Replacing Antibiotics with Synergistic Probiotics-Microalgae Consortium in Mud Crab (<i>Scylla paramamosain</i>) Larviculture: Transcriptomic Evidence for Enhanced Innate Immunity, Oxidative Stress Response, and Metabolic Adaptability. [PDF]
Lv X +7 more
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Valorization of Second Cheese Whey Through Microalgae-Based Treatments: Advantages, Limits, and Opportunities. [PDF]
Sciuto G +3 more
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Settlement and Growth of <i>Mytilus galloprovincialis</i> Pediveliger Larvae in Response to Biofilm-Based Microalgae and Chemical Neuroactive Compounds. [PDF]
Janah H, Ouagajjou Y, Aghzar A, Presa P.
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Machine learning optimization of environmental factors influencing biomass and nutritional composition in local algal species. [PDF]
Khan A +7 more
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A greener and simpler lutein extraction process applied to heterotrophically-grown Scenedesmus almeriensis. [PDF]
Camarena-Bernard C +4 more
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From Pond to Plate: Tailored Functional Proteins for Next-Gen Microalgal Food. [PDF]
Zoehrer J +9 more
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The microalgaeTetraselmis suecicain mesocosms under different light regimes
Pigment profiles and pheopigment accumulation of the microalga Tetraselmis suecica were studied under different spectral irradiances. Irradiance conditions typical of coastal waters with (‘clear’) and without (‘coloured’) chromophoric dissolved organic matter (C-DOM) were simulated in mesocosm cultures.
Borghini, F. +7 more
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Enzymatic and acid hydrolysis of Tetraselmis suecica for polysaccharide characterization
Bioresource Technology, 2014Carbohydrate composition of the marine microalgae, Tetraselmis suecica was characterized following acidic and enzymatic hydrolysis. Monitoring intracellular starch as a function of cultivation time at varying nitrate concentrations showed a maximum cellular starch content of 45% of dry biomass when grown under nitrate depleted conditions ...
Azadeh, Kermanshahi-Pour +3 more
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Response of Tetraselmis suecica to nutrient and grazer manipulation
Journal of Applied Phycology, 1999Three methods of algal quantification (direct cell counts, chlorophyll a extraction, in vivo fluorescence) were used to evaluate the response of the unicellular green flagellate Tetraselmis suecica to nutrients and grazers. Nutrient enrichment enhanced total cell counts, chlorophyll a concentration and in vivo and DCMU-fluorescence.
Jian G. Qin +2 more
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