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  • PANGAEA  (25)
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  • 1
    Publication Date: 2024-05-07
    Description: The dataset compiles pigment content, absorptance data, photosynthetic parameters and primary production data as proxies for summertime photoacclimation of the temperate intertidal eelgrass Zostera marina after a 25-day exposure to a natural light intensity gradient (6, 36, 74, 133, 355, 503 and 860 µmol photons/m²/s) under laboratory conditions at the Pointe-au-Père research station, East Rimouski, Quebec, Canada. The data bundle contains: 1) photosynthetic and total absorptance data at the end of the experiment, which respectively represent the fraction of incident visible light absorbed by the photosynthetic tissues corrected and not corrected for non-photosynthetic absorption; 2) pigment content at the end of the experiment, which includes chlorophyll a and b and total carotenoids contents; 3) photosynthetic parameters obtained by Rapid Light Curves (RLC) on days 5 and 25, including photosynthetic apparatus efficiency (alpha), capacity (ETRmax) and saturation (Ek); 4) whole shoot primary production at the end of the experiment, which was calculated from oxygen fluxes under light and dark conditions, and normalized by leaf surface.
    Keywords: Acclimation; East_Rimouski; Eelgrass; Hand picking; Laboratory experiment; light intensity; PAM fluorometry; photophysiology; Quebec, Canada; subarctic; Zostera marina
    Type: Dataset
    Format: application/zip, 4 datasets
    Location Call Number Limitation Availability
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  • 2
    Publication Date: 2024-05-07
    Keywords: alpha diversity; Arctic Ocean; Atlantic Ocean; benthic invertebrates; biodiversity conservation; Canada_I; energy-diversity relationship; marine protected area; Pacific Ocean; productivity-diversity relationship; seafloor biodiversity
    Type: Dataset
    Format: application/vnd.openxmlformats-officedocument.spreadsheetml.sheet, 3.5 MBytes
    Location Call Number Limitation Availability
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  • 3
    Publication Date: 2024-05-07
    Description: We evaluated single and interactive effects of density reduction of Zostera marina L., a habitat-forming species, shading, and sediment nutrient enrichment on the response of intertidal epibenthic macro-species abundances. Abundances were measured two weeks after reducing eelgrass density (Period T1), then nutrients were added to the sediments and shades were added above the bed. Abundances were measured three weeks later (Period T2), then shades were taken down. Final abundances were measured five weeks later (Period T3). Epibenthos was collected using mesh bags (mesh size of 500 µm, diameter about 18 cm), each individual collected was identified then sifted through a series of sieves to determine biomass in ash free dry weight (AFDW; see doi:10.1594/PANGAEA.931116).
    Keywords: Abundance; Calliopius laeviusculus; Cancer irroratus, megalopa; Counting 〉500 µm fraction; Crassicorophium bonellii; DATE/TIME; Density; Ecrobia truncata; Edotia triloba; Eelgrass; Gammarus lawrencianus; Gammarus oceanicus; Gammarus sp., juvenile; Gammarus tigrinus; Hippolytidae; Idotea phosphorea; intertidal; invertebrates; Jaera albifrons; Lacuna vincta; LATITUDE; Littorina saxatilis; LONGITUDE; Macoma balthica; Margarites costalis; Mesodesma arctatum; MULT; Multiple investigations; multiple stress; Mya arenaria; Mya truncata; Mysis gaspensis; Mysis sp.; Mysis stenolepis; Mytilus spp.; Nereis pelagica; Nutrient; Period; Pholoe minuta; Phoxocephalus holbolli; Plot; Polychaeta; Pontogeneia inermis; Quebec, Canada; Sample code/label; Shading; StLawrence_Estuary; stress interaction; Tectura testudinalis; Treatment
    Type: Dataset
    Format: text/tab-separated-values, 4320 data points
    Location Call Number Limitation Availability
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  • 4
    Publication Date: 2024-05-07
    Description: We evaluated single and interactive effects of density reduction of Zostera marina L., a habitat-forming species, shading, and sediment nutrient enrichment on the response of intertidal epibenthic macro-species. Epibenthos was collected using mesh bags (mesh size of 500 µm, diameter about 18 cm). This dataset reports all species identified through the experiment and their taxonomic classification.
