Automated Author ProfileStiasny, Martina H
0000-0001-6365-2610
Stiasny, Martina H
Current S-Index
Sum of Dataset Indices for all datasets
Average Dataset Index per Dataset
Average Dataset Index per dataset
Total Datasets
Total datasets for this author
Average FAIR Score
Average FAIR Score per dataset
Total Citations
Total citations to the author's datasets
Total Mentions
Total mentions of the author's datasets
S-Index Interpretation
The S-Index (Sharing Index) is a comprehensive metric that represents the cumulative impact of all your datasets. It is calculated as the sum of Dataset Index scores across all your claimed datasets.
What it means:
- A higher S-index indicates greater overall impact of your datasets relative to typical datasets in their fields of research
- The S-Index grows as you add more datasets or as existing datasets gain more citations and mentions
- It provides a single number to track your research data impact over time
Current S-Index: 8.3 (sum of 16 datasets Dataset Index scores)
More information here.
S-Index Over Time
Cumulative Citations Over Time
Cumulative Mentions Over Time
Datasets
Ocean acidification—the decrease in seawater pH due to rising CO2 concentrations—has been shown to lower survival in early life stages of fish and, as a consequence, the recruitment of populations including commercially important species. To date, ocean-acidification studies with fish larvae have focused on the direct physiological impacts of elevated CO2 , but largely ignored the potential effects of ocean acidification on food web interactions. In an in situ mesocosm study on Atlantic herring (Clupea harengus) larvae as top predators in a pelagic food web, we account for indirect CO2 effects on larval survival mediated by changes in food availability. The community was exposed to projected end-of-the-century CO2 conditions (~760 µatm pCO2 ) over a period of 113 days. In contrast with laboratory studies that reported a decrease in fish survival, the survival of the herring larvae in situ was significantly enhanced by 19 ± 2%. Analysis of the plankton community dynamics suggested that the herring larvae benefitted from a CO2 -stimulated increase in primary production. Such indirect effects may counteract the possible direct negative effects of ocean acidification on the survival of fish early life stages. These findings emphasize the need to assess the food web effects of ocean acidification on fish larvae before we can predict even the sign of change in fish recruitment in a high-CO2 ocean.
Authors
- Sswat, Michael ;
- Stiasny, Martina H ;
- Taucher, Jan ;
- Algueró-Muñiz, Maria ;
- Bach, Lennart Thomas ;
- Jutfelt, Fredrik ;
- Riebesell, Ulf ;
- Clemmesen, Catriona
Ocean acidification (OA), a direct consequence of increasing atmospheric CO2 concentration dissolving in ocean waters, is impacting many fish species. Little is known about the molecular mechanisms underlying the observed physiological impacts in fish. We used RNAseq to characterize the transcriptome of 3 different larval stages of Atlantic cod (Gadus morhua) exposed to simulated OA at levels (1179 µatm CO2) representing end-of-century predictions compared to controls (503 µatm CO2), which were shown to induce tissue damage and elevated mortality in G. morhua. Only few genes were differentially expressed in 6 and 13 days-post-hatching (dph) (3 and 16 genes, respectively), during a period when maximal mortality as a response to elevated pCO2 occurred. At 36 dph, 1413 genes were differentially expressed, most likely caused by developmental asynchrony between the treatment groups, with individuals under OA growing faster. A target gene analysis revealed only few genes of the universal and well-defined cellular stress response to be differentially expressed. We thus suggest that predicted ocean acidification levels constitute a “stealth stress” for early Atlantic cod larvae, with a rapid breakdown of cellular homeostasis leading to organismal death that was missed even with an 8-fold replication implemented in this study.
Authors
- Mittermayer, Felix H ;
- Stiasny, Martina H ;
- Clemmesen, Catriona ;
- Bayer, Till ;
- Puvanendran, Velmurugu ;
- Chierici, Melissa ;
- Jentoft, Sissel ;
- Reusch, Thorsten B H
No description available
Authors
- Sswat, Michael ;
- Stiasny, Martina H ;
- Jutfelt, Fredrik ;
- Clemmesen, Catriona
No description available
Authors
- Sswat, Michael ;
- Stiasny, Martina H ;
- Jutfelt, Fredrik ;
- Clemmesen, Catriona
No description available
Authors
- Sswat, Michael ;
- Stiasny, Martina H ;
- Jutfelt, Fredrik ;
- Clemmesen, Catriona
No description available
Authors
- Sswat, Michael ;
- Stiasny, Martina H ;
- Jutfelt, Fredrik ;
- Clemmesen, Catriona
No description available
Authors
- Sswat, Michael ;
- Stiasny, Martina H ;
- Jutfelt, Fredrik ;
- Clemmesen, Catriona
Exposure of larvea from Atlantic cod ( Gadus morhua) to predicted end-of-century ocean acidification levels. Dry weight was measured at 5 and 15 days-post-hatchFor information on the experimental set-up please consult the material and methods section and the supplementary material.
Authors
- Mittermayer, Felix H ;
- Stiasny, Martina H ;
- Clemmesen, Catriona ;
- Bayer, Till ;
- Puvanendran, Velmurugu ;
- Chierici, Melissa ;
- Jentoft, Sissel ;
- Reusch, Thorsten B H
No description available
Authors
- Stiasny, Martina H ;
- Mittermayer, Felix H ;
- Göttler, Gwendolin ;
- Bridges, Christopher R ;
- Falk-Petersen, Stig ;
- Puvanendran, Velmurugu ;
- Mortensen, Atle ;
- Reusch, Thorsten B H ;
- Clemmesen, Catriona
No description available
Authors
- Stiasny, Martina H ;
- Mittermayer, Felix H ;
- Göttler, Gwendolin ;
- Bridges, Christopher R ;
- Falk-Petersen, Stig ;
- Puvanendran, Velmurugu ;
- Mortensen, Atle ;
- Reusch, Thorsten B H ;
- Clemmesen, Catriona