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  • 1
    Publication Date: 2023-07-18
    Description: In the paper "Salinity as a tool for strain selection in recirculating land-based production of Ulva spp. from germlings to adults" (Cardoso et al. 2023) there was a need to compare artificial and natural seawater based on their nutrient composition and concentration. This experiment was performed to guarantee that the results from the other experiments in this paper were not caused by the different types of water, considering that before the start of these experiment the original cultures were growing in natural seawater. The artificial seawater (30 PSU) (Seequasal-Salz, Seequasal Salz Production and Trade GmbH, Münster, Germany) used in this experiment was made in the laboratory at the Alfred Wegener Institute (AWI), Bremerhaven, Germany, right before being analysed. The natural seawater (30 PSU ± 2 PSU) was collected by the Research Vessel Uthörn in the surrounding area of Helgoland, Germany. The process of collection of natural seawater was made every week to refill and supplement the tanks at AWI, Bremehaven. Therefore, the time of the collection and specific location are not known. The nutrient concentration analysis was done in October 2022 at AWI. Before the analysis both water types were pasteurized for 4 hours at 99 °C. The samples collected for analysis were filtered (0.2 µm) (Nalgene®, Nalge Nunc International, USA) and separated into falcon tubes (n = 3). The analysis was performed by an auto-analyser (SEAL Analytical, United Kingdom) and the concentrations of Phosphate, Ammonium, Nitrite and Nitrate were measured.
    Keywords: Algae cultivation; Ammonium; Antioxidant activity; Artificial seawater; AWI_Bremerhaven_ZFME; Bremerhaven, Germany; DATE/TIME; Date/time end; Date/time start; Industrietaugliche Verfahrensoptimierung zur Herstellung einer nachhaltigen Verpackungslösung aus Makroalgen für den Lebensmittel-Handel; Laboratory; Laboratory experiment; Mak-Pak_Scale-Up; Nitrate; Nitrite; Number of measurements; Origin; Phosphate; Recirculating Aquaculture System; Refractometer, Atago, S-10E; Replicate; Salinity; Segmented flow analyzer, Seal Analytical; Temperature, water; Temperature data logger, Ebro, EBI 20-T1; Type of study; Ulva sp.; Vessel; Water description
    Type: Dataset
    Format: text/tab-separated-values, 174 data points
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  • 2
    Publication Date: 2023-07-18
    Description: In the paper "Salinity as a tool for strain selection in recirculating land-based production of Ulva spp. from germlings to adults" (Cardoso et al. 2023) the relative growth rates of germlings of different Ulva species and strains were measured to evaluate the impact of different salinity treatments. We hypothesised that, since their early stages, salinity impacts the relative growth rate of the seaweeds and that different strains are adapted to different salinities. With this data it was possible to use salinity as a tool for selecting the strain with the highest and determine the optimal salinity to grow its germlings under a nursery setting to supplement a large-scale production. Four strains were tested (U. lacinulata and U. linza from the NE-Atlantic and U. lacinulata and U. flexuosa from the Mediterranean). The NE- Atlantic strains were collected in the Óbidos Lagoon, Portugal in January 2021 and were cultivated in laboratory conditions in the Alfred Wegener Institute (AWI), Bremerhaven, Germany. The Mediterranean strains belong to an AWI collection and were isolated in 1986 and 1987 (U. flexuosa and U. lacinulata, respectively). The cultivation of the Mediterranean species with the purpose of using them for experiments started in June 2021. To recreate the conditions of a nursery system, the strains were grown previously and during the experiment in a medium of artificial seawater (Seequasal-Salz, Seequasal Salz Production and Trade GmbH, Münster, Germany) enriched with half-stregth Provasoli (PES; Provasoli 1968; modifications: HEPES-buffer instead of TRIS, double concentration of Na₂glycerophosphate; iodine enrichment following Tatewaki, 1966). Three germlings with similar size from each species and population were placed into multi-well plates and subjected to different salinity treatments (10, 15, 20 and 30 PSU) (n = 3). The germlings were cultivated for 3 weeks. Because of the small size of the germlings, measuring the fresh weight was not possible and, in this experiment, pictures of the germling development were taken every week and the area of the germlings was measured with the software Image J (Rasband 2012). The difference in size was later used to determine their relative growth rate.
