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Cnidarian MetaG method development
Coral bleaching has devastating effects on coral survival and reef ecosystem function, but many of the fundamental cellular effects of thermal stress on cnidarian physiology are unclear. We used label-free liquid chromatography-tandem mass spectrometry to assess the effects of high temperatures on t...
ORGANISM(S): Aiptasia 
2018-03-14 | PXD004257 | Pride
Assembled cnidarian transcriptomes
Decoding cnidarian cell type gene regulation
Coral reef ecosystems are metabolically founded on the mutualism between corals and photosynthetic dinoflagellates of the genus Symbiodinium. The glass anemone Aiptasia sp. has become a tractable model for this symbiosis. We utilized label-free liquid chromatography electrospray-ionization tandem ma...
ORGANISM(S): Aiptasia pulchella (Tropical sea anemone) 
2017-02-22 | PXD003202 | Pride
Transcriptomic analyses of a cnidarian colonized by native or non-native Symbiodinium species
The Hydractinia cell atlas reveals cellular and molecular principles of cnidarian coloniality
Transcriptional comparison between symbiotic and non-symbiotic (bleached) sea anemones Anemonia viridis were analysed in several specimens. We generated an oligonucleotide microarray (2000 selected features), which is to date the only available oligonucleotide array for symbiotic cnidarians. We were...
ORGANISM(S): Anemonia viridis 
Background: Cnidarian – dinoflagellate intracellular symbioses are one of the most important mutualisms in the marine environment. They form the trophic and structural foundation of coral reef ecosystems, and have played a key role in the evolutionary radiation and biodiversity of cnidarian species....
ORGANISM(S): Anthopleura elegantissima 
2006-02-21 | GSE3958 | GEO
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