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Seawater carbonate chemistry and Arsenic accumulation of Crassostrea angulata...
Proteomic analysis was performed to compare the effects of Arsenic (As), seawater acidification (Low pH) and the combination of both stressors (Low pH + As) on Crassostrea... -
Quantitative analysis of oyster larval proteome provides new insights into th...
The metamorphosis of planktonic larvae of the Pacific oyster (Crassostrea gigas) underpins their complex life-history strategy by switching on the molecular machinery required... -
Combined metabolome and proteome analysis of the mantle tissue from Pacific o...
Ocean acidification (OA) has been found to affect an array of normal physiological processes in mollusks, especially posing a significant threat to the fabrication process of... -
Analysis of Pacific oyster larval proteome and its response to high-CO2
Most calcifying organisms show depressed metabolic, growth and calcification rates as symptoms to high-CO(2) due to ocean acidification (OA) process. Analysis of the global... -
Hourly physicochemical parameters measured underwater on oyster tables during...
This dataset shows the hourly physicochemical parameters measured underwater throughout the year of the experiment. The temperature and water depth were measured on each oyster... -
Hourly sound pressure magnitude data measured underwater on oyster tables dur...
This dataset shows the hourly sound pressure magnitude data measured underwater on each oyster table (control and ALAN conditions, at the oyster's level) throughout the year of... -
Hourly irradiance data measured underwater on oyster tables during a one-year...
This dataset shows the hourly irradiance data measured underwater on each oyster table (control and ALAN conditions, at the oysters' level) throughout the year of the experiment... -
Seawater carbonate chemistry and prokaryotic and eukaryotic microbiome of Pac...
Pacific oysters (Magallana gigas, a.k.a. Crassostrea gigas), the most widely farmed oysters, are under threat from climate change and emerging pathogens. In part, their... -
Codes used to study the Crassostrea gigas oyster transcriptome response to Al...
R scripts written for differential analysis and regression analysis to investigate the molecular basis of Paralytic Shellfish Toxins load in the oyster Crassostrea gigas exposed... -
Distribution of non-native Pacific oyster Magallana gigas (Thunberg, 1793) al...
Non-native Pacific oyster Magallana gigas (Thunberg, 1793) was introduced to the Mediterranean Sea for aquaculture purposes in the 1960s. Although this species was not... -
Number and length of Magallana gigas along the pier system of the island of H...
The dataset comprises abundances and lengths of the Pacific oyster Magellana gigas (formerly Crassostrea gigas). The data were collected at 14 sites along the pier system around... -
Oyster reproduction and seawater carbonate chemistry data across estuarine re...
In laboratory studies, shellfish larvae often respond negatively to augmented [CO2], but no prior tests have related wild bivalve larval performance and carbonate chemistry... -
Physiological data from Pacific oysters exposed to different temperature and ...
Dataset associated with: Caillon, C., Fleury, E., Di Poi, C., Gazeau, F., and Pernet, F. Food availability, but not emersion, influences the combined effects of ocean... -
Interactive effects of ocean acidification, elevated temperature, and reduced...
Ocean acidification (OA) effects on larvae are partially attributed for the rapidly declining oyster production in the Pacific Northwest region of the United States. This OA... -
Populations of Pacific Oysters Crassostrea gigas Respond Variably to Elevated...
Ocean acidification is anticipated to decrease calcification and increase dissolution of shelled molluscs. Molluscs with thinner and weaker shells may be more susceptible to... -
The potential of ocean acidifi cation on suppressing larval development in th...
We evaluated the effect of pH on larval development in larval Pacific oyster (Crassostrea gigas) and blood cockle ( Arca inflata Reeve). The larvae were reared at pH 8.2... -
Seawater carbonate chemistry and immune function of the Pacific oyster agains...
Ocean acidification (OA) and pathogenic diseases pose a considerable threat to key species of marine ecosystem. However, few studies have investigated the combined impact of... -
Seawater carbonate chemistry and the bacterial community present in larvae an...
Changes in marine environments, including pH changes, have been correlated to alterations in the physiology and disease susceptibility of cultured organisms at the early stages... -
Seawater carbonate chemistry and larval response to parental low pH exposure ...
As negative effects of ocean acidification are experienced by coastal ecosystems, there is a growing trend to investigate the effect ocean acidification has on multiple... -
Seawater carbonate chemistry and bioinformatic quality statistics
The adaptive capacity of marine calcifiers to ocean acidification (OA) is a topic of great interest to evolutionary biologists and ecologists. Previous studies have provided...
