.1126/science.1090553, 2004. 132. Starikov, E. V. and Zhidovlenko, V. A.: Radiocarbon dates of the laboratory of the history of forests in Siberia and Far East, in: Istoria lesov Sibiri v golotsene, edited by: Savina, L. N., Krasnoyarsk, 178–182, 1975 (in Russian).
133. Starikov, E. V. and Zhidovlenko, V. A.: Radiocarbon dates of Holocene samples from Central and East Siberia (index KRIL), in: Paleobotanicheskie issledovania v lesakh Severnoi Asii, edited by: Savina, L. N., Nauka, Novosibirsk, 178–182, 1981 (in Russian). 134. Startsev, V., Gorbach, N., Mazur, A., Prokushkin, A., Karpenko, L., and Dymov, A.: Macrocharcoal signals in Histosols reveal wildfire history of vast Western Siberian forest-peatland complexes, Plants, 11, 3478, https://doi.org/10.3390/plants11243478, 2022. 135. Stepanova, V. A. and Volkova, I. I.: Genesis features of the Nikolaevka ryam in the forest-steppe of Western Siberia, Tomsk State University Journal of Biology, 40, 202–223, https://doi.org/10.17223/15617793/40/17, 2017 (in Russian). 136. Syso, A. I. and Peregon, A. M.: The features of peat-accumulation process at the southern slope of the Great Vasyugan Bog, Contemporary Problems of Ecology, 2, 124–127, https://doi.org/10.1134/S1995425509020064, 2009. 137. Tarasov, P. E., Webb III, T., Andreev, A. A., Afanas’eva, N. B., Berezina, N. A., Bezusko, L. G., Blyakharchuk, T. A., Bolikhovskaya, N. S., Cheddadi, R., Chernavskaya, M. M., Chernova, G. M., Dorofeyuk, N. I., Dirksen, V. G., Elina, G. A., Filimonova, L. V. , Gl eb ov, F. Z. , Gu io t, J. , Gu n ov a, V. S. , H a rri so n, S . P. , J ol ly, D . , K h om ut ov a, V. I. , Kvavadze, E. V., Osipova, I. M., Panova, N. K., Prentice, I. C., Saarse, L., Sevastyanov, D. V., Volkova, V. S., and Zernitskaya, V. P.: Present-day and mid-Holocene biomes reconstructed from pollen and plant macrofossil data from the former Soviet Union and Mongolia, Journal of Biogeography, 25, 1029–1053, https://doi.org/10.1046/j.13652699.1998.00236.x, 1998. 138. Texier, D., de Noblet, N., Harrison, S. P., Haxeltine, A., Jolly, D., Joussaume, S., Laarif, F., Prentice, I. C., and Tarasov, P.: Quantifying the role of biosphere-atmosphere feedbacks in climate change: coupled model simulations for 6000 years BP and comparison with palaeodata for northern Eurasia and northern Africa, Climate Dynamics, 13, 865–881, https://doi.org/10.1007/s003820050202, 1997. 139. Tikhonravova, Y., Kuznetsova, A., Slagoda, E., and Koroleva, E.: Holocene permafrost peatland evolution in drained lake basins on the Pur-Taz Interfluve, North-Western Siberia, Quaternary International, https://doi.org/10.1016/j.quaint.2023.07.005, 2023. 140. Treat, C. C., Jones, M. C., Camill, P., Gallego-Sala, A., Garneau, M., Harden, J. W., Hugelius, G., Klein, E. S., Kokfelt, U., Kuhry, P., Loisel, J., Mathijssen, P. J. H., O’Donnell, J. A., Oksanen, P. O., Ronkainen, T. M., Sannel, A. B. K., Talbot, J., Tarnocai, C., and Väliranta, M.: Effects of permafrost aggradation on peat properties as determined from a pan-Arctic synthesis of plant macrofossils, Journal of Geophysical Research: Biogeosciences, 121, 78–94, https://doi.org/10.1002/2015JG003061, 2016. 141. Tsyganov, A. N., Zarov, E. A., Mazei, Y. A., Kulkov, M. G., Babeshko, K. V., Yushkovets, S. Y., Payne, R. J., Ratcliffe, J. L., Fatyunina, Y. A., Zazovskaya, E. P., and Lapshina, E. D.: Key periods of peatland development and environmental changes in the middle taiga zone of Western Siberia during the Holocene, Ambio, 50, 1896–1909, https://doi.org/10.1007/s13280-021-01545-7, 2021. 142. Turunen, J., Tahvanainen, T., Tolonen, K., and Pitkänen, A.: Carbon accumulation in West Siberian mires, Russia, Global Biogeochemical Cycles, 15, 285–296, https://doi.org/10.1029/2000GB001312, 2001. 