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Longitudinal changes in species composition of forests and grasslands across the North Asian forest steppe zone

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Abstract

In the forest-steppe zone, the plant species composition under the forest, especially birch, canopy can be quite similar to that of zonal grasslands. Here we synthesize, for the first time, plant compositional data for forests and grasslands across the entire forest-steppe zone with the aim to address the questions how different are local species pools across different parts of the Asian forest-steppe zone and to what extent is the species composition of forests and grasslands similar and whether the degree of a difference between forests and grasslands is consistent along a large longitudinal gradient. To answer these questions, a transect of about 5,000 km was stretched from the west to the east, involving nine key areas. Based on 2,000 vegetation-plot records, we calculated Bray-Curtis Coefficients between forests and grasslands and between the individual areas. NMDS was used to compare species pools of forests and grasslands in the individual key areas in a gradient space. The forest and grassland floras differed in species composition in the individual areas, but the forests and grasslands of the same area displayed similar positions along the principal NMDS axis. We observed rather steep compositional changes along the longitudinal gradient, but quite a large set of species was shared between the key areas from the Ural Mountains to the Yenisei River. The North Asian forest-steppe of Western and Central Siberia can hence be considered a single entity in terms of species composition at the species pool level. Eastward from the Yenisei river, the species composition of both grasslands and forests changed suddenly, mirroring an important biogeographical boundary. Our results suggest that the forest-steppe zone should be viewed as a single biome that is characterized by an alteration of two compositionally and structurally distinct habitats, forest and grasslands, which, however, show similar patterns in terms of species pool size and local diversity.

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References

  • Anenkhonov OA, Korolyuk AYu (2011) Syntaxonomy and ecologo-geographical peculiarities of forest communities from the West Transbaikalian forest-steppe. In Otechestvennaia geobotanika: osnovnye vechi i perspektivy. Materialy Vserossiiskoi nauchnoi konferentcii s mezhdunarodnym uchastiem (Sankt-Peterburg, 20–24 sentiabria 2011). V. 1. Sankt-Peterburg 11–14 [in Russian]

  • Bray JR, Curtis JT (1957) An ordination of the upland forest of the Southern Wisconsin. Ecol Monogr 27:325–349

    Article  Google Scholar 

  • Cherepanov CK (1995) Higher vascular plants of Russia and contiguous countries. Sankt-Peterburg [in Russian]

  • Chytrý M, Danihelka J, Ermakov N, Hájek M, Hájková P, Kočí M, Kubešová S, Lustyk P, Otýpková Z, Popov D, Roleček J, Řezníčková M, Šmarda P, Valachovič M (2007) Plant species richness in continental southern Siberia: effects of pH and climate in the context of the species pool hypothesis. Global Ecol Biogeogr 16:668–678

    Article  Google Scholar 

  • Chytrý M, Danihelka J, Kubešová S, Lustyk P, Ermakov N, Hájek M, Hájková P, Kočí M, Otýpková Z, Roleček J, Řezníčková M, Šmarda P, Valachovič M, Popov D, Pišút I (2008) Diversity of forest vegetation across a strong gradient of climatic continentality: Western Sayan Mountains, southern Siberia Pl Ecol 196:61–83

    Article  Google Scholar 

  • Chytrý M, Ermakov N, Danihelka J, Hájek M, Hájková P, Horsák M, Koči M, Kubešová S, Lustyk P, Otýpková Z, Pelanková B, Valachovič M, Zelený D (2012) High species richness in hemiboreal forests of the northern Russian Altai, southern Siberia J Veg Sci 23:605–616

    Article  Google Scholar 

  • Chytrý M, Dražil T, Hájek M, Kalníková V, Preislerová Z, Šibík J, Ujházy K, Axmanová I, Bernátová D, Blanár D, Dančák M, Dřevojan P, Fajmon K, Galvánek D, Hájková P, Herben T, Hrivnák R, Janeček Š, Janišová M, Jiráská Š, Kliment J, Kochjarová J, Lepš J, Leskovjanská A, Merunková K, Mládek J, Slezák M, Šeffer J, Šefferová V, Škodová I, Uhlířová J, Ujházyová M, Vymazalová M (2015) The most species-rich plant communities in the Czech Republic and Slovakia (with new world records) Preslia 87:217–278

    Google Scholar 

  • Coop JD, Givnish TJ (2007) Gradient analysis of reversed treelines and grasslands of the Valles Caldera, New Mexico. J Veg Sci 18:43–54

    Article  Google Scholar 

  • Dengler J, Janišová M, Török P, Wellstein C (2014) Biodiversity of Palaearctic grasslands: a synthesis Agric Eco-Syst Environm 182:1–14

