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1.
Adv Mar Biol ; 79: 61-136, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-30012277

RESUMO

Marine bioconstructions are biodiversity-rich, three-dimensional biogenic structures, regulating key ecological functions of benthic ecosystems worldwide. Tropical coral reefs are outstanding for their beauty, diversity and complexity, but analogous types of bioconstructions are also present in temperate seas. The main bioconstructions in the Mediterranean Sea are represented by coralligenous formations, vermetid reefs, deep-sea cold-water corals, Lithophyllum byssoides trottoirs, coral banks formed by the shallow-water corals Cladocora caespitosa or Astroides calycularis, and sabellariid or serpulid worm reefs. Bioconstructions change the morphological and chemicophysical features of primary substrates and create new habitats for a large variety of organisms, playing pivotal roles in ecosystem functioning. In spite of their importance, Mediterranean bioconstructions have not received the same attention that tropical coral reefs have, and the knowledge of their biology, ecology and distribution is still fragmentary. All existing data about the spatial distribution of Italian bioconstructions have been collected, together with information about their growth patterns, dynamics and connectivity. The degradation of these habitats as a consequence of anthropogenic pressures (pollution, organic enrichment, fishery, coastal development, direct physical disturbance), climate change and the spread of invasive species was also investigated. The study of bioconstructions requires a holistic approach leading to a better understanding of their ecology and the application of more insightful management and conservation measures at basin scale, within ecologically coherent units based on connectivity: the cells of ecosystem functioning.


Assuntos
Biodiversidade , Recifes de Corais , Monitoramento Ambiental , Animais , Conservação dos Recursos Naturais , Itália , Mar Mediterrâneo
2.
Mar Pollut Bull ; 131(Pt A): 218-232, 2018 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-29886940

RESUMO

The availability of marine habitats maps remains limited due to difficulty and cost of working at sea. Reduced light penetration in the water hampers the use of optical imagery, and acoustic methods require extensive sea-truth activities. Predictive spatial modelling may offer an alternative to produce benthic habitat maps based on complete acoustic coverage of the seafloor together with a comparatively low number of sea truths. This approach was applied to the coralligenous reefs of the Marine Protected Area of Tavolara - Punta Coda Cavallo (NE Sardinia, Italy). Fuzzy clustering, applied to a set of observations made by scuba diving and used as sea truth, allowed recognising five coralligenous habitats, all but one existing within EUNIS (European Nature Information System) types. Variable importance plots showed that the distribution of habitats was driven by distance from coast, depth, and lithotype, and allowed mapping their distribution over the MPA. Congruence between observed and predicted distributions and accuracy of the classification was high. Results allowed calculating the occurrence of the distinct coralligenous habitats in zones with different protection level. The five habitats are unequally protected since the protection regime was established when detailed marine habitat maps were not available. A SWOT (Strengths-Weaknesses-Opportunities-Threats) analysis was performed to identify critical points and potentialities of the method. The method developed proved to be reliable and the results obtained will be useful when modulating on-going and future management actions in the studied area and in other Mediterranean MPAs to develop conservation efforts at basin scale.


Assuntos
Ecologia/métodos , Ecossistema , Modelos Teóricos , Animais , Conservação dos Recursos Naturais/métodos , Lógica Fuzzy , Itália , Oceanos e Mares
3.
PLoS One ; 12(5): e0177945, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-28531209

RESUMO

This paper concerns the changes occurred over both decennial and millennial spans of time in a sponge assemblage present in coralligenous biogenic build-ups growing at 15 m depth in the Ligurian Sea (Western Mediterranean). The comparison of the sponge diversity after a time interval of about 40 years (1973-2014) showed a significant reduction in species richness (about 45%). This decrease affected mainly the massive/erect sponges, and in particular the subclass Keratosa, with a species loss of 67%, while the encrusting and cavity dwelling sponges lost the 36% and 50%, respectively. The boring sponges lost only one species (25%). This changing pattern suggested that the inner habitat of the bioconstructions was less affected by the variations of the environmental conditions or by the human pressures which, on the contrary, strongly affected the species living on the surface of the biogenic build-ups. Five cores extracted from the bioherms, dating back to 3500 YBP, allowed to analyse the siliceous spicules remained trapped in them in order to obtain taxonomic information. Changes at generic level in diversity and abundance were observed at 500/250-years intervals, ranging between 19 and 33 genera. The number of genera showed a sharp decrease since 3500-3000 to 3000-2500 YBP. After this period, the genera regularly increased until 1500-1250 YBP, from when they progressively decreased until 1000-500 YBP. Tentatively, these changes could be related to the different climatic periods that followed one another in the Mediterranean area within the considered time span. The recent depletion in sponge richness recorded in the Ligurian coralligenous can be considered relevant. In fact, the analysis of the spicules indicated that the sponges living in these coralligenous habitats remained enough stable during 3000 years, but could have lost a significant part of their biodiversity in the last decades, coinciding with a series of warming episodes.


