985 resultados para Marine algae -- Catalonia -- Costa Brava
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This study describes the isolation and structural determination of two amides, isolated for the first time: N,4-dihydroxy-N-(2'-hydroxyethyl)-benzamide (0.019%) and N,4-dihydroxy-N-(2'-hydroxyethyl)-benzeneacetamide (0.023%). These amides, produced by the red macroalgae Bostrychia radicans, had their structures assigned by NMR spectral data and MS analyses. In addition, this chemical study led to the isolation of cholesterol, heptadecane, squalene, trans-phytol, neophytadiene, tetradecanoic and hexadecanoic acids, methyl hexadecanoate and methyl 9-octadecenoate, 4-(methoxymethyl)-phenol, 4-hydroxybenzaldehyde, methyl 4-hydroxybenzeneacetate, methyl 2-hydroxy-3-(4-hydroxyphenyl)-propanoate, hydroquinone, methyl 4-hydroxymandelate, methyl 4-hydroxybenzoate, 4-hydroxybenzeneacetic acid and (4-hydroxyphenyl)-oxo-acetaldehyde. This is the first report concerning these compounds in B. radicans, contributing by illustrating the chemical diversity within the Rhodomelaceae family.
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Marine natural products have currently been recognized as the most promising source of bioactive substances for drug discovery research. In this review, extraordinary metabolites from marine algae species are illustrated, as well as approaches for their isolation and determination of their biological properties and pharmaceutical potential. Furthermore, marine endophytic microorganisms (from marine algae) are presented as a new subject for extensive investigation to find novel natural products, which make them a potentially rich and innovative source for new drug candidates.
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Iridescent colour, caused by physical effects (thin-film interference, diffraction and Tyndall scattering), is relatively common in animals but exceedingly rare among plants1. Some benthic marine algae produce blue to violet iridescence2,3, and the upper leaf surfaces of a few vascular plants from the shady environments of humid tropical forests are iridescent blue4–6. Blue fruit colour has been assumed to be caused by anthocyanins7. A survey of such fruits (26 species in 18 genera) in Costa Rica, India, Florida and Malaysia, showed this to be the case, except for the iridescent colour in fruits of Elaeocarpus angustifolius Blume (Elaeocarpaceae). There I show that the colour is caused by a remarkable structure in the epidermis, and provide evidence for its selective advantage.
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In recent years, sulfated polysaccharides (SP) from marine algae have emerged as an important class of natural biopolymers with potential pharmacology applications. Among these, SP isolated from the cell walls of red algae have been study due to their anticoagulant,antithrombotic and anti-inflammatory activities. In the present study, three sulfated polysaccharides fractions denominated F1.5v, F2.0v and F3.0v were obtained from seaweed G. caudate by proteolysis followed to acetone fractionation. Gel electrophoresis using 0.05 M 1,3-diaminopropane-acetate buffer, pH 9,0, stained with 0.1% toluidine blue, showed the presence of SP in all fractions. The chemical analysis demonstrated that all the fractions are composed mainly of galactose. These compounds were evaluated in anticoagulant, antioxidant and antiproliferative activities. In anticoagulant activity evaluated through aPTT and PT tests, no one fractions presented anticoagulant activity at tested concentrations (0.1 mg/mL; 1.0 mg/mL; 2.0 mg/mL).The antioxidant activities of the three fractions were evaluated by the following in vitro systems: Total antioxidant capacity, superoxide and hydroxyl radical scavenging, ferrous chelating activity and reducing power. The fractions were found to have different levels of antioxidant activity in the systems tested. F1.5v shows the highest activity, especially in the ferrous chelating system, with 70% of ferrous inhibiting at 1.0 mg.mL-1. Finally, all the fractions showed dose-dependent antiproliferative activity against HeLa cells. The fractions F1.5v and F2.0v presented the highest antiproliferative activity at 2.0 mg/mL with 42.7% and 37.0% of inhibition, respectively. Ours results suggests that the sulfated polysaccharides from seaweed G. caudata are promising compounds in antioxidant and/or antitumor therapy
