Phytoplankton Diversity and Blooms in Ephemeral Saline Lakes of Cyprus

Author:

Polykarpou Polina12,Katsiapi Matina34,Genitsaris Savvas5ORCID,Stefanidou Natassa4ORCID,Dörflinger Gerald2ORCID,Moustaka-Gouni Maria4,Economou-Amilli Athena5,Raitsos Dionysios E.1ORCID

Affiliation:

1. Section of Zoology—Marine Biology, School of Biology, National & Kapodistrian University of Athens, Zografou Campus, 15784 Athens, Greece

2. Water Development Department, 100-110 Kennedy Avenue, 1047 Pallouriotissa, 1646 Nicosia, Cyprus

3. Thessaloniki Water Supply & Sewerage Co. S.A., 54622 Thessaloniki, Greece

4. Department of Botany, School of Biology, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece

5. Section of Ecology & Taxonomy, School of Biology, National & Kapodistrian University of Athens, Zografou Campus, 15784 Athens, Greece

Abstract

The ephemeral saline lakes of Cyprus in the Mediterranean, situated in close proximity to each other, demonstrate pronounced seasonal and interannual fluctuations in their environmental conditions. Despite their extreme saline conditions, these lakes support phytoplankton diversity and bloom-forming species. Anthropogenic activities, particularly urban and artificial land uses within their catchments, contribute to eutrophication, warranting conservation attention within the context of European legislation. Over two years (2018–2019), we examined phytoplankton abundance and diversity alongside salinity in six lakes, with samples collected every three weeks. Chlorophytes were the dominant and most diverse group, followed by cyanobacteria and diatoms. Increasing salinity correlated with reduced compositional diversity and species richness. The proximity of lakes to each other suggested airborne microbe colonization from one lake to another as a significant factor in shaping these communities, while similar land use within each lake’s catchment impacted bloom formation. The highly halotolerant chlorophyte Dunaliella frequently dominated phytoplankton blooms, occasionally coexisting with other taxa in less saline lakes. Our findings provide insight into the phytoplankton community dynamics in temporal saline lakes, essential for developing effective conservation strategies and sustainable management practices.

Publisher

MDPI AG

Subject

Nature and Landscape Conservation,Agricultural and Biological Sciences (miscellaneous),Ecological Modeling,Ecology

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