Assuntos
Poríferos/fisiologia , Animais , Biodiversidade , Recifes de Corais , Monitoramento Ambiental , Humanos , Mar Mediterrâneo , Análise Espaço-Temporal
4.
Artigo em Inglês | MEDLINE | ID: mdl-23792378

RESUMO

Precious corals are soft corals belonging to the family Coralliidae (Anthozoa: Octocorallia: Alcyonacea) and class Anthozoa, whose skeletal axes are used for jewelry. The family Coralliidae includes ca. 40 species and was originally thought to comprise of the single genus Corallium. In 2003, Corallium was split into two genera, Corallium and Paracorallium, and seven species were moved to this newly identified genus on the bases of morphological features. Previously, we determined the complete mitochondrial genome sequence of two precious corals Paracorallium japonicum and Corallium konojoi, in order to clarify their systematic positions. The two genomes showed high nucleotide sequence identity, but their gene order arrangements were not identical. Here, we determined three complete mitochondrial genome sequences from the one specimen of Mediterranean Corallium rubrum and two specimens of Corallium elatius coming from Kagoshima (South Japan). The circular mitochondrial genomes of C. rubrum and C. elatius are 18,915bp and 18,969-18,970bp in length, respectively, and encode 14 typical octocorallian protein-coding genes (nad1-6, nad4L, cox1-3, cob, atp6, atp8, and mtMutS, which is an octocoral-specific mismatch repair gene homologue), two ribosomal RNA genes (rns and rnl), and one transfer RNA (trnM). The overall nucleotide differences between C. konojoi and each C. elatius haplotype (T2007 and I2011) are only 10 and 11 nucleotides, respectively; this degree of similarity indicates that C. elatius and C. konojoi are very closely related species. Notably, the C. rubrum mitochondrial genome shows more nucleotide sequence identity to P. japonicum (99.5%) than to its congeneric species C. konojoi (95.3%) and C. elatius (95.3%). Moreover, the gene order arrangement of C. rubrum was the same as that of P. japonicum, while that of C. elatius was the same as C. konojoi. Phylogenetic analysis based on three mitochondrial genes from 24 scleraxonian species shows that the family Coralliidae is separated into two distinct groups, recovering Corallium as a paraphyletic genus. Our results indicate that the currently accepted generic classification of Coralliidae should be reconsidered.


Assuntos
Antozoários/genética , Genes Mitocondriais , Genoma Mitocondrial , Animais , Antozoários/classificação , Composição de Bases , DNA Intergênico , Ordem dos Genes , Região de Controle de Locus Gênico , Filogenia , RNA/genética , Análise de Sequência de DNA
5.
Biol Bull ; 222(1): 17-25, 2012 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-22426628

RESUMO

The coiling pattern of the whip black coral Cirrhipathes sp. (Antipatharia, Antipathidae) was studied in four sites of the Bunaken Marine Park (North Sulawesi, Indonesia) characterized by different hydrodynamic conditions. The colonies show a helicospiral growth, with the polyps irregularly arranged on the external convex side of the turns of the stem. Only the colonies living in a very slow current environment reach the greatest lengths (up to 5 m) and show the highest number of rotations (up to 10, 3600°). The turns shape changes along the stem of the colonies, from the base to the apex, as evidenced by the ratio between the pitch and the diameter of each coil. In particular, the turns close to the basal plate have a smaller diameter and a larger pitch, while in the most distal turns, the diameter increases and the pitch decreases concurrently. We hypothesize that the shape variation of the whorls is triggered by the relationship between the growing stem and the intensity of the prevailing current. In this way, the colony can initially grow fast, moving away from the bottom, and then extend into the current, maximizing the plankton capture.