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Macroscopic marine algae, typically known as macroalgae or seaweeds, form an important living resource of the oceans, as primary producers. People have collected seaweeds for food, both for humans and animals for millennia. They also have been a source of nutrient rich fertilizers, as well as a source of gelling agents known as phycocolloids. More recently macroalgae are playing significant roles in medicine and biotechnology. Although Biotechnology and in particular marine biotechnology may have different meanings for different people, under the present context we will consider a broader definition. Marine biotechnology consists on the use of biological knowledge and/or the application of biological techniques on marine organisms, for the development of products in some way beneficial for humans. Seaweed aquaculture is, therefore a biotechnology activity. It is also one that can allow for further development of the industry. Today, seaweed cultivation techniques are standardized, routine and economical. Several factors, including understanding the environmental regulation of life histories and asexual propagation of thalli, are responsible for the success of large-scale seaweed cultivation. Presently, seaweed aquaculture represents approximately 23% of the world’s aquaculture production, including fish, crustaceans and other animals. A promising approach for the development of seaweed aquaculture, and aquaculture in general, is the integrated multi-trophic aquaculture (IMTA). In these systems, fed-aquaculture is combined with extractive organisms like bivalves and/or algae. The constraints and advantages of IMTA will be discussed. In particular, land based IMTA systems allow for much greater environmental and input controls. Traceability, security of supply, high-quality standards and safety should be the future of seaweed aquaculture and contribute for the development of marine biotechnology.
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Habitat use, diet and body-size variation are examined in weevils from Heard Island. with specific attention being given to the Ectemnorhinus viridis species complex. E. viridis shows marked altitudinal variation in body size and vestiture, but there are no consistent associations between body size and diet. nor are there consistent among-individual differences in conventional taxonomic characters. Thus, the status of E. viridis as a single, variable species is maintained. This species occurs from sea level to 600 rn and it feeds on vascular plants and bryophytes. Canonopsis sericeus also feeds on bryophytes and vascular plants and occurs over a narrower altitudinal range. Palirhoeus eatoni is restricted to the surpralittoral zone where it feeds on marine algae and lichens. Bothrometopus brei,is and B. gracilipes both feed on cryptogams, with the former species occurring from sea level to 450 m. and the latter from 50 to 550 m above sea level. In all species, males are smaller than females and there is a size cline such that populations from higher elevations are smaller than those at lower altitudes. This cline is the reverse of that found on the Prince Edward Islands which, unlike Heard Island, lie to the north of the Antarctic Polar Frontal Zone. This difference in body-size clines between weevils on the two island groups is ascribed to the shorter growing season on the colder Heard Island. The information presented here supports previous ideas regarding the evolution of the Ectemnorhinus-group of weevils on the South Indian Ocean Province Islands, although it suggests that subsequent tests of these hypotheses would profit from the inclusion of molecular systematic work.
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The green macroalgal species Caulerpa taxifolia is indigenous to tropical/subtropical Australia, ranging as far south as 28degrees and 29degrees 15' S on the Australian mainland east and west coasts, respectively. The origin of disjunct populations of the species, discovered in 2000 on the Australian mainland east coast at localities to 35degrees S remains unknown, variously attributed to introduced exotic strains or range extensions from other eastern Australian populations. Some naturally occurring Australian populations of C. taxifolia are similar to Mediterranean C. taxifolia. In Australia, large broad forms of the species, which have been known in the region since 1860, grow luxuriantly in sheltered seagrass meadows, with some of these populations tolerating minimum surface seawater temperatures in winter of 12.5 to 14.5degreesC. Accordingly, the contention that the Mediterranean has been invaded by a genetically-modified, large, cold-adapted strain of C. taxifolia may be incorrect. It is crucial that genetic markers (DNA fingerprinting, microsatellites) sensitive at the population level are used to accurately determine the genetic relatedness of C. taxifolia populations.
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3rd Portuguese Meeting on Medicinal Chemistry and 1st Portuguese-Spanish-Brazilian Meeting on Medicinal Chemistry, Aveiro, 28-30 Novembro 2012.
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AICMA 2012 (BIT's 1st Annual International Congress of Marine Algae), World Expo Center, Dalian, China, 20-23 de Setembro.