    Keywords: Abundance; Class; Eelgrass; Family; Genus; intertidal; invertebrates; Kingdom; MULT; Multiple investigations; multiple stress; Order; Phylum; Quebec, Canada; Registration number of species; Species; StLawrence_Estuary; stress interaction; Uniform resource locator/link to reference
    Type: Dataset
    Format: text/tab-separated-values, 253 data points
    Location Call Number Limitation Availability
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  • 5
    Publication Date: 2024-05-07
    Description: We evaluated single and interactive effects of density reduction of Zostera marina L., a habitat-forming species, shading, and sediment nutrient enrichment on the response of eelgrass relative leaf elongation (RLE) and of microalgal epiphyte load on leaves. REL was evaluated once, as a proxy for growth, using five shoots per plot that were each marked with a reference hole at the top of the sheath using a pushpin marked at the end of Period T1 (two weeks after reducing eelgrass density and at the same time than adding nutrients sediment enrichment and shades). After 19 days, we collected the shoots and brought them back to the lab where leaf elongation was measured as the displacement of the mark relative to the reference mark on the oldest nongrowing leaf (Olesen & Sand-Jensen 1994). Total leaf elongation was then divided by sheath length and the number of days of elongation. We estimated the epiphyte (microalgae) load on eelgrass by scraping the leaves of one randomly selected shoot; we then filtered the water containing the epiphytes on GF/F filters that were then kept wrapped in aluminum foil at -80 °C until analysis. Epiphyte load was assessed using chlorophyll extraction with 90% acetone, following Parsons et al. (1984). Calculated chlorophyll weight was then divided by shoot dry weight.
    Keywords: Abundance; Chlorophyll a; Chlorophyll a analysis (Parsons et al., 1984, Pergamon Press, Oxford); Chlorophyll b; DATE/TIME; Density; Eelgrass; intertidal; invertebrates; Leaf growth rate, relative; MULT; Multiple investigations; multiple stress; Nutrient; Period; Plot; Quebec, Canada; Sample code/label; Shading; StLawrence_Estuary; stress interaction; Total elongation of leaves using a push-pin hole divided by sheath lenght and number of days of elongation; Treatment
    Type: Dataset
    Format: text/tab-separated-values, 400 data points
    Location Call Number Limitation Availability
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  • 6
    Publication Date: 2024-05-07
    Description: We evaluated single and interactive effects of density reduction of Zostera marina L., a habitat-forming species, shading, and sediment nutrient enrichment on the response of intertidal epibenthic macro-species abundances. Abundances were measured two weeks after reducing eelgrass density (Period T1), then nutrients were added to the sediments and shades were added above the bed. Abundances were measured three weeks later (Period T2), then shades were taken down. Final abundances were measured five weeks later (Period T3). Epibenthos was collected using mesh bags (mesh size of 500 µm, diameter about 18 cm), each individual collected was identified then sifted through a series of sieves as a proxy for biomass (ash free dry weight; AFDW).
    Keywords: Abundance; Counting 〉8.0 mm fraction; Counting 0.5-0.7 mm fraction; Counting 0.7-1.0 mm fraction; Counting 1.0-1.4 mm fraction; Counting 1.4-2.0 mm fraction; Counting 2.0-2.8 mm fraction; Counting 2.8-4.0 mm fraction; Counting 4.0-5.6 mm fraction; Counting 5.6-8.0 mm fraction; Density; Eelgrass; Epifaunal species abundance; intertidal; invertebrates; MULT; Multiple investigations; multiple stress; Nutrient; Period; Plot; Quebec, Canada; Shading; Species; StLawrence_Estuary; stress interaction; Treatment
    Type: Dataset
    Format: text/tab-separated-values, 10640 data points
    Location Call Number Limitation Availability
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  • 7
    Publication Date: 2024-05-07