    Article  Google Scholar 

  • Dymina GD (1989) Materials for the floristic classification of West Siberian vegetation (Left bank of the Ob river in Novosibirsk area). Novosibirsk [in Russian]

  • Ermakov NB (2003) North Asian boreal vegetation diversity. Hemiboreal forests. Classification and ordination. Novosibirsk [in Russian]

  • Ermakov NB, Makunina NI, Maltseva TV (1997) Characteristics of four birch forest associations from forest-steppe between Ob’ and Tom’ rivers. Novosibirsk [in Russian]

  • Gorchakovskiy PL (1949) Taiga and forest-steppe birch forests from an area nearby Ob’ river In Sbornik trudov po lesnomu khoziaistvu. Sverdlovsk, pp 12–36 [in Russian]

  • Illyes E, Chytrý M, Botta-Dukát Z, Jandt U, Škodová I, Janišová M, Willner W, Hájek O (2007) Semi-dry grasslands along a climatic gradient across Central Europe: vegetation classification with validation. J Veg Sci 18:835–846

    Article  Google Scholar 

  • Janišová M, Michalcová D, Bacaro G, Ghisla A (2014) Landscape effects on diversity of semi-natural grasslands. Agric Eco-Syst Environm 182:47–58

    Article  Google Scholar 

  • Kleopov YD (1990) Analysis of the flora of the broadleaved forests in the European part of the USSR. Naukova Dumka. Kiev [in Russian]

  • Korolyuk AYu (1992) Large-scale vegetation mapping of Baraba lowland using aerophoto and space images. In Geobotanicheskoe kartografirovanie. Leningrad, pp 69–74 [in Russian]

  • Korolyuk AYu (1993) Syntaxonomy of West Siberian vegetation. 2. Meadow, steppe and forest vegetation. Novosibirsk [in Russian]

  • Korolyuk AYu (2014) Festuco-Brometea communities on West Siberian plain. Rastitel’n Rossii 25:45–70 [in Russian]

  • Krylov GV (1953) Birch forests from Tomsk area and their types. Novosibirsk [in Russian]

  • Kuminova AV (1960) Vegetation cover of Altai. Novosibirsk [in Russian]

  • Kuminova AV (1963) The main patterns of vegetation cover distribution in south-eastern part of the West Siberian plain. In Rastitel’nost’ stepnoi i lesostepnoi zon Zapadnoi Sibiri. Novosibirsk. Trudi CSBG. pp 7–34 [in Russian]

  • Kuminova AV, Zvereva GA, Maskaev JuM, Pavlova GG, Sedel'nikov VP, Koroleva AS, Nejjfel'd EhI, Tanzybaev MG, Chizhikova NM, Lamanova TG (1976) Vegetation of Khakassia. Novosibirsk

  • Kuminova AV, Sedel'nikov VP, Maskaev JuM, Shoba VA, Ershova EhA, Namzalov BB, Pavlova GG, Mal'ceva TV, Parshutina LP (1985) Vegetation of natural hayfields and pastures of Tuva ASSR. Novosibirsk

  • Lapshina EI (1963) Forest-steppe birch forests of the south-eastern part of the West Siberian plain. In Rastitel'nost stepnoi i lesostepnoi zon Zapadnoi Sibiri. Novosibirsk. Trudi CSBG. pp 103–130 [in Russian]

  • Lashchinskiy NN (2009) Vegetation of Salair ridge. Novosibirsk [in Russian]

  • Lashchinskiy NN, Makunina NI (2011) Vegetation. In Rastitel'nyi mir Karakanskogo khrebta. Novosibirsk, pp 15–32 [in Russian]

  • Lashchinskiy NN, Makunina NI, Pisarenko OYu, Gulyaeva AF (2011) Landscape-forming vegetation of the northern part of the Melafir horseshoe. In Rastitel’n Mir Aziatsk Rossii 2:85–99 [in Russian]

  • Lavrenko EM (2000) USSR steppes. In Izbrannie trudi. Sankt-Peterburg, pp 11–222 [in Russian]

  • Lavrenko EM, Sochava VB (eds) (1956) Vegetation cover of the USSR. Moskva–Leningrad. [in Russian]

  • Lavrenko EM et al. (1988) Botanico-geographica l and cartographical research in the Mongolian People’s Republic. In Prirodnye usloviia, rastitel'nyi pokrov i zhivotnyi mir Mongolii. Pushchino, pp 137–159 [in Russian]

  • Lavrenko EM, Karamysheva ZV, Nikulina RI (1991) Eurasian steppes. Leningrad [in Russian]

  • Liu H, Cui H, Pott R, Speier M (2000) Vegetation on the woodland-steppe transition at the southeastern edge of the Inner Mongolian Plateau. J Veg Sci 11:525–532