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As macroalgas marinhas têm uma grande diversidade de aplicações. Nos Açores, várias espécies têm sido usadas tradicionalmente para alimentação humana e para extração de agar, um ficocolóide aplicado na indústria alimentar e farmacêutica. As exigências no controlo da qualidade das matérias-primas e as práticas atuais de colheita de macroalgas marinhas selvagens na Europa exigem uma gestão eficaz deste recurso natural e, simultaneamente, tornam premente a necessidade de se implementarem métodos de produção de biomassa controlados, nomeadamente, práticas de cultivo. Apesar da importância reconhecida da exploração sustentável dos recursos marinhos existentes nos Açores, não existe qualquer informação sobre a viabilidade do cultivo de macroalgas marinhas no Arquipélago. O objetivo principal do presente projeto é avaliar o potencial de cultivo de espécies de macroalgas marinhas selecionadas, bem como identificar as melhores práticas de recolha desse recurso natural.
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El treball tracta sobre la gestió de l’aigua a la Comarca de l’Alt Empordà i per fer-ho comença analitzant la legislació de la Unió Europea sobre gestió hidràulica i les transposicions que se n’han fet a l’estat espanyol; també es recull el que és la legislació pròpia de l’estat i la de la Comunitat Autònoma de Catalunya. En aquest darrer punt és on es comença una anàlisi més detinguda i finalment el treball es centra en la comarca de l’Alt Empordà on encara conviuen diferents maneres de gestionar l’aigua: amb xarxa mancomunada, amb pobles amb captació pròpia i alguns pobles on encara no existeix la xarxa pública d’aigua en ple segle XXI per rocambolesc que això pugui semblar. S’analitzen dins de la comarca les diferents xarxes existents, quines són les normatives que les regeixen i els seus respectius òrgans de gestió. I encara concentrant-ho més s’analitza concretament el cas de Vila-sacra (el meu poble) on la xarxa pública d’aigua es va construir tot just a partir de l’any 2003 i per tant on m’ha estat relativament fàcil seguir les passes de l’inici de l’ajuntament com a administració que s’encarrega a partir de la construcció de la xarxa, de gestionar tant la captació, com el tractament, la posterior distribució i el cobrament final d’aquesta aigua consumida pels veïns inclosos els cànons establerts per l’ACA i que després ha de liquidar a l’entitat superior. M’ha servit per analitzar quina part de la xarxa es paga amb fons municipals, quina amb la contribució dels veïns i què es considera xarxa en alta i per tant va a càrrec de l’ACA com a administració hidràulica superior a Catalunya. La conclusió del treball m’ha portat a proposar que la millor solució per una comarca especialment complicada com és l’Alt Empordà amb un gran nombre de municipis (concretament 68) seria la d’establir una xarxa mancomunada comuna a tots els municipis o potser dues si volguéssim distingir els municipis d’interior i més essencialment rurals dels de costa i que tenen una forta influència del turisme, cosa que fa que la demanda d’aigua no sigui lineal sinó que tingui pics de consum a l’estiu que és precisament l’estació més seca de l’any. En definitiva, no podem desentendre’ns d’aquest recurs tan vital perquè tots som responsables d’un ús eficient. Així, una mena d’inici d’aplicació d’aquesta solució hauria de passar per la creació d’un ens ultramunicipalista, o per exemple, aprofitar-ne un de ja creat i en ple funcionament com és la xarxa establerta pel Consorci de la Costa Brava (pels pobles de costa i turístics) i després unificar tota la resta de la comarca i que tota s’abastís directament del Pantà de Boadella. La despesa inicial de construcció de la xarxa potser seria important però el resultat analitzat amb el pas de temps necessàriament hauria de ser positiu i probablement no es tornaria a donar una situació de sequera tan crítica com la recentment viscuda, durant la qual es va arribar a aprovar un transvasament d’urgència d’aigua de l’Ebre fins a l’àrea de Barcelona. Durant aquella crisi, els embassaments van estar per sota del 30%, es van organitzar portades d’aigua en vaixell, es va restringir el reg i els usos ornamentals a les conques internes (les comarques de Barcelona, Girona i del Camp de Tarragona) i es va estar a un pas de decretar restriccions al consum humà a l’àrea de Barcelona. Aquesta situació ens va fer replantejar a tots nivells el tema del consum d’aigua i de si realment el nostre territori pot assumir o no més construcció i per tant més població o unes instal•lacions que comporten un gran consum d’aigua com per exemple més camps de golf. Un any després, el panorama és ben diferent. Els embassaments estan tots per sobre del 80%, les muntanyes dels Pirineus han acumulat durant l’hivern una generosa i inusual reserva de neu, les amenaces de restriccions han quedat enrere i els transvasaments d’aigua de les conques de l’Ebre cap a l’àrea de Barcelona, amb el conflicte polític i territorial que això comportava, han estat aparentment descartats i fora de l’agenda política del país. Però no s’ha d’oblidar que el problema continua latent.
