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Toxicity and Starvation Induce Major Trophic Isotope Variation in Daphnia Individuals : A Diet Switch Experiment Using Eight Phytoplankton Species of Differing Nutritional Quality

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2022

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Biology. MDPI. 2022, 11(12), 1816. eISSN 2079-7737. Available under: doi: 10.3390/biology11121816

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Stable isotope values can express resource usage by organisms, but their precise interpretation is predicated using a controlled experiment-based validation process. Here, we develop a stable isotope tracking approach towards exploring resource shifts in a key primary consumer species Daphnia magna. We used a diet switch experiment and model fitting to quantify the stable carbon (δ 13C) and nitrogen (δ 15N) isotope turnover rates and discrimination factors for eight dietary sources of the plankton species that differ in their cellular organization (unicellular or filamentous), pigment and nutrient compositions (sterols and polyunsaturated fatty acids), and secondary metabolite production rates. We also conduct a starvation experiment. We evaluate nine tissue turnover models using Akaike’s information criterion and estimate the repetitive trophic discrimination factors. Using the parameter estimates, we calculate the hourly stable isotope turnover rates. We report an exceedingly faster turnover value following dietary switching (72 to 96 h) and a measurable variation in trophic discrimination factors. The results show that toxic stress and the dietary quantity and quality induce trophic isotope variation in Daphnia individuals. This study provides insight into the physiological processes that underpin stable isotope patterns. We explicitly test multiple alternative dietary sources and fasting and discuss the parameters that are fundamental for field- and laboratory-based stable isotope studies.

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570 Biowissenschaften, Biologie

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stable isotopes; cyanobacteria; turnover-rates; discrimination factor; Planktothrix; δ13C; δ15N

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ISO 690HELMER, Michelle, Desiree HELMER, Dominik MARTIN-CREUZBURG, Karl-Otto ROTHHAUPT, Elizabeth YOHANNES, 2022. Toxicity and Starvation Induce Major Trophic Isotope Variation in Daphnia Individuals : A Diet Switch Experiment Using Eight Phytoplankton Species of Differing Nutritional Quality. In: Biology. MDPI. 2022, 11(12), 1816. eISSN 2079-7737. Available under: doi: 10.3390/biology11121816
BibTex
@article{Helmer2022-12-14Toxic-59518,
  year={2022},
  doi={10.3390/biology11121816},
  title={Toxicity and Starvation Induce Major Trophic Isotope Variation in Daphnia Individuals : A Diet Switch Experiment Using Eight Phytoplankton Species of Differing Nutritional Quality},
  number={12},
  volume={11},
  journal={Biology},
  author={Helmer, Michelle and Helmer, Desiree and Martin-Creuzburg, Dominik and Rothhaupt, Karl-Otto and Yohannes, Elizabeth},
  note={Deutsche Forschungsgemeinschaft (DFG, German Research Foundation, 298726046/GRK2272). Article Number: 1816}
}
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Deutsche Forschungsgemeinschaft (DFG, German Research Foundation, 298726046/GRK2272).
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