Published

Temporal dynamics of heatwaves are key drivers of sediment mixing by bioturbators Version 4

Royal Netherlands Institute for Sea Research https://doi.org/10.25850/nioz/7b.b.7d

Heatwaves affect tidal flat ecosystems by altering the bioturbating behavior of benthic species, with potential consequences for sediment oxygenation, particle mixing, and erodibility. Although the frequency and duration of heatwaves are expected to increase under global warming scenarios, we lack insights into how heatwaves' temporal dynamics affect bioturbating behaviors. Using the widely distributed bioturbator Cerastoderma edule as model species, we quantified how heatwaves with identical heat-sum but different temporal dynamics (i.e., 3-day vs. 6-day heating and normal temperature cycles) affect bioturbating behaviors and the sediment mixing processes in tidal mesocosms. Our results show that short but frequent 3-day heatwave cycles increased the magnitude of bioturbating behaviors, thereby resulting in more bio-mixed sediment than observed under infrequent prolonged 6-day heatwave cycles. This unexpected result could be ascribed to the weakening health condition indicated by a high death rate (47.37%) under 6-day heatwave cycles than in 3-day and no-heatwave control cycles. Present findings reveal that the impact of heatwaves on sediment bioturbation will strongly depend on the temporal dynamics of future heatwaves: bioturbation will be enhanced unless the heatwave duration exceeds species resistance and increases mortality.

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Additional Info

Field Value
Subject Earth and Environmental Sciences
DAS Code 7b.b.7d
Source https://dataportal.nioz.nl/doi/10.25850/nioz/7b.b.7d
Version 4
Creator(s)
Zhou, Zhengquan (Royal Netherlands Institute for Sea Research)
ORCID
Contact the corresponding author
Depositor Zhengquan Zhou
Publication Date 2023-02-21
Deposit Date 2023-02-21
Dataset Persistent Identifier DOI:10.25850/nioz/7b.b.7d
Alternate identifier
Related identifier
Contributor NIOZ Royal Netherlands Institute for Sea Research
Distributor Research Data Management(NIOZ Royal Netherlands Institute for Sea Research)
Distribution Date 2023-02-21
Production Date 2023-02-21
Dates
Funding References
The Dutch Research Council (NWO) (NWA.1418.20.04)
Extreme droughts and the Dutch water sector: impacts and adaptation

PSA (PSA-SA-E-02)
“Coping with deltas in transition” within the Programme of Strategic Scientific Alliances between China and the Netherlands

China Scholarship Counc (201804910683)
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