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Tuzun, N.

Publications and source records attributed to Tuzun, N..

2 recordsLinked to original sources

Artificial light at night intensifies effects of a parasitic flatworm on the water flea Daphnia magna

Artificial light at night (ALAN) can strongly alter organismal traits, but its role in shaping species interactions remains poorly understood, especially so in aquatic ecosystems. By capitalizing on a recently discovered antagonistic interaction between a brood-parasitic flatworm and Daphnia magna water fleas, we tested whether this interaction depends on exposure to ALAN. During a 19-day laboratory population growth experiment, we manipulated flatworm presence and nighttime light conditions in a full-factorial design. We confirmed the negative effects of flatworm predation on Daphnia abundance at the population level. Importantly, we showed that the flatworm-caused decrease in Daphnia abundance under ALAN (81%) was twice as strong compared to dark-night conditions (39%). Our findings are relevant for assessing the impact of ALAN on the development of Daphnia populations and thus top-down control of phytoplankton. Freshwater ecosystems in urbanized areas, where this parasitic interaction was first encountered, may be especially at risk, as these are typically exposed to high levels of stress factors, including light pollution.

ecology↗

Tiny killers: first record of rhabdocoel flatworms feeding on water flea embryos

Flatworms are increasingly recognized for their ecological significance and potential to disrupt local fauna, yet most research has focused on conspicuous, larger planarians. Smaller flatworms, or microturbellarians, are often top predators within meiofaunal food webs. Here, we report a novel interaction involving a rhabdocoel microturbellarian, Strongylostoma simplex, predating on Daphnia water flea embryos. We identified the flatworm based on histological serial sections and recognized key diagnostic traits. In a laboratory experiment, we tested for survival and offspring production of Daphnia magna in the presence and absence of Strongylostoma simplex. Exposure to flatworms caused a drastic reduction in water flea fitness, indicated by the strongly reduced survival and offspring production in flatworm-exposed Daphnia. This finding corroborates our visual observations of egg predation by these flatworms, and suggests a strong pressure on Daphnia population dynamics. This is particularly concerning for small or isolated water bodies, such as the water reservoirs located in a cemetery in Berlin in which we documented this interaction, as this would increase the probability of encounters between flatworms and water fleas. As Daphnia play an essential role in regulating phytoplankton blooms and supporting higher trophic levels in freshwater ecosystems, understanding the ecological consequences of potentially invasive predatory flatworms is imperative.

ecology↗