    Keywords: Accession number, genetics; Algae cultivation; Antioxidant activity; Area; Artificial seawater; AWI_Bremerhaven_FunctEcologyLab; Bremerhaven, Germany; Concentration; DATE/TIME; Date/time end; Date/time start; DEPTH, water; Event label; Experiment duration; Image analysis NIH ImageJ; Industrietaugliche Verfahrensoptimierung zur Herstellung einer nachhaltigen Verpackungslösung aus Makroalgen für den Lebensmittel-Handel; Laboratory; Laboratory experiment; LATITUDE; Light intensity; Light meter, LI-COR Biosciences GmbH, LI-250A; LONGITUDE; Mak-Pak_Scale-Up; Mediterranean Sea; MedSea_Ulva_1986; MedSea_Ulva_1987; NEAtlantic_Ulva_2021; North East Atlantic; Nutrient; Origin; Recirculating Aquaculture System; Refractometer, Atago, S-10E; Replicate; Salinity; Sample code/label; Sampling date; Species; Temperature, water; Temperature data logger, Ebro, EBI 20-T1; Treatment: light:dark cycle; Treatment: salinity; Type of study; Ulva sp.
    Type: Dataset
    Format: text/tab-separated-values, 3360 data points
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  • 3
    Publication Date: 2023-07-18
    Description: In the paper "Salinity as a tool for strain selection in recirculating land-based production of Ulva spp. from germlings to adults" (Cardoso et al. 2023) the antioxidant activity (AA) experiment aimed to test a previously selected strain, Ulva lacinulata from the NE-Atlantic, and evaluate the variations in AA under different salinity treatments. We hypothesized that by reducing the salinity level in the recirculating land-based system, it would be possible to optimize and increase the quality of the biomass being produced before it being harvested. The NE-Atlantic seaweed was collected in the Óbidos Lagoon, Portugal in January 2021 and was cultivated in laboratory conditions in the Alfred Wegener Institute (AWI), Bremerhaven, Germany. To recreate the conditions of a large-scale system, the strain was grown previously and during the experiment in a medium of artificial seawater (Seequasal-Salz, Seequasal Salz Production and Trade GmbH, Münster, Germany) enriched with a cheaper commercial fertilizer Blaukorn (COMPO SANA®, Germany). Twelve 1 L beakers were filled with artificial seawater at 4 different salinities (10, 15, 20 and 30 PSU), measured with a refractometer (Atago, Japan) (n = 3). Six discs (2 cm) of U. lacinulata were placed in each beaker and, at different times (0 h, 3 h, 24 h, 120 h, 192 h and 240 h) 1 disc was collected from each beaker to evaluate the antioxidant activity. The AA was determined by the ABTS Radical Cation Decolourisation Assay based on Re et al., 1999, and a Trolox standard curve was created by measuring the absorption of different Trolox concentrations in ethanol after being mixed with ABTS. The absorption of the samples at 734 nm was analysed with a microplate reader (Infinite 200 Microplate Reader, Tecan Trading AG, Männedorf, Switzerland) and the AA results obtained were given in Trolox Equivalent (in µg/mL).