Assuntos
Estruturas Animais/crescimento & desenvolvimento , Antozoários/crescimento & desenvolvimento , Meio Ambiente , Estruturas Animais/fisiologia , Animais , Antozoários/fisiologia , Padronização Corporal , Hidrodinâmica , Especificidade da Espécie
6.
Mar Environ Res ; 76: 97-107, 2012 May.
Artigo em Inglês | MEDLINE | ID: mdl-22000703

RESUMO

Harmful benthic microalgae blooms are an emerging phenomenon causing health and economic concern, especially in tourist areas. This is the case of the Mediterranean Sea, where Ostreopsis ovata blooms occur in summer, with increasing regularity. Ostreopsis species produce palytoxin (PTX) and analogues, and a number of deaths directly associated with the ingestion of PTX contaminated seafood have been reported. PTX is considered one of the most toxic molecules occurring in nature and can provoke severe and sometimes lethal intoxications in humans. So far in temperate areas, O. ovata blooms were reported to cause intoxications of humans by inhalation and irritations by contact. In addition, invertebrate mass mortalities have been reported, possibly linked to O. ovata blooms, although other causes cannot be ruled out, such as oxygen depletion or high seawater temperature. In order to improve our knowledge about the direct toxicity of this species on invertebrate and vertebrate marine organisms, we performed an ecotoxicological screening to investigate the toxic effects of different concentrations of O. ovata (cultured in the laboratory and sampled in the field during blooms) on crustaceans and fish as model organisms. Artemia salina, Tigriopus fulvus, and Amphibalanus amphitrite larvae and juveniles of the sea bass Dicentrarchus labrax were used as model species. Toxic effects associated with cultured O. ovata cells were investigated using a crossed design: testing two different temperatures (20 and 25 °C), four different cell concentrations, and four treatments (untreated O. ovata culture, filtered and resuspended algal cells, growth medium devoid of algal cells, and sonicated algal cells). The results indicate that the toxicity of cultured O. ovata is related to the presence of living O. ovata cells, and that this effect is amplified by temperature. Furthermore, both tests with laboratory cultured algae and field sampled cells pointed out that A. salina is the most sensitive species even at concentrations below the Environmental Alarm Threshold set by the Italian Ministry of Health. Some possible explanations of such sensitivity are discussed, taking into account evidence of O. ovata cells ingestion and the activity of its toxins on the Na⁺/K⁺-ATPase.


Assuntos
Organismos Aquáticos/efeitos dos fármacos , Dinoflagellida/química , Proliferação Nociva de Algas , Toxinas Marinhas/toxicidade , Animais , Bass , Bioensaio , Crustáceos/efeitos dos fármacos , Dose Letal Mediana , Temperatura
7.
Toxicon ; 57(3): 408-20, 2011 Mar 01.
Artigo em Inglês | MEDLINE | ID: mdl-21145339

RESUMO

Harmful benthic microalgae blooms represent an emergent phenomenon in temperate zones, causing health, ecological and economic concern. The main goal of this work was to compile records of Ostreopsis at large temporal and spatial scales, in order to study the relationship between cell abundances, the periodicity and intensity of the blooms and the role of sea water temperature in 14 Spanish, French, Monegasque and Italian sites located along the northern limits of the Mediterranean Sea. General trends were observed in the two considered basins: the north-western Mediterranean Sea, in which higher cell abundances were mostly recorded in mid-summer (end of July), and the northern Adriatic Sea where they occur in early fall (end of September). The sea-water temperature does not seem to be a primary driver, and the maximal abundance periods were site and year specific. Such results represent an important step in the understanding of harmful benthic microalgae blooms in temperate areas, and provide a good base for policy makers and managers in the attempt to monitor and forecast benthic harmful microalgae blooms.


Assuntos
Demografia , Dinoflagellida/crescimento & desenvolvimento , Proliferação Nociva de Algas , França , Itália , Mar Mediterrâneo , Dinâmica Populacional , Espanha , Temperatura
8.
Philos Trans R Soc Lond B Biol Sci ; 362(1477): 95-111, 2007 Jan 29.
Artigo em Inglês | MEDLINE | ID: mdl-17405209

RESUMO

The continental shelf of the Ross Sea is one of the Antarctic's most intensively studied regions. We review the available data on the region's physical characteristics (currents and ice concentrations) and their spatial variations, as well as components of the neritic food web, including lower and middle levels (phytoplankton, zooplankton, krill, fishes), the upper trophic levels (seals, penguins, pelagic birds, whales) and benthic fauna. A hypothetical food web is presented. Biotic interactions, such as the role of Euphausia crystallorophias and Pleuragramma antarcticum as grazers of lower levels and food for higher trophic levels, are suggested as being critical. The neritic food web contrasts dramatically with others in the Antarctic that appear to be structured around the keystone species Euphausia superba. Similarly, we suggest that benthic-pelagic coupling is stronger in the Ross Sea than in most other Antarctic regions. We also highlight many of the unknowns within the food web, and discuss the impacts of a changing Ross Sea habitat on the ecosystem.


