from 28 settembre 2026 to 2 ottobre 2026
Department of Agricultural Sciences of the University of Napoli Federico II, Portici, Italy
Europe/Rome timezone

Near-future warming amplifies natural heatwave impacts and reorganizes freshwater communities

30 set 2026, 11:45
15m
Sala Cinese (Department of Agricultural Sciences of the University of Napoli Federico II, Portici, Italy)

Sala Cinese

Department of Agricultural Sciences of the University of Napoli Federico II, Portici, Italy

Piazza Carlo di Borbone, 1, 80055, Portici (NA), Italia

Speaker

Ms. Sara Nouere (Institute of Organismic and Molecular Evolution (iomE), Johannes Gutenberg University Mainz, Mainz 55128, Germany)

Description

Future climate change may reshape ecological communities not only by increasing mean temperature, but also by altering the consequences of increasingly frequent heatwaves. Predicting these effects requires understanding how background warming interacts with short heatwaves in natural communities, where responses can arise through direct thermal stress and species interactions. We tested this using 32 outdoor freshwater mesocosms exposed to sustained near-future warming while capturing a documented natural heatwave. Warming raised temperature maxima that exceeded the thermal threshold of the pond snail, a main grazer in the community. Warmed communities showed lower grazer abundance, increased macrophyte and insect herbivore abundance, reduced phytoplankton biomass, and lower zooplankton density. Complementary assays showed that heatwave-level temperatures promoted macrophyte growth and reduced grazer survival, whereas reduced zooplankton performance mainly reflected indirect warming effects via food-web cascades. Thus, near-future warming can amplify natural heatwave impacts by exceeding consumer thermal thresholds and propagating through species interactions.

Keywords

climate warming; heatwave; freshwater community

References

No references

Corresponding author email shuqing.xu@uni-mainz.de
Scientific Session Ecology & Diversity

Primary author

Ms. Sara Nouere (Institute of Organismic and Molecular Evolution (iomE), Johannes Gutenberg University Mainz, Mainz 55128, Germany)

Co-authors

Dr. Martin Schäfer (Institute of Organismic and Molecular Evolution (iomE), Johannes Gutenberg University Mainz, Mainz 55128, Germany) Mr. Guangqiong Li (Institute of Organismic and Molecular Evolution (iomE), Johannes Gutenberg University Mainz, Mainz 55128, Germany) Dr. Martin Lohr (Institute for Molecular Physiology, Johannes Gutenberg University Mainz, Mainz 55128, Germany) Prof. Dieter Ebert (Department of Environmental Sciences, Zoology, University of Basel, Basel 4051, Switzerland) Prof. Shuqing Xu (Institute of Organismic and Molecular Evolution (iomE), Johannes Gutenberg University Mainz, Mainz 55128, Germany)

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