Temporal change in plant communities and its relationship to soil salinity and microtopography on the Caspian Sea coast

Author:

Klink Galya V.,Semenkov Ivan N.,Nukhimovskaya Yulia D.,Gasanova Zarema Ul.,Stepanova Nina Yu.,Konyushkova Maria V.

Abstract

AbstractThe gradual drying up of saltwater bodies creates habitats that are characterised by changing environmental conditions and might be available only for a subset of plants from the local flora. Using two terrestrial areas with different ages on the Caspian Coast as a chronosequence, we investigated factors including microtopography, ground water level and soil salinity that drive plant community succession after the retreat of the sea. Vegetation of the two key sites appearing after the retreat of the Caspian Sea about 365 and 1412 years ago were compared in terms of both evolutionary and ecological traits of plants. Both edaphic conditions and vegetation differed between the two sites with harsher edaphic conditions and more xerophytes on the elder site. Species that grew only in the ‘early’ site were dispersed across the phylogenetic tree, but their loss on the 'late' site was not random. Species that grew only on the 'late' site were phylogenetically clustered. On the level of microtopography, elevated spots were more densely populated in the ‘early’ site than lowered spots, but on the 'late' site the situation was opposite. The main edaphic factors that drive the difference in vegetation composition between the two sites are likely salinity and moisture. During environmental changes, different plant traits are important to survive and to appear in the community de novo. Microtopography is important for forming plant communities, and its role changes with time.

Funder

Russian Science Foundation

Russian Foundation for Basic Research

Ministry of Education and Science of the Russian Federation

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference65 articles.

1. Shomurodov, K. F. & Adilov, B. A. Current state of the flora of Vozrozhdeniya Island (Uzbekistan). Arid Ecosyst. 9, 97–103 (2019).

2. Adilov, B. et al. Transformation of vegetative cover on the Ustyurt Plateau of Central Asia as a consequence of the Aral Sea shrinkage. J. Arid Land 13, 71–87 (2020).

3. Kuz’mina, Z. V. & Treshkin, S. E. Soil salinization and dynamics of Tugai vegetation in the southeastern Caspian Sea region and in the Aral Sea coastal region. Eurasian Soil Sci. 30, 642–649 (1997).

4. Kuz’mina, Z. V., Shinkarenko, S. S. & Solodovnikov, D. A. Main tendencies in the dynamics of floodplain ecosystems and landscapes of the lower reaches of the Syr Darya river under modern changing conditions. Arid Ecosyst. 9, 226–236 (2019).

5. Dimeyeva, L. A. Phytogeography of the northeastern coast of the Caspian Sea: Native flora and recent colonizations. J. Arid Land 5, 439–451 (2013).

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