    Article  Google Scholar 

  • Makunina NI, Maltseva TV (2008) Vegetation of forest-steppe and subtaiga Altay-Sayan mountain system foothills. Sibirsk Bot Vestn, Elektronniy Zhurn 3:45–156 [in Russian]

  • Makunina NI, Korolyuk AYu, Maltseva TV (2010) Vegetation of Biysk-Chumysh mount. Rastitel’n Rossii 16:40–55 [in Russian]

  • Maximov AA (1989) Natural cycles (the reasons of the natural processes periodicity). Leningrad [in Russian]

  • Merunková K, Preislerová Z, Chytrý M (2012) White Carpathian grasslands: Can local ecological factors explain their extraordinary species richness? Preslia 84:311–325

    Google Scholar 

  • Michalcová D, Chytrý M, Pechanec V, Hájek O, Jongepier JW, Danihelka J, Grulich V, Šumberova K, Preislerova Z, Ghisla A, Bacaro G, Zelený D (2014) High plant diversity of grasslands in a landscape context: a comparison of contrasting regions in Central Europe. Folia Geobot 49:117–135

    Article  Google Scholar 

  • Mordkovich VG (1991) Invertebrate animals and the diagnostics of elementary soil processes. Pochvověděnie 10:92–99

    Google Scholar 

  • Namzalov BB (1994) Steppes of Southern Siberia. Novosibirsk-Ulan-Ude [in Russian]

  • Pärtel M, Bruun HH, Sammul M (2005) Biodiversity in temperate European grasslands: origin and conservation. In Lillak R, Viiralt R, Linke A, Geherman V (eds) Integrating efficient grassland farming and biodiversity Estonian Grassland Society, Tartu, pp 1–14

    Google Scholar 

  • Qian H, Klinka K, Kayahara GJ (1998) Longitudinal patterns of plant diversity in the North American boreal forest. Pl Ecol 138:161–178

    Article  Google Scholar 

  • Reshchikov MA (1961) West Transbaikalian steppes. Moscow [in Russian]

  • Roleček J, Čornej II, Tokarjuk AI (2014) Understanding the extreme species richness of semi-dry grasslands in east-central Europe: a comparative approach. Preslia 86:13–34

    Google Scholar 

  • Shmida A, Ellner S (1984) Coexistence of plant species with similar niches. Vegetatio 58:29–55

    Google Scholar 

  • Smagin VN, Il'inskaya SA, Nazimova DI, Cherednikova S et al. (1980) Forest types in the mountains of southern Siberia. Novosibirsk [in Russian]

  • Sørensen, T (1948) A new method of establishing groups of equal amplitude in plant sociology based on similarity of species content and its application to analysis of the vegetation on Danish commons. Biol Skr 5:1–34

    Google Scholar 

  • Taylor DR, Aarssen LW, Loehle C (1990) On the relationship between r/K selection and environmental carrying capacity: a new habitat templet for plant life history strategies. Oikos 58:239–250

    Article  Google Scholar 

  • Vandakurova EV (1950) Vegetation of Kulunda steppe. Novosibirsk [in Russian]

  • Voskresenskiy SS (1962) Siberian geomorphology, M. [in Russian]

  • Wang X, Fang J, Sanders NJ, White PS, Tang Z (2009) Relative importance of climate vs local factors in shaping the regional patterns of forest plant richness across northeast China. Ecography 32:133–142

    Article  CAS  Google Scholar 

  • Zemtsov AA, Miserov BV, Nikolaev VA, Suchodrovskiy VL, Beletskaya NP, Gritsenko AG, Pilkevich IV, Sinelnikov VA (1988) The relief of the West Siberian Plain. Novosibirsk [in Russian]

  • Zobel M (1992) Plant species coexistence: the role of historical, evolutionary and ecological factors. Oikos 65:314–320

    Article  Google Scholar 

  • Zobel M, van der Maarel E, Dupre C (1998) Species pool: the concept, its determination and significance for community restoration. Appl Veg Sci 1:55–66

    Article  Google Scholar 

  • Zverev AA (2007) Information technologies in vegetation cover investigations. Tomsk [in Russian]

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Acknowledgements

We are grateful to Milan Chytrý for helpful criticism and useful advises on the early stage of this work. We also thank the associate editor Michal Hájek and two anonymous referees for valuable comments on a previous version of the manuscript. This study was partly supported by RFBR (grant No. 16-05-00908).

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Correspondence to Nikolay Lashchinskiy.

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Plant nomenclature S.K. Cherepanov ( 1995 )

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Lashchinskiy, N., Korolyuk, A., Makunina, N. et al. Longitudinal changes in species composition of forests and grasslands across the North Asian forest steppe zone. Folia Geobot 52, 175–197 (2017). https://doi.org/10.1007/s12224-016-9268-6

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