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11 results for “Saccharina latissima”
Aquavitae CS4Task7 Saccharina latissima and alaria longline in IMTA abalone grow out farm
<p>Preliminary production of kombu Saccharina latissima and Alaria on long lines produced under organic certification standards.</p> <p>Biomass production characterized by the number of plant per linear meter of longline, length (cm), width (cm) and weight (g) of 30 individual collected on 3 different section of the longline (S1,S2,S3).</p>
Dataset for "Diets supplemented with Saccharina latissima influence the expression of genes related to lipid metabolism and oxidative stress modulating rainbow trout (Oncorhynchus mykiss) fillet composition" (doi.org/10.1016/j.fct.2020.111332)
<p>Dataset corresponding to the following article:</p> <p>Ferreira, M., Larsen, B.K., Granby, K., Cunha, S.C., Monteiro, C., Fernandes, J.O., Nunes, M.L., Marques, A., Dias, J., Cunha, I., Castro, L.F.C., Valente, L.M.P., 2020. Diets supplemented with <em>Saccharina latissima </em>influence the expression of genes related to lipid metabolism and oxidative stress modulating rainbow trout (<em>Oncorhynchus mykiss</em>) fillet composition. Food Chem. Toxicol. 140, 111332. <a href="https://doi.org/10.1016/j.fct.2020.111332">https://doi.org/10.1016/j.fct.2020.111332</a></p>
Data from: Seascape genomics of the sugar kelp Saccharina latissima along the North Eastern Atlantic latitudinal gradient
<p>Temperature is one of the most important range-limiting factors for many seaweeds. Driven by the recent climatic changes, rapid northward shifts of species' distribution ranges can potentially modify the phylogeographic signature of Last Glacial Maximum. We explored this question in detail in the cold-tolerant kelp species <i>Saccharina latissima</i>, using microsatellites and double digest restriction site-associated DNA sequencing (ddRAD-seq) derived single nucleotide polymorphisms (SNPs) to analyze the genetic diversity and structure in 11 sites spanning the entire European Atlantic latitudinal range of this species. In addition, we checked for statistical correlation between genetic marker allele frequencies and three environmental proxies (sea surface temperature, salinity, and water turbidity). Our findings revealed that genetic diversity was significantly higher for the northernmost locality (Spitsbergen) compared to the southern ones (Northern Iberia), which we discuss in light of the current state of knowledge on phylogeography of <i>S</i>. <i>latissima</i> and the potential influence of the recent climatic changes on the population structure of this species. Seven SNPs and 12 microsatellite alleles were found to be significantly associated with at least one of the three environmental variables. We speculate on the putative adaptive functions of the genes associated with the outlier markers and the importance of these markers for successful conservation and aquaculture strategies for <i>S. latissima</i> in this age of rapid global change.</p>
Data from: Seascape genomics of the sugar kelp Saccharina latissima along the North Eastern Atlantic latitudinal gradient
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Data from: Fermentation of the sugar kelp (Saccharina latissima) – exploring the potential of the kelp’s native microbiota as starter culture and the microbiological food safety of fermented products
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Data for Saccharina latissima RNA seq experiment
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Supplementary data for "Validation of a quantitative PCR assay for detection of sugar kelp (Saccharina latissima) in coastal marine sediments"
<p>Raw data for a paper in preparation: "Validation of a quantitative PCR assay for detection of sugar kelp (Saccharina latissima) in coastal marine sediments".</p><p>Contains:</p><ol><li>Spreadsheet of curated raw data used to calculated <i>S. latissima</i> COI gene copy number per gram of dry sediment for a biomass spiking experiment to determine how gene copy number correlates with known amounts of added kelp biomass.</li><li>Spreadsheet of curated raw data from a field study looking at <i>S. latissima</i> gene copy numbers in field samples from the Damariscotta River estuary in Maine, from three sites, one under a small kelp farm, one under a site with a single kelp line, and another in a control site with no known influence of kelp farming activity.</li></ol>
Inhibition of toxic Pseudo-nitzschia spp. by the kelp, Saccharina latissima, and other seaweeds
<p><span>This package contains the datasets and R code used to produce the article “Inhibition of toxic <em>Pseudo-nitzschia </em>spp. by the kelp, <em>Saccharina latissima</em>, and other seaweeds,” which is to appear in Limnology and Oceanography.</span></p>
Growth performance, bioavailability of toxic and essential elements and nutrients, and biofortification of iodine of rainbow trout (Onchorynchus mykiss) fed blends with sugar kelp (Saccharina latissima)
<p>Data from the publication Granby et al 2020 Growth performance, bioavailability of toxic and essential elements and nutrients, and biofortification of iodine of rainbow trout (Onchorynchus mykiss) fed blends with sugar kelp (Saccharina latissima). Food Chemical Toxicology 141, 111387, https://doi.org/10.1016/j.fct.2020.111387</p> <p> </p>
Orbitrap data: Arsenolipids are not uniformly distributed within two brown macroalgal species Saccharina latissima and Alaria esculenta.
<p>ESI-orbitrap-MS raw data from project SilhouetteOfSeaweed. Possible to look for e.g. other arsenolipid species that had not been discovered at the time of publication. Analysed on Thermo Orbitrap. .raw files. Full scan from 100-1400. Further details in paper: Arsenolipids are not uniformly distributed within two brown macroalgal species <em>Saccharina latissima</em> and <em>Alaria esculenta.</em> Published in Analytical and Bioanalytical Chemistry (2019) - <a href="https://doi.org/10.1007/s00216-019-01907-x">https://doi.org/10.1007/s00216-019-01907-x</a></p>
Data from: Fine-scale population genetic structure of sugar kelp, Saccharina latissima (Laminariales, Phaeophyceae), in eastern Maine, USA
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