Assuntos
Ecossistema , Euphausiacea/fisiologia , Peixes/fisiologia , Cadeia Alimentar , Camada de Gelo , Plâncton/fisiologia , Movimentos da Água , Animais , Regiões Antárticas , Oceanografia , Oceanos e Mares
9.
Mar Pollut Bull ; 55(1-6): 30-41, 2007.
Artigo em Inglês | MEDLINE | ID: mdl-17010997

RESUMO

The assessment of the ecological status, as required by the Water Framework Directive (WFD), plays an important role in coastal zone management, but only a small number of ecological indices are applicable on rocky bottoms. In this study, we apply a previously defined ecological quality index based on the cartography of littoral and upper-sublittoral rocky-shore communities (CARLIT), based on the sensitivity of algae dominated communities to anthropogenic impacts along a moderate urban gradient. We also apply this index in four Marine Protected Areas (MPAs), proposed as reference sites at a regional scale. After comparing the outputs with water variables and other quality indices, we can affirm that (1) the CARLIT index is suitable to detect different kinds of anthropogenic pressures, that (2) the choice of proper reference sites is a focal point in the fulfilment of the WFD (Water Framework Directive) and that (3) historical data are important to define reference conditions and the degradation of ecological status.


Assuntos
Bactérias/crescimento & desenvolvimento , Conservação dos Recursos Naturais/métodos , Ecossistema , Monitoramento Ambiental/estatística & dados numéricos , Eucariotos/crescimento & desenvolvimento , Biologia Marinha/métodos , Água do Mar/química , Urbanização/tendências , Monitoramento Ambiental/métodos , Geografia , Itália , Mar Mediterrâneo , Densidade Demográfica , Valores de Referência
10.
Microsc Res Tech ; 62(4): 327-35, 2003 Nov 01.
Artigo em Inglês | MEDLINE | ID: mdl-14534906

RESUMO

Several sponge species incorporate a wide range of foreign material. Whether such material is actively selected by the sponge is controversial. Here we compare the available suspended matter and the sediment incorporated in the tissue of the demosponge Chondrosia reniformis. Field observations and laboratory experiments indicate that this species selects and incorporates only siliceous materials, in particular quartz particles and opal sponge spicules, avoiding carbonate particles. The reaction of ectosome cells of Chondrosia depends on the forms of silica: after settlement of crystalline quartz particles on the sponge surface, the pinacocytes contract uniformly, giving rise to a ruffled surface that remains throughout the incorporation of foreign material. In contrast, the opal spicules elicit a motile response in pinacocytes, which cover the spicules as a result. After incorporation, while the opal spicules remain unaltered within sponge tissue, the engulfed quartz particles are quickly etched, reduced in size, and released from the sponge. The etching of quartz particles by C. reniformis is produced by ascorbic acid, and is the first evidence of such activity from the animal kingdom. Ascorbic acid has been found to change the quartz surface features, which leads to an increased radical production and a consequent dissolution of quartz. This process does not occur on opal spicules.


Assuntos
Poríferos/efeitos dos fármacos , Poríferos/fisiologia , Dióxido de Silício/farmacologia , Animais , Poríferos/ultraestrutura
11.
Biomol Eng ; 20(4-6): 291-8, 2003 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-12919811

RESUMO

An underwater device, able to favour the sea auto-cleaning capacities, is herein described. This system, called MUDS (marine underwater depuration system), consists of a percolating filter and is placed at sea over an urban sewage outflow of a submarine pipeline. Due to the density difference, the water effluent flows through the percolating filter: this favours the mixing and a prompt recycling of organic matter, activating a marine trophic web. Rich microbenthic communities develop on the MUDS, both interstitially, inside the filter, and on the structure. The community mainly consists of ciliates, nematodes, harpacticoid copepods and polychaetes, all of which being organisms that increase the depuration efficiency by consumption of organic matter. This structure acts also as a deterrent for the illegal trawling activity in the area, and attracts large numbers of several finfish species, thus working as a fish aggregating device (FAD). It is possible to utilise this underwater device for medium littoral towns with strong differences in effluent discharges during the year, where the use of land-built effluent treatment plants is too expensive.


Assuntos
Reatores Biológicos/microbiologia , Ecossistema , Biologia Marinha/instrumentação , Biologia Marinha/métodos , Esgotos/microbiologia , Microbiologia da Água , Poluentes Químicos da Água/metabolismo , Purificação da Água/instrumentação , Biofilmes , Desenho de Equipamento , Análise de Falha de Equipamento , Resíduos Industriais/prevenção & controle
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