4.6 Article

Cladocera Responses to the Climate-Forced Abrupt Environmental Changes Related to the Late Glacial/Holocene Transition

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WATER
卷 15, 期 2, 页码 -

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MDPI
DOI: 10.3390/w15020348

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subfossil Cladocera; high resolution; geochemistry; Late Glacial; Older Dryas; Allerod transition; Allerod; Younger Dryas transition; Younger Dryas; Holocene transition; Zabieniec mire

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This article traces rapid changes during the Late Glacial period using an analysis of subfossil Cladocera and various statistical methods. It reveals the shifts in water level, temperature, and species diversity during different periods. The high-resolution research provides more precise boundaries between stadials and interstadials and uncovers previously unidentified species in the sediment.
This article aims to trace in detail the periods of rapid changes during the Late Glacial period based on a subfossil Cladocera analysis and a palynological, geochemical, and statistical analysis. At the end of the Older Dryas, the water level in the reservoir was low, with quite cold waters and inconvenient conditions for developing Cladocera-dominated cold-tolerant species. The beginning of the Allerod is marked by increasing vegetation density and a rising water temperature, with favorable conditions for developing rare species. At its end, there was a large diversity of species, along with the quite deep and rather mesotrophic nature of the water body. The beginning of the Younger Dryas is a shift back to conditions similar to those noticed during the Older Dryas. The shift to Holocene is manifested by a rapid increase in the number of species and abundance of planktonic forms that appeared before the Holocene onset. The high resolution of the research (1 cm sampling) allowed us to set up more precisely the boundaries between the stadials and interstadials of the Late Glacial and to find some species which were found in the sediment earlier than in previous studies.

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