    Keywords: Accession number, genetics; Algae cultivation; Antioxidant activity; Antioxidant capacity, in Trolox Equivalents; Artificial seawater; AWI_Bremerhaven_FunctEcologyLab; Bremerhaven, Germany; Concentration; DATE/TIME; Date/time end; Date/time start; DEPTH, water; Event label; Experiment duration; Industrietaugliche Verfahrensoptimierung zur Herstellung einer nachhaltigen Verpackungslösung aus Makroalgen für den Lebensmittel-Handel; Laboratory; Laboratory experiment; LATITUDE; Light intensity; Light meter, LI-COR Biosciences GmbH, LI-250A; LONGITUDE; Mak-Pak_Scale-Up; Microplate reader, Tecan Trading AG, Infinite 200; NEAtlantic_Ulva_2021; North East Atlantic; Nutrient; Origin; Recirculating Aquaculture System; Refractometer, Atago, S-10E; Replicate; Salinity; Species; Temperature, water; Temperature data logger, Ebro, EBI 20-T1; Treatment: light:dark cycle; Treatment: salinity; Type of study; Ulva sp.
    Type: Dataset
    Format: text/tab-separated-values, 1147 data points
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  • 4
    Publication Date: 2023-07-18
    Description: In the paper "Salinity as a tool for strain selection in recirculating land-based production of Ulva spp. from germlings to adults" (Cardoso et al. 2023) it was evaluated the impact of different nutrient sources on the relative growth rates (RELATIVE GROWTH RATE) of four different Ulva strains during their adult stage. Previously to this experiment, two experiments were performed to evaluate the of germlings and adults of the four Ulva strains. Because the aim of these experiments was to reproduce the conditions of a large-scale production and a small-scale nursery, the adult material was supplemented with a cheaper commercial fertilizer Blaukorn (COMPO SANA®, Germany) while the germlings (in the nursery set-up) were supplemented with half-strength Provasoli (PES; Provasoli 1968; modifications: HEPES-buffer instead of TRIS, double concentration of Na₂Glycerophosphate; iodine enrichment following Tatewaki, 1966). Therefore, this experiment was performed to guarantee that the use of different nutrient sources would not impact the results of the former experiments. Four strains were tested (U. lacinulata and U. linza from the NE-Atlantic and U. lacinulata and U. flexuosa from the Mediterranean). The NE- Atlantic strains were collected in the Óbidos Lagoon, Portugal in January 2021 and it was cultivated in laboratory conditions in the Alfred Wegener Institute (AWI), Bremerhaven, Germany from that moment on. The Mediterranean strains belong to an AWI collection and were isolated in 1986 and 1987 (U. flexuosa and U. lacinulata, respectively). The cultivation of the Mediterranean species with the purpose of using them for experiments started in June 2021. Fresh thalli from each species and population were placed into 1 L glass beakers and subjected to one of the two treatments: water enriched with commercial fertilizer Blaukorn or with half-strength Provasoli (n = 3). The experiment ran for 3 weeks. The fresh weight was measured once a week by collecting the seaweed and removing the excess water with absorbent paper three times before weighing the samples (Sartorius, Germany). Every time, each sample was measured 3 times. Based on the fresh weight measured each week, it was possible to calculate the of each strain throughout the experiment.
    Keywords: Accession number, genetics; Algae cultivation; Analytical Balance, Sartorius, LA310S; Antioxidant activity; Artificial seawater; AWI_Bremerhaven_FunctEcologyLab; Biomass, wet mass; Bremerhaven, Germany; Concentration; DATE/TIME; Date/time end; Date/time start; DEPTH, water; Event label; Experiment duration; Industrietaugliche Verfahrensoptimierung zur Herstellung einer nachhaltigen Verpackungslösung aus Makroalgen für den Lebensmittel-Handel; Laboratory; Laboratory experiment; LATITUDE; Light intensity; Light meter, LI-COR Biosciences GmbH, LI-250A; LONGITUDE; Mak-Pak_Scale-Up; Mediterranean Sea; MedSea_Ulva_1986; MedSea_Ulva_1987; NEAtlantic_Ulva_2021; North East Atlantic; Number of measurements; Origin; Recirculating Aquaculture System; Refractometer, Atago, S-10E; Replicate; Salinity; Sample code/label; Sampling date; Species; Temperature, water; Temperature data logger, Ebro, EBI 20-T1; Treatment: light:dark cycle; Treatment: nutrients; Type of study; Ulva sp.
