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A longitudinal study of Pacific oyster (Crassostrea gigas) larval development...
Three cohorts of Pacific oyster (Crassostrea gigas) larvae at Whiskey Creek Shellfish Hatchery (WCH) in Netarts Bay, Oregon, were monitored for stable isotope incorporation and... -
Seawater carbonate chemistry and biological processes of mussel Crassostrea g...
Climate change with increasing temperature and ocean acidification (OA) poses risks for marine ecosystems. According to Pörtner and Farrell [1], synergistic effects of elevated... -
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 biological processes during experiments with...
An increasing number of studies are now reporting the effects of ocean acidification on a broad range of marine species, processes and systems. Many of these are investigating... -
Measured environmental concentrations of copper and hazard quotients in the G...
Data includes the measured environmental concentrations (MEC) of the summer copper (Cu) concentration in the German Bight from 1986 to 2021 (MUDAB database,... -
Meio-Macrofauna sampled in a Sargassum muticum forest in the Blidselbucht, Sylt
This dataset has no description
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(Table 1) Abundance of meroplankton species in the West Bay of the Furugelm I...
This dataset has no description
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Endofauna abundance in 2006-10 from an experiment in the Wadden Sea of List, ...
Sample size: 10cm2 x 5cm (5 replicates each ring); metal frame (no. of individuals per 250 cm3 each ring), mesh sieve size: >250 µm -
Seawater carbonate chemistry and oyster physiological performance
This study investigated the physiological responses of juvenile Pacific oyster Crassostrea gigas exposed for 81 days to current and ocean acidification and warming conditions... -
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... -
Seawater carbonate chemistry and reaction norms of two oyster species living ...
We deciphered the reaction norms of two oyster species living in contrasting habitats: the intertidal oyster Crassostrea gigas and the subtidal flat oyster Ostrea edulis, which... -
Seawater carbonate chemistry and growth retardation of Pacific oyster Crassos...
We evaluated the recovery capacity of a model calcifier, the Pacific oyster Crassostrea gigas. We exposed juveniles to 15 pH conditions between 6.4 and 7.8 for 14 days. Oyster... -
Seawater carbonate chemistry and effects of ocean acidification and wariming ...
Ocean acidification and warming (OAW) are pressing contemporary issues affecting marine life and specifically calcifying organisms. Here, we investigated the direct effects of... -
Seawater carbonate chemistry and sensory qualities of oysters
Reliance on the marine environment for the provision of food is ever-increasing, but future climate change threatens production. Despite this concern, the impact on seafood... -
Seawater carbonate chemistry and biochemical composition and nutritional prop...
Ocean acidification and warming may threaten future seafood production, safety and quality by negatively impacting the fitness of marine species. Identifying changes in... -
Seawater carbonate chemistry and performance of native and non-native adult o...
Globally, non-native species (NNS) have been introduced and now often entirely replace native species in captive aquaculture; in part, a result of a perceived greater resilience... -
Seawater carbonate chemistry and Cu accumulation and cellular toxicity in the...
Ocean acidification (OA) has been found to increase the release of free Cu2+ in seawater. However, only a handful of studies have investigated the influence of OA on Cu... -
Seawater carbonate chemistry and biomarkers related to metabolic potential, a...
Environmental hypercapnia in shallow coastal marine ecosystems can be exacerbated by increasing levels of atmospheric CO2. In these ecosystems organisms are expected to become... -
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... -
Seawater carbonate chemistry and larval development in domesticated and natur...
Ocean acidification (OA) has had significant negative effects on oyster populations on the west coast of North America over the past decade. Many studies have focused on the...
