Sort   by:  
 Page size 
Marine copepods are central to the productivity and biogeochemistry of marine ecosystems. Nevertheless, the direct and indirect effects of climate change on their metabolic functioning remain poorly understood. Here, we use metabolomics, the unbiased study of multiple low molecular weight organic me...
2015-10-13 | MTBLS91 | MetaboLights
In this research we present a transcriptomics analysis of the physiological response of a marine calcifier, Strongylocentrotus purpuratus, to ocean acidification, a decline in ocean pH that results from the absorption of anthropogenic carbon dioxide (CO2). Larvae were raised from fertilization to pr...
ORGANISM(S): Strongylocentrotus purpuratus 
Sequencing the metatranscriptome can provide information about the response of organisms to varying environmental conditions. We present a methodology for obtaining random whole-community mRNA from a complex microbial assemblage using Pyrosequencing. The metatranscriptome had, with minimum contamina...
ORGANISM(S): marine metagenome 
To investigate the effects of ocean acidification (OA) and their energy-dependent modulation in the life-cycle stages of E.huxleyi, diploid and haploid cells were acclimated to present and future CO2 partial pressures (pCO2; 38.5 Pa vs. 101.3 Pa CO2) under low and high light (50 vs. 300 M-5mol photo...
ORGANISM(S): Emiliania huxleyi 
We used proteomic analysis to reveal molecular response of Saccharina japonica to the projected ocean acidification conditions.
ORGANISM(S): Saccharina japonica 
2018-10-15 | PXD011219 | Pride
The comparision between gradual ocean acidification (GC) and one way ocean acidification (HC) of physiological and molecular responses on diatom Skeletonema costatum
ORGANISM(S): Skeletonema costatum 
2025-01-01 | GSE253819 | GEO
Sort   by:  
 Page size