Full description
This dataset consists of two data files (spreadsheets) from a 15 days experiment simulating the combined effects of climate change (manipulated temperature and pCO2 from present days and predicted for 2050 and 2100) and diuron contamination. Photosynthetic parameters were used to evaluate the physiological responses of Halimeda opuntia. Endpoints related to photosynthesis have high ecological relevance, once this physiological process is pivotal for algae health and survival. PAM fluorometry is reliable tool to evaluate toxicological effects of PSII herbicides and many other toxicants and stressors. Photochemistry parameters derived from PAM fluorometry and the direct measurement of photosynthesis by oxygen production will enable an evaluation of the species fitness in response to multiple stressors, and contribute to the knowledge regarding risks posed by herbicides, and how contaminants toxicity thresholds are affected by future climate change scenarios. Methods: Fragments of the calcareous green algae Halimeda opuntia were collected from SeaSim mesoscosm tanks (MOS system, Evolution 21 Project, more information onData time period: 25 01 2018 to 09 02 2018
Link to NESP site for NESP TWQ Project 2.1.6
eAtlas Web Mapping Service (WMS) (AIMS)
url :
https://eatlas.org.au/data/uuid/71127e4d-9f14-4c57-9845-1dce0b541d8d![]()
Project web site
url :
https://eatlas.org.au/nesp-twq-2/gbr-cumulative-impacts-2-1-6![]()
Experiment datasets + Metadata + Photo [Zip 593 kB]
global : 75a5e5ae-dc02-4bf1-96ce-79a08719ed27
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NESP TWQ Project 2.1.6 - From exposure to risk: novel experimental approaches to analyze cumulative impacts and determine thresholds in the GBRWHA, 2016-2018 (AIMS)
raid :
10.82210/c3af8208![]()
- global : f3da9a0a-a9e3-49e3-a0c3-4c55ddb57988