    Keywords: Amphipoda, wet mass; Aulactinia stella, wet mass; Balanomorpha, wet mass; Chordaria flagelliformis, wet mass; DATE/TIME; Ecrobia truncata, wet mass; Ectocarpus sp., wet mass; Eteone longa, wet mass; EXP; Experiment; Fucus sp., wet mass; Fucus spp., wet mass; Identification; Jaera albifrons, wet mass; Lacuna vincta, wet mass; Laminaria sp., wet mass; Limecola balthica, wet mass; Littorina littorea, wet mass; Littorina obtusata, wet mass; Littorina saxatilis, wet mass; Margarites sp., wet mass; Mya arenaria, wet mass; Mytilus spp., wet mass; Nereis diversicolor, wet mass; Nereis pelagica, wet mass; Oligochaeta, wet mass; Pectinaria gouldii, wet mass; Petalonia fascia, wet mass; Pholoe minuta, wet mass; Porphyra sp., wet mass; Quebec, Canada; Sainte-Flavie; Scytosiphon lomentaria, wet mass; Skeneopsis planorbis, wet mass; Species biomass in gram (quadrat 30x30 cm, destructive sampling); Testudinalia testudinalis, wet mass; Treatment; Treatment: burned; Treatment: canopy; Treatment: grazers; Treatment: nutrients; Treatment: period; Ulvaceae, wet mass
    Type: Dataset
    Format: text/tab-separated-values, 1368 data points
    Location Call Number Limitation Availability
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  • 8
    Publication Date: 2024-05-07
    Description: 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 species' capacity to respond to light attenuation. After 25 days of light exposure, the fraction of incident visible light absorbed by the leaves (absorptance) was quantified with a Lambda850 (PerkinElmer, USA) spectrophotometer with integrating sphere. Light absorption by the photosynthetic components of the leaves (photosynthetic absorptance) was distinguished from the total absorptance by correcting for the non-photosynthetic absorptance at 750 nm (Cummings and Zimmerman, 2003).
    Keywords: Absorption factor, photosynthetic; Absorption factor, total; Acclimation; Calculated; Chamber number; DATE/TIME; East_Rimouski; Eelgrass; Experiment day; Hand picking; Laboratory experiment; light intensity; PAM fluorometry; photophysiology; Quebec, Canada; Replicate; Species; Specimen identification; subarctic; Temperature, water; Treatment: light intensity; Type of study; Uniform resource locator/link to reference; Zostera marina
    Type: Dataset
    Format: text/tab-separated-values, 913 data points
    Location Call Number Limitation Availability
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  • 9
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    PANGAEA
    In:  Supplement to: Cimon, Stéphanie; Cusson, Mathieu (2018): Impact of multiple disturbances and stress on the temporal trajectories and resilience of benthic intertidal communities. Ecosphere, 9(10), e02467, https://doi.org/10.1002/ecs2.2467
    Publication Date: 2024-05-07
    Description: Abundances (percent cover, counts or biomass) of rocky mid-intertidal macro-species measured through a multi-factorial in situ experiment of 14 months in 2012-2013 in Sainte-Flavie, Québec, Canada (48°37'42.5″ N, 68°11'55.7″ W). Using 0.25-m² plots, we ran an in situ one-pulse experiment (removal of all materials to bare rock and then burning of the surface) followed by a full orthogonal factorial design of three press-type disturbances or stresses: grazer reduction, canopy removal, and nutrient enrichment. We evaluated percentage cover visually. Counts and biomass were obtained destructively at the end of the experiment. For further details, refer to our paper (https://doi.org/10.1002/ecs2.2467).
    Keywords: EXP; Experiment; Quebec, Canada; Sainte-Flavie
    Type: Dataset
    Format: application/zip, 3 datasets
    Location Call Number Limitation Availability
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  • 10
    Publication Date: 2024-05-07
    Description: This dataset contain abundance data from Canadian Pacific, Arctic, and Atlantic Oceans from the intertidal zone to upper bathyal depths, encompassing 13 marine ecoregions. 35 benthic datasets that encompass 3,337 taxa (70% identified to species and 21% to genus) from 13,172 samples spanning 6,117 sites. Abiotic data from these ecoregions includes lat long, depth, latitude, chemical energy (export particulate organic carbon [POC] flux), thermal energy (bottom temperature), and seasonality of primary production on the benthic biodiversity.
    Keywords: alpha diversity; Arctic Ocean; Atlantic Ocean; benthic invertebrates; biodiversity conservation; Canada_I; energy-diversity relationship; marine protected area; Pacific Ocean; productivity-diversity relationship; seafloor biodiversity
    Type: Dataset
    Format: application/zip, 6 datasets
    Location Call Number Limitation Availability
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