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Experiment on the effect of an interaction of heat and hypoosmotic stress on the growth and photosynthetic performance of tropical seagrass species Thalassia testudinum: shoot density

This study examined the response of tropical seagrass species Thalassia testudinum to a combination of heat and hypoosmotic stress. These two stressors are of major importance, as studies predict a rise in sea surface temperatures, as well as in increase in precipitation in the Caribbean region. Field-studies revealed the plant to exhibit a slow stress response to e.g. elevated temperatures and changes in salinity, however, they also showed the severity in changes in these factors. While in-situ observations allow for a good setting of treatment levels, there is a scarcity of in-culture experiments exposing T. testudinum to heat and osmotic stress, especially in combination. These experiments are essential to precisely delineate the effects and establish causality, thereby eliminating potential confounding factors. This in-culture experiment was performed in the culturing facilities of the GEOMAR building (54°19'48N 10°08'54E) using a culture of four T. testudinum clones. Plants were originally collected in 2017 from waters in front of the Smithsonian Tropical Research Institute in Bocas del Toro, Panama (9°21'04N 82°15'26W). Subsequently, they were cultivated in the GEOMAR culturing facilities under water temperatures of 28°C and salinities levels between 31-34. For the experiment, plants were replanted in February 2023 to fit a fully factorial experiment comprising all four clones crossed over four treatments: control (T=28°C; S=32.5), heat stress (T=34°C; S=32.5), hypoosmotic stress (T=28°C; S=27) and combined heat and hypoosmotic stress (T=34°C; S=27). Each treatment held three replicates (100 L aquaria), which in turn held two boxes of each clone with a starting number of two shoots each. Plants were given sufficient time to establish until overall net new growth in form of new shoot production was observed. After this initial establishment, a one week warming phase for heat treatments preceded the four-week stress period throughout August 2023, followed by cool-down phase and subsequently a total of six weeks recovery. During the stress period heat stress was a permanent stressor, while hypoosmotic stress was induced in pulsed salinity drops to simulated inflow events. For this, filtered (Aqua Medic Antiphos FE) water (50/50 VE and tap water) was added to the aquaria over two to three hours until the desired salinity of 27 was reached. The same water was used to refill evaporated water in the other treatments to keep salinity levels at 32.5. The total number of shoots of T. testudinum was counted at the start and at the end of the stress period, as well as after three and six weeks of recovery. This was done per replicate (aquaria) per treatment, meaning that the total number of shoots per clone within one replicate (total number of shoots of two boxes) was noted down. This was done to detect changes in shoot density when comparing treatments.

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Cite this as

Csenteri, Katharina, Reusch, Thorsten B H, Willim, Jana, Provera, Isabella (2024). Dataset: Experiment on the effect of an interaction of heat and hypoosmotic stress on the growth and photosynthetic performance of tropical seagrass species Thalassia testudinum: shoot density. https://doi.org/10.1594/PANGAEA.971297

DOI retrieved: 2024

Additional Info

Field Value
Imported on November 30, 2024
Last update November 30, 2024
License CC-BY-4.0
Source https://doi.org/10.1594/PANGAEA.971297
Author Csenteri, Katharina
Given Name Katharina
Family Name Csenteri
More Authors
Reusch, Thorsten B H
Willim, Jana
Provera, Isabella
Source Creation 2024
Publication Year 2024
Resource Type text/tab-separated-values - filename: Exp_T_testudinum_shoot_density
Subject Areas
Name: Atmosphere

Related Identifiers
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Identifier: https://doi.org/10.1594/PANGAEA.971299
Type: DOI
Relation: References
Year: 2024
Authors: Campbell Jayaka D , Taylor Michael A , Stephenson Tannecia S , Watson Rhodene A , Whyte Felicia S , Csenteri Katharina , Reusch Thorsten B H , Willim Jana , Provera Isabella , Csenteri Katharina , Reusch Thorsten B H , Willim Jana , Provera Isabella , Glenn Equisha , Comarazamy Daniel , González Jorge E , Smith Thomas M , Restrepo Juan Camilo , Ortíz Juan Carlos , Pierini Jorge , Schrottke Kerstin , Maza Mauro , Otero Luís , Aguirre Julián , Stephenson Tannecia S , Vincent Lucie , Allen Theodore , Van Meerbeeck C J , McLean Natalie , Peterson Thomas C , Taylor Michael A , Aaron‐Morrison Arlene P , Auguste Thomas , Bernard Didier , Boekhoudt Joffrey R I , Blenman Rosalind C , Braithwaite George C , Brown Glenroy , Butler Mary , Cumberbatch Catherine J M , Etienne‐Leblanc Sheryl , Lake Dale E , Martin Delver E , McDonald Joan L , Ozoria Zaruela Maria , Porter Avalon O , Santana Ramirez Mayra , Tamar Gerard A , Roberts Bridget A , Sallons Mitro Sukarni , Shaw Adrian , Spence Jacqueline M , Winter Amos , Trotman Adrian R .

Title: Experiment on the effect of an interaction of heat and hypoosmotic stress on the growth and photosynthetic performance of tropical seagrass species Thalassia testudinum: photosynthetic performance
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