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Seawater carbonate chemistry and germination of eelgrass (Zostera marina L.) ...
Our study investigated the combined effects of ocean acidification and P. gemini infection on germination of eelgrass seeds. We conducted a two-level factorial experiment... -
Seawater carbonate chemistry and seagrass-oyster interactions in response to ...
Here, we investigate how reciprocal interactions between two coastal foundation species, the eastern oyster (Crassostrea virginica) and eelgrass (Zostera marina) shift in sign... -
Seawater carbonate chemistry and photosynthesis of seagrass Zostera japonica ...
Photosynthesis and respiration are vital biological processes that shape the diurnal variability of carbonate chemistry in nearshore waters, presumably ameliorating (daytime) or... -
Above- and belowground biomass, number of blades and surface area of Zostera ...
For seagrass incubations, August 5, 2020, seagrass shoots were enclosed in transparent gas impermeable plastic vacuum bags (Packing24, PA/PE 20/70, 90my) with approx. 6 L of the... -
Pigment content of intertidal temperate seagrass Zostera marina from Rimouski...
Eelgrass shoots (Zostera marina) from Rimouski, QC, were exposed in July 2020 to a natural gradient of light intensity, ranging from 6 to 860 µmol photons/m²/s, to assess the... -
Photosynthetic efficiency and capacity of intertidal temperate seagrass Zoste...
Eelgrass shoots (Zostera marina) from Rimouski, QC, were exposed in July 2020 to a natural gradient of light intensity, ranging from 6 to 860 µmol photons/m²/s, to assess the... -
Primary production of intertidal temperate seagrass Zostera marina from Rimou...
Eelgrass shoots (Zostera marina) from Rimouski, QC, were exposed in July 2020 to a natural gradient of light intensity, ranging from 6 to 860 µmol photons/m²/s, to assess the... -
Light absorption of intertidal temperate seagrass Zostera marina from Rimousk...
Eelgrass shoots (Zostera marina) from Rimouski, QC, were exposed in July 2020 to a natural gradient of light intensity, ranging from 6 to 860 µmol photons/m²/s, to assess the... -
Seawater carbonate chemistry and marine macrophyte capacity to locally amelio...
We explored the individual capacities of four species of marine macrophytes (Ulva lactuca, Zostera marina, Fucus vesiculosus and Saccharina latissima) to ameliorate seawater... -
Seawater carbonate chemistry and resilience of a seagrass system exposed to g...
Despite a growing interest in identifying tipping points in response to environmental change, our understanding of the ecological mechanisms underlying non-linear ecosystem... -
Water carbonate chemistry along an estuarine gradient in Willapa Bay, WA, USA
In order to allow full comparability with other ocean acidification data sets, the R package seacarb (Gattuso et al, 2016) was used to compute a complete and consistent set of... -
Species on seaweed clumps off Sylt, northern Wadden Sea, Germany
Entries: #999 = present; numbers = no. of individuals -
Composition of seaweed clumps off Sylt, northern Wadden Sea, Germany
This dataset has no description
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Abundance of macrobenthos organisms in the northern Wadden Sea in 2010
At each site we analyse the species occurrence by taking 20 replicate samples of 20x20 cm (20 cm depth). -
Abundance of macrobenthos organisms in the northern Wadden Sea in 2009
At each site we analyse the species occurrence by taking 20 replicate samples of 20x20 cm (20 cm depth). -
Abundance of macrobenthos organisms in the northern Wadden Sea in 2008
At each site we analyse the species occurrence by taking 20 replicate samples of 20x20 cm (20 cm depth). -
Abundance of macrobenthos organisms in the northern Wadden Sea in 2007
At each site we analyse the species occurrence by taking 20 replicate samples of 20x20 cm (20 cm depth). -
Zostera marina ZM1206 Resequencing
Resequencing of Zostera marina genotype. Sample from inner leaf base -
Zostera marina JS210 Resequencing
Resequencing of Zostera marina genotype. Sample from inner leaf base -
Zostera marina ZM1208 Resequencing
Resequencing of Zostera marina genotype. Sample from inner leaf base