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The Mississippi Valley-type zinc and lead deposits at Topla (250,150 metric tons (t) of ore grading 1.0 wt % Zn and 3.3 wt % Pb) and Mezica (19 million metric tons (Mt) of ore grading 5.3 wt % Pb and 2.7 wt % Zn) occur within the Middle to Upper Triassic platform carbonate rocks of the northern Karavanke/Drau Range geotectonic units of the Eastern Alps, Slovenia. The ore and host rocks of these deposits have been investigated by a combination of inorganic and organic geochemical methods to determine major, trace, and rare earth element (REE) concentrations, hydrocarbon distribution, and stable isotope ratios of carbonates, kerogen, extractable organic matter, and individual hydrocarbons. These data combined with sedimentological evidence provide insight into the paleoenvironmental conditions at the site of ore formation. The carbonate isotope composition, the REE patterns, and the distribution of hydrocarbon biomarkers (normal alkanes and steranes) suggest a marine depositional environment. At Topla, a relatively high concentration of redox sensitive trace elements (V, Mo, U) in the host dolostones and REE patterns parallel to that of the North American shale composite suggest that sediments were deposited in a reducing environment. Anoxic conditions enhanced the preservation of organic matter and resulted in relatively higher total organic carbon contents (up to 0.4 wt %). The isotopic composition of the kerogen (delta C-13(kerogon) = -29.4 to -25.0 parts per thousand, delta N-15(kerogen) = -.13.6 to 6.8 parts per thousand) suggests that marine algae and/or bacteria were the main source of organic carbon with a very minor contribution from detrital continental plants and a varying degree of alteration. Extractable organic matter from Topla ore is generally depleted in C-13 compared to the associated kerogen, which is consistent with an indigenous source of the bitumens. The mineralization correlates with delta N-15(kerogen) values around 0 per mil, C-13 depleted kerogen, C-13 enriched n-heptadecane, and relatively high concentrations of bacteria] hydrocarbon biomarkers, indicating a high cyanobacterial biomass at the site of ore formation. Abundant dissimilatory sulfate-reducing bacteria, feeding on the cyanobacterial remains, led to accumulation of biogenic H2S in the pore water of the sediments. This biogenic H2S was mainly incorporated into sedimentary organic matter and diagenetic pyrite. Higher bacterial activity at the ore site also is indicated by specific concentration ratios of hydrocarbons, which are roughly correlated with total Pb plus Zn contents. This correlation is consistent with mixing of hydrothermal metal-rich, fluids and local bacteriogenic sulfide sulfur. The new geochemical data provide supporting evidence that Topla is a low-temperature Mississippi Valley-type deposit formed in an anoxic supratidal saline to hypersaline environment. A laminated cyanobacterial mat, with abundant sulfate-reducing bacteria was the main site of sulfate reduction.
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Disseny d’un projecte que controli la gestió d’ubicacions del magatzem d’una empresa del sector de materials de construcció, concretament de “Materials Brecor”, una empresa líder de la zona compresa entre la costa brava sud i el maresme nord. L’Objectiu principal és concebre un projecte que permeti controlar en temps real tant l’entrada com la sortida de mercaderies, a més a més de poder consultar la ubicació de cadascuna d’elles dins el magatzem. Aconseguint millorar els temps de resposta en el moment de localitzar l’article demanat i la seva posterior expedició al client