    Type: Dataset
    Format: text/tab-separated-values, 5328 data points
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  • 5
    Publication Date: 2023-07-18
    Description: In the paper "Salinity as a tool for strain selection in recirculating land-based production of Ulva spp. from germlings to adults" (Cardoso et al. 2023) the relative growth rates of adult thalli of different Ulva species and strains were measured to evaluate the impact of different salinity treatments. We hypothesised that salinity impacts the of the seaweeds and that different strains are adapted to different salinities. With this data we aimed to use salinity as a tool for selecting the strain with the highest and determine the optimal salinity to grow it in the future in a recirculating land-based system. Four strains were tested (U. lacinulata and U. linza from the NE-Atlantic and U. lacinulata and U. flexuosa from the Mediterranean). The NE- Atlantic strains were collected in the Óbidos Lagoon, Portugal in January 2021 and were cultivated in laboratory conditions in the Alfred Wegener Institute (AWI), Bremerhaven, Germany. The Mediterranean strains belong to an AWI collection and were isolated in 1986 and 1987 (U. flexuosa and U. lacinulata, respectively). The cultivation of the Mediterranean species with the purpose of using them for experiments started in June 2021. To recreate the conditions of a large-scale system, the strains were grown previously and during the experiment in a medium of artificial seawater (Seequasal-Salz, Seequasal Salz Production and Trade GmbH, Münster, Germany) enriched with a cheaper commercial fertilizer Blaukorn (COMPO SANA®, Germany). A uniform amount of fresh thalli from each species and population were placed into 1 L glass beakers with salinities of 10, 15, 20 and 30 PSU (each condition n = 3) and cultivated over 3 weeks. The fresh weight was measured once a week by collecting the seaweed and removing the excess water with absorbent paper three times before weighing the samples (Sartorius, Germany). Every time, each sample was measured 3 times. Based on the fresh weight measured each week, it was possible to calculate the of each strain throughout the experiment.
    Keywords: Accession number, genetics; Algae cultivation; Analytical Balance, Sartorius, LA310S; Antioxidant activity; Artificial seawater; AWI_Bremerhaven_FunctEcologyLab; Biomass, wet mass; Bremerhaven, Germany; Concentration; DATE/TIME; Date/time end; Date/time start; DEPTH, water; Event label; Experiment duration; Industrietaugliche Verfahrensoptimierung zur Herstellung einer nachhaltigen Verpackungslösung aus Makroalgen für den Lebensmittel-Handel; Laboratory; Laboratory experiment; laboratory study; LATITUDE; Light intensity; Light meter, LI-COR Biosciences GmbH, LI-250A; LONGITUDE; Mak-Pak_Scale-Up; Mediterranean Sea; MedSea_Ulva_1986; MedSea_Ulva_1987; NEAtlantic_Ulva_2021; North East Atlantic; Number of measurements; Nutrient; Origin; Recirculating Aquaculture System; Refractometer, Atago, S-10E; Replicate; Salinity; Sample code/label; Sampling date; Species; Temperature, water; Temperature data logger, Ebro, EBI 20-T1; Treatment: light:dark cycle; Treatment: salinity; Type of study; Ulva sp.
