Search results for "Cystoseira sensu lato"

showing 4 items of 4 documents

The invasive Asparagopsis taxiformis hosts a low diverse and less trophic structured molluscan assemblage compared with the native Ericaria brachycar…

2021

Abstract Invasive seaweeds threaten biodiversity and socio-economics values of worldwide marine ecosystems. Understanding to what extent invasive seaweeds can modify local biodiversity is one of the main priorities in conservation ecology. We compared the molluscan assemblage of the invasive Asparagopsis taxiformis with that of the native Ericaria brachycarpa and explore if variation in the molluscan assemblage diversity was related to the substrate attributes (biomass, and thallus, canopy, and interstitial volumes) of the algae. Results showed that A. taxiformis harboured lower diversity and trophic structure of the molluscan assemblage compared to E. brachycarpa. Biomass was the variable …

0106 biological sciencesAsparagopsis taxiformisBiodiversityAquatic ScienceOceanography010603 evolutionary biology01 natural sciencesInvasive speciesRocky shoreCystoseira sensu latoEcosystemTrophic levelBiomass (ecology)biologyEcology010604 marine biology & hydrobiologyfungiEricaria brachycarpaTrophic guildsfood and beveragesBiodiversityGeneral MedicineSeaweedbiology.organism_classificationMolluscs diversityPollutionHabitatRhodophytaMediterranean seaAsparagopsis taxiformisIntroduced SpeciesGlobal biodiversityMarine Environmental Research
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Ecological function of phenolic compounds from mediterranean fucoid algae and seagrasses: An overview on the genus Cystoseira sensu lato and Posidoni…

2020

Biodiversity is undergoing rapid and worrying changes, partially driven by anthropogenic activities. Human impacts and climate change (e.g., increasing temperature and ocean acidification), which act at different spatial scales, represent the most serious threats to biodiversity and ecosystem structure and function. In the Mediterranean Sea, complex systems such as fucoid algae and seagrasses, characterized by a high associated biodiversity, are regularly exposed to natural and anthropogenic pressures. These systems, particularly sensitive to a variety of stressors, evolved several physiological and biochemical traits as a response to the different pressures which they are subjected to. For…

0106 biological sciencesMediterranean climateEcological rolePhenolic compoundBiomarkers; Cystoseira sensu lato; Ecological role; Mediterranean Sea; Phenolic compounds; Posidonia oceanicaBiodiversityOcean EngineeringCystoseira010603 evolutionary biology01 natural scienceslcsh:OceanographyMediterranean seaAlgaelcsh:VM1-989Cystoseira sensu latoMediterranean Sealcsh:GC1-1581<i>cystoseira</i> <i>sensu lato</i>Water Science and TechnologyCivil and Structural EngineeringFunctional ecologybiologyEcology010604 marine biology & hydrobiologySettore BIO/02 - Botanica Sistematicalcsh:Naval architecture. Shipbuilding. Marine engineeringPosidonia oceanicaOcean acidificationBiomarkerbiology.organism_classificationPhenolic compoundsPosidonia oceanicaSettore BIO/03 - Botanica Ambientale E Applicata<i>posidonia oceanica</i>Biomarkers
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Bi- and three-dimensional fractal analysis of the brown seaweed Gongolaria montagnei and their relationship with gastropod molluscs assemblage

2022

Habitat complexity is one of the main influences on biodiversity in marine environments, particularly in coastal areas where foundation seaweeds provide substrate for highly diverse communities. We studied the 2D and 3D fractal dimensions of Gongolaria montagnei (Fucales) over the vegetative season and examine their relationship with the abundance, species richness and morpho-functional groups of the gastropod associated. Overall, the 3D fractal analysis method used here better describes seaweeds structural complexity compared to the traditional 2D fractal analysis, as highlighted by the higher relationship with gastropod assemblage associated to the alga in terms of abundance, number of sp…

Foundation specieCystoseira sensu latoMediterranean SeaMolluscAquatic ScienceFractal dimensionOceanographyPollutionHabitat complexityMarine Pollution Bulletin
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The invasive seaweed Asparagopsis taxiformis erodes the habitat structure and biodiversity of native algal forests in the Mediterranean Sea

2021

Abstract Invasive seaweeds are listed among the most relevant threats to marine ecosystems worldwide. Biodiversity hotspots, such as the Mediterranean Sea, are facing multiple invasions and are expected to be severely affected by the introduction of new non-native seaweeds in the near future. In this study, we evaluated the consequences of the shift from the native Ericaria brachycarpa to the invasive Asparagopsis taxiformis habitat on the shallow rocky shores of Favignana Island (Egadi Islands, MPA, Sicily, Italy). We compared algal biomass and species composition and structure of the associated epifaunal assemblages in homogenous and mixed stands of E. brachycarpa and A. taxiformis. The r…

Marine protected areaBiodiversityAquatic ScienceOceanographyRocky shoreEpifauna diversityCystoseira sensu latoMediterranean SeaMarine ecosystemHabitat shiftSicilyEcosystemAlgaBiomass (ecology)biologyPrimary producersEcologyEricaria brachycarpaBiodiversityGeneral MedicineEutrophicationSeaweedbiology.organism_classificationPollutionRocky shoreGeographyHabitatAsparagopsis taxiformisSpecies richness
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