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Saha, Mahasweta; Al-Janabi, Balsam; Beck, Miriam; Brakel, Janina; Ito, Maysa; Nascimento Schulze, Jennifer C; Jakobsson-Thor, Stina; Weinberger, Florian; Sawall, Yvonne (2019): Heatwave experiment in Kiel Outdoor Benthocosms, 2015: dataset for Fucus vesiculosus and Zostera marina response variables. PANGAEA, https://doi.org/10.1594/PANGAEA.904644, Supplement to: Saha, Mahasweta; Barboza, Francisco R; Somerfield, Paul J; Al-Janabi, Balsam; Beck, Miriam; Brakel, Janina; Ito, Maysa; Pansch, Christian; Nascimento Schulze, Jennifer C; Jakobsson-Thor, Stina; Weinberger, Florian; Sawall, Yvonne (2020): Response of foundation macrophytes to near‐natural simulated marine heatwaves. Global Change Biology, 26(2), 417-430, https://doi.org/10.1111/gcb.14801

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Abstract:
13 response variable have been measured for Fucus vesiculosus and Zostera marina.
Year: 2015
Where: Kiel Outdoor Benthocosm
Treatments:
- Co (0HW) = ambient treatment with no heatwaves
- 1HW = one summer heatwave
- 3HWs = three heatwaves, 2 spring/early summer heatwaves
After 3HW means end of the experiment.
Keyword(s):
Antibacterial defence; Antigrazing defence; Anti-Labyrinthula defence; Epibacteria; Fucus vesiculosus; Germlings; growth; Labyrinthula abundance; Leaf production; Lesions; Photosynthesis; Respiration; Survival; Zostera marina
Coverage:
Latitude: 54.330000 * Longitude: 10.150000
Comment:
Traits (with abbreviations for functional groups):
Adult body size: S < 1mm, M 1–10mm, L 10–100mm, XL 100–1000mm, XXL > 1000mm
Growth form: E encrusting, M massive, B bushy, F filamentous
Mode of energy acquisition: A autotroph, P predator, S suspension feeder, D deposit feeder, G grazer, H heterotrophs
Reproduction: S solitary, C colonial
Size:
10 datasets

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Datasets listed in this publication series

  1. Al-Janabi, B; Nascimento Schulze, JC (2019): Heatwave experiment in Kiel Outdoor Benthocosms, 2015: Survival and growth rate of Fucus vesiculosus germlings. https://doi.org/10.1594/PANGAEA.904643
  2. Brakel, J (2019): Heatwave experiment in Kiel Outdoor Benthocosms, 2015: Labyrinthula zosterae abundance in eelgrass tissue. https://doi.org/10.1594/PANGAEA.904627
  3. Jakobsson-Thor, S (2019): Heatwave experiment in Kiel Outdoor Benthocosms, 2015: Defense capacity of Zostera marina extracts against Labyrinthula zosterae. https://doi.org/10.1594/PANGAEA.904629
  4. Saha, M; Wahl, M (2019): Heatwave experiment in Kiel Outdoor Benthocosms, 2015: consumption of pelleted Fucus vesiculosus. https://doi.org/10.1594/PANGAEA.904624
  5. Saha, M; Wahl, M (2019): Heatwave experiment in Kiel Outdoor Benthocosms, 2015: growth of Fucus vesiculosus during HW3. https://doi.org/10.1594/PANGAEA.904625
  6. Saha, M (2019): Heatwave experiment in Kiel Outdoor Benthocosms, 2015: Relative bacterial abundance on the surface of Fucus vesiculosus. https://doi.org/10.1594/PANGAEA.904642
  7. Saha, M (2019): Heatwave experiment in Kiel Outdoor Benthocosms, 2015: antibacterial defence of Fucus vesiculosus. https://doi.org/10.1594/PANGAEA.904641
  8. Sawall, Y; Ito, M (2019): Heatwave experiment in Kiel Outdoor Benthocosms, 2015: respiration and gross photosynthesis of Zostera marina. https://doi.org/10.1594/PANGAEA.904632
  9. Sawall, Y (2019): Heatwave experiment in Kiel Outdoor Benthocosms, 2015: growth and leaf production of Zostera marina. https://doi.org/10.1594/PANGAEA.904623
  10. Weinberger, F; Brakel, J; Christ, R (2019): Heatwave experiment in Kiel Outdoor Benthocosms, 2015: Zostera marina leaves with lesions. https://doi.org/10.1594/PANGAEA.904637