    Type: Dataset
    Format: text/tab-separated-values, 10656 data points
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  • 6
    Publication Date: 2020-05-30
    Description: Ulva fenestrata is an economically and ecologically important green algal species with a large potential in seaweed aquaculture due to its high productivity, wide environmental tolerance, as well as interesting functional and nutritional properties. Here, we performed a series of manipulative cultivation experiments in order to investigate the effects of irradiance (50, 100, and 160 μmol photons m−2 s−1), temperature (13 and 18 °C), nitrate (
    Print ISSN: 0921-8971
    Electronic ISSN: 1573-5176
    Topics: Biology
    Published by Springer
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  • 7
    Publication Date: 2020-05-01
    Description: In recent years, the interest in using seaweed for the sustainable production of commodities has been increasing as seaweeds contain many potentially worthwhile compounds. Thus, the extraction and refining processes of interesting compounds from seaweeds is a hot research topic but has been found to have problems with profitability for novel applications. To increase the economic potential of refining seaweed biomass, the content of the compounds of interest should be maximized, which can potentially be achieved through optimization of cultivation conditions. In this study, we studied how the monosaccharide composition of the green seaweed species Ulva fenestrata is influenced by the abiotic factors; irradiance, temperature, nitrate, phosphate, and pCO2. It was evident that lower nitrate concentration and cultivation at elevated temperature increased monosaccharide contents. A 70% increase in iduronic acid and a 26% increase in rhamnose content were seen under elevated irradiance and temperature conditions, though the absolute differences in monosaccharide concentration were small. Irradiance and nitrate impacted the ratio between iduronic and rhamnose, which is an indicator of the ulvan structure. These results could potentially be utilized to coax the ulvan towards specific bioactivities, and thus have a considerable impact on a potential biorefinery centered around Ulva.
    Print ISSN: 0921-8971
    Electronic ISSN: 1573-5176
    Topics: Biology
    Published by Springer
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  • 8
    Publication Date: 2018-01-30
    Description: The genus Ulva is has broadly negative connotations because of its ability to form harmful “green tides” and the problems it causes with precise species identification, due to its morphological plasticity. During recent years, tides of unattached Ulva compressa U. Linneus 1753 with an atypical sheet-like morphology were for the first time observed in the German Baltic. Here we report that this nuisance alga is conspecific with the type strain of U. mutabilis Föyn 1958 from Faro in Portugal, an important model organism to study morphogenesis, morphogenetics and mutualistic interactions. Different approaches were used to examine conspecificity: (1) Comparisons on vegetative and reproductive features of cultured material of Ulva mutabilis and German Ulva compressa resulted in congruent results proving that a certain morphogenetic mutation pattern is shared. Spontaneous mutations of “slender-like” thalli are appearing whilst the common form exhibits a “leaf-like” wildtype morphology. (2) Interbreeding experiments of gametes of Ulva compressa and Ulva mutabilis were successful and showed a fertile first-generation offspring exhibiting the typical wildtype morphology similar to the phenotype of the parental generation. (3) Phylogenetic and species delimitation analyses were carried out on 128 tufA sequences of Ulva compressa specimens sampled in 2014–2016 in Germany and on tufA sequences of two clones of the strains Ulva mutabilis (sl-G[mt+]) and Ulva mutabilis (wt-[mt-]) to identify Molecular Operational Taxonomic Units (MOTUs). The Generalized Mixed Yule-Coalescent (GMYC) method comprises one major MOTU containing all included sequences of Ulva compressa and Ulva mutabilis, while reference sequences included in the analysis clustered outside this MOTU. This highly supports the monophyly of Ulva compressa and Ulva mutabilis, which can be treated as the same species. As a consequence, U. mutabilis is also a suitable model for future studies of green tides and their molecular and morphogenetic basis in the Baltic Sea.
    Type: Article , NonPeerReviewed
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  • 9
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    In:  [Talk] In: LLUR-Küstengewässer-Symposium 2017, 08.03.2017, Flintbek, Germany .
    Publication Date: 2017-09-18
    Type: Conference or Workshop Item , NonPeerReviewed
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  • 10
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    In:  [Invited talk] In: Naturhistoriska Riksmuseet, 12.07.2017, Stockholm, Sweden .
    Publication Date: 2017-09-18
    Type: Conference or Workshop Item , NonPeerReviewed
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