143. Vas il ’chu k, A. C .: Pa lyn ol og y and C hr on ol og y o f We dge I ce in Ru ss ian P er mafro st Ar ea s, M osco w Un iv er si ty, Moscow, 488 pp., 2007 (in Russian). 144. Vas il ’chu k, Y. an d Vasi l’ chu k, A. : T hi ck po ly gon al pe at la nd s i n con ti nuo us pe rmaf ro st of We st S ibe ri a, E ar th’s Cryosphere, 20, 3–15, https://doi.org/10.21782/KZ1560-7496-2016-4(3-15), 2016. 145. Vas il ’chu k, Y. K. , Jun gn er, H. , and Va si l’c hu k, A . C. : ¹⁴C da ti ng of p eat a nd δ¹⁸O-δD in ground ice from northwest Siberia, Radiocarbon, 43, 527–540, https://doi.org/10.1017/S0033822200041187, 2001. 146. Vas il chu k, Yu. K. , Pet ro va , E. A. , and S ero va , A. K.: S ome fe atu re s o f the Yam al p aleo geog ra phy i n H ol oc en e, Bulletin of the Commission for Quaternary Studies, 52, 73–89, 1983 (in Russian). 147. Vel ic hko , A . A. , Andr ee v, A. A ., an d Kl iman ov, V. A.: C lim ate an d ve getat io n d yn am ics i n the tu ndr a and f ore st zo ne during the late glacial and Holocene, Quaternary International, 41–42, 71–96, https://doi.org/10.1016/S10406182(96)00039-0, 1997. 148. Ver et enn ik ov a, E. E .: Le ad in th e n at ura l pea t cor es of r idge-hollow complex in the taiga zone of West Siberia, Ecological Engineering, 80, 100–107, https://doi.org/10.1016/j.ecoleng.2015.02.001, 2015. 149. Ver et enn ik ov a, E. a nd K ur in a, I. V.: E vo lu tio n of th e ri dg e-hollow complex of the southern taiga subzone of Western Siberia, Geography and Natural Resources, 35, 91–99, https://doi.org/10.1134/S1875372814010118, 2014. 150. Ver et enn ik ov a, E. E ., Ku rina , I. V., Il ’i na, A . A. , and Sa ve l’ ev, V. V.: P al ae oe nv ir onm enta l rec on str uc tio n of a Holocene peat bog ridge-hollow complex in the south of West Siberia, Tomsk State University Journal of Biology, 28, 104–115, 2014 (in Russian).
151. Ver et enn ik ov a, E. E ., Ku ryin a, I. V., D yu ka re v, E . A. , Golo va ts ka ya, E . A. , and Smir no v, S. V.: Ge oc he mica l fea tu res of peat deposits at oligotrophic bogs in the southern taiga subzone of West Siberia, Geochemistry International, 59, 618–631, https://doi.org/10.1134/S0016702921050098, 2021. 152. Vo lk ov, I. A. , Gu rt ov ay a , E . E ., Fi rs ov, L . V. , Pa ny ch ev, V. A ., a nd O rl ov a, L . A. : St ru ctu re , ag e, a nd h is to ry o f formation of Holocene peat near Gorno-Slinkino village on the Irtysh, in: Pleistocene of Siberia and Bordering Regions, edited by: Saks, V. N. et al., Nauka, Moscow, 34–39, 1973 (in Russian). 153. Vo lk ov a, V. S. : Qu at er na ry d ep os it s of th e L ow er I rty sh R iv e r a nd t he ir b io st ra ti gr ap hi c ch ar ac te ri st ic s, Na u ka , Moscow, 173 pp., 1966 (in Russian). 154. Vo lk ov a, I . I ., K ol es ni ch en ko , L . G ., K ir po ti n, S . N. , Po kr ov sk y, O. S ., a nd Vor ob ye v, S. N .: P ea t d ep o sit s an d pe atforming plants in the mires of the West Siberian northern taiga (based on studies of the Khanymei site), IOP Conf. Ser.: Earth Environ. Sci., 232, 012018, https://doi.org/10.1088/1755-1315/232/1/012018, 2019. 155. Willis, K. S., Beilman, D., Booth, R. K., Amesbury, M., Holmquist, J., and MacDonald, G.: Peatland paleohydrology in the southern West Siberian Lowlands: comparison of multiple testate amoeba transfer functions, sites, and Sphagnum δ¹³C values, The Holocene, 25, 1425–1436, https://doi.org/10.1177/0959683615585833, 2015. 156. Yu, Z ., Be ilma n, D. W., a nd Jo nes , M. C .: Se ns iti vi ty of nor th er n pea tl and c arb on dy nami cs to H ol oc en e cli mate change, in: Carbon Cycling in Northern Peatlands, Geophys. Monogr. Ser., vol. 184, edited by: Baird, A. J., Belyea, L. R., Comas, X., Reeve, A. S., and Slater, L. D., American Geophysical Union, Washington, DC, 55–69, https://doi.org/10.1029/2008GM000822, 2009.