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The declining health of coral reefs worldwide is likely to intensify in response to continued anthropogenic disturbance from coastal development, pollution, and climate change. In response to these stresses, reef-building corals may exhibit bleaching, which marks the breakdown in symbiosis between ...
ORGANISM(S): Montastraea faveolata 
The declining health of coral reefs worldwide is likely to intensify in response to continued anthropogenic disturbance from coastal development, pollution, and climate change. In response to these stresses, reef-building corals may exhibit bleaching, which marks the breakdown in symbiosis between ...
ORGANISM(S): Montastraea faveolata 
We used the Illumina RNAseq approach to study the effects of acute exposure to elevated CO2 on gene expression in primary polyps of Acropora millepora Examination of transcriptome in Acropora millepora primary polyps at 380, 750 and 1000 ppm CO2 after 3 days exposure
ORGANISM(S): Acropora millepora 
Increasing seawater’s calcium concentration has shown to increase reef building (scleractinian) coral’s calcification rates. In this way the expression of the genes that are associated with the calcification process also altered and, thus can be identified. Needless to say that the overall gene repe...
ORGANISM(S): Stylophora pistillata 
2017-06-29 | GSE87159 | GEO
This SuperSeries is composed of the following subset Series: GSE10630: Mfaveolata single-time point bleaching experiment GSE10632: Mfaveolata time course bleaching experiment Keywords: SuperSeries Refer to individual Series
ORGANISM(S): Montastraea faveolata 
The metabolic bases of the interaction between the coral Acropora millepora and its dinoflagellate symbiont were investigated by comparing gene expression levels under light and dark conditions at the whole transcriptome level. Among the differentially expressed genes identified, a suite of genes in...
ORGANISM(S): Acropora millepora 
Similar to many marine invertebrates, scleractinian corals experience a dramatic morphological transformation, as well as a habitat switch, upon settlement and metamorphosis. At this time, planula larvae transform from non-calcifying, demersal, motile organisms into sessile, calcifying, benthic juve...
ORGANISM(S): Orbicella faveolata 
2009-05-06 | GSE15962 | GEO
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