Differential stability of photosynthetic membranes and fatty acid composition at elevated temperature in Symbiodinium

Coral reefs are threatened by increasing surface seawater temperatures resulting from climate change. Reef-building corals symbiotic with dinoflagellates in the genus Symbiodinium experience dramatic reductions in algal densities when exposed to temperatures above the long-term local summer average,...

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Published inCoral reefs Vol. 30; no. 1; pp. 217 - 225
Main Authors Díaz-Almeyda, E, Thomé, P. E, El Hafidi, M, Iglesias-Prieto, R
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Berlin/Heidelberg : Springer-Verlag 01.03.2011
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Abstract Coral reefs are threatened by increasing surface seawater temperatures resulting from climate change. Reef-building corals symbiotic with dinoflagellates in the genus Symbiodinium experience dramatic reductions in algal densities when exposed to temperatures above the long-term local summer average, leading to a phenomenon called coral bleaching. Although the temperature-dependent loss in photosynthetic function of the algal symbionts has been widely recognized as one of the early events leading to coral bleaching, there is considerable debate regarding the actual damage site. We have tested the relative thermal stability and composition of membranes in Symbiodinium exposed to high temperature. Our results show that melting curves of photosynthetic membranes from different symbiotic dinoflagellates substantiate a species-specific sensitivity to high temperature, while variations in fatty acid composition under high temperature rather suggest a complex process in which various modifications in lipid composition may be involved. Our results do not support the role of unsaturation of fatty acids of the thylakoid membrane as being mechanistically involved in bleaching nor as being a dependable tool for the diagnosis of thermal susceptibility of symbiotic reef corals.
AbstractList Coral reefs are threatened by increasing surface seawater temperatures resulting from climate change. Reef-building corals symbiotic with dinoflagellates in the genus Symbiodinium experience dramatic reductions in algal densities when exposed to temperatures above the long-term local summer average, leading to a phenomenon called coral bleaching. Although the temperature-dependent loss in photosynthetic function of the algal symbionts has been widely recognized as one of the early events leading to coral bleaching, there is considerable debate regarding the actual damage site. We have tested the relative thermal stability and composition of membranes in Symbiodinium exposed to high temperature. Our results show that melting curves of photosynthetic membranes from different symbiotic dinoflagellates substantiate a species-specific sensitivity to high temperature, while variations in fatty acid composition under high temperature rather suggest a complex process in which various modifications in lipid composition may be involved. Our results do not support the role of unsaturation of fatty acids of the thylakoid membrane as being mechanistically involved in bleaching nor as being a dependable tool for the diagnosis of thermal susceptibility of symbiotic reef corals.
Coral reefs are threatened by increasing surface seawater temperatures resulting from climate change. Reef-building corals symbiotic with dinoflagellates in the genus Symbiodinium experience dramatic reductions in algal densities when exposed to temperatures above the long-term local summer average, leading to a phenomenon called coral bleaching. Although the temperature-dependent loss in photosynthetic function of the algal symbionts has been widely recognized as one of the early events leading to coral bleaching, there is considerable debate regarding the actual damage site. We have tested the relative thermal stability and composition of membranes in Symbiodinium exposed to high temperature. Our results show that melting curves of photosynthetic membranes from different symbiotic dinoflagellates substantiate a species-specific sensitivity to high temperature, while variations in fatty acid composition under high temperature rather suggest a complex process in which various modifications in lipid composition may be involved. Our results do not support the role of unsaturation of fatty acids of the thylakoid membrane as being mechanistically involved in bleaching nor as being a dependable tool for the diagnosis of thermal susceptibility of symbiotic reef corals.
Coral reefs are threatened by increasing surface seawater temperatures resulting from climate change. Reef-building corals symbiotic with dinoflagellates in the genus Symbiodinium experience dramatic reductions in algal densities when exposed to temperatures above the long-term local summer average, leading to a phenomenon called coral bleaching. Although the temperature-dependent loss in photosynthetic function of the algal symbionts has been widely recognized as one of the early events leading to coral bleaching, there is considerable debate regarding the actual damage site. We have tested the relative thermal stability and composition of membranes in Symbiodinium exposed to high temperature. Our results show that melting curves of photosynthetic membranes from different symbiotic dinoflagellates substantiate a species-specific sensitivity to high temperature, while variations in fatty acid composition under high temperature rather suggest a complex process in which various modifications in lipid composition may be involved. Our results do not support the role of unsaturation of fatty acids of the thylakoid membrane as being mechanistically involved in bleaching nor as being a dependable tool for the diagnosis of thermal susceptibility of symbiotic reef corals. [PUBLICATION ABSTRACT]
Author Thomé, P. E
Iglesias-Prieto, R
El Hafidi, M
Díaz-Almeyda, E
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Issue 1
Keywords Thermal stress
Coral bleaching
Fatty acid desaturation
Symbiotic dinoflagellates
Symbiosis
Protozoa
Temperature
Stability
Algae
Lipids
Coral reef
Fatty acids
Stress
Ecological damage
Dinophyta
Photosynthesis
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PublicationSubtitle Journal of the International Society for Reef Studies
PublicationTitle Coral reefs
PublicationTitleAbbrev Coral Reefs
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Snippet Coral reefs are threatened by increasing surface seawater temperatures resulting from climate change. Reef-building corals symbiotic with dinoflagellates in...
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StartPage 217
SubjectTerms Animal and plant ecology
Animal, plant and microbial ecology
Applied ecology
Aquatic life
Biological and medical sciences
Biomedical and Life Sciences
Climate change
Conservation, protection and management of environment and wildlife
Coral bleaching
Coral reefs
Environmental degradation: ecosystems survey and restoration
Fatty acid desaturation
Fatty acids
Freshwater & Marine Ecology
Fundamental and applied biological sciences. Psychology
High temperature
Life Sciences
Membranes
Ocean temperature
Oceanography
Photosynthesis
Sea water ecosystems
Seawater
Symbiodinium
Symbiosis
Symbiotic dinoflagellates
Synecology
Thermal stress
Water temperature
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Title Differential stability of photosynthetic membranes and fatty acid composition at elevated temperature in Symbiodinium
URI https://link.springer.com/article/10.1007/s00338-010-0691-5
https://www.proquest.com/docview/848690991
https://www.proquest.com/docview/1999912897
https://www.proquest.com/docview/885050101
Volume 30
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