Search results for "Mesopelagic zone"

showing 8 items of 8 documents

Diversity and distribution of marine heterotrophic bacteria from a large culture collection

2020

16 pages, 5 figures, 3 tables, supplementary information https://doi.org/10.1186/s12866-020-01884-7

DNA BacterialMicrobiology (medical)Deep oceanMesopelagic zonelcsh:QR1-502Bacterial isolates; Deep ocean; Photic ocean; DiversityDNA RibosomalMicrobiologyDeep sealcsh:MicrobiologyBathyal zone03 medical and health sciencesMarine bacteriophageRNA Ribosomal 16SGammaproteobacteriaMediterranean SeaPhotic zone14. Life underwaterAtlantic OceanIndian OceanPhotic oceanPhylogeny030304 developmental biology0303 health sciencesDiversityPacific OceanBacteriabiologyArctic Regions030306 microbiologyEcologyAlphaproteobacteriaHeterotrophic ProcessesSequence Analysis DNAbiology.organism_classificationPhylogeography13. Climate actionAphotic zoneBacterial isolatesWater MicrobiologyResearch Article
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Different key roles of mesoscale oceanographic structures and ocean bathymetry in shaping larval fish distribution pattern: A case study in Sicilian …

2016

Fish larvae data collected in year 2009 were used to examine the effects of particular environmental conditions on the structure of larvalassemblages in two oligotrophic Mediterranean areas (the Southern Tyrrhenian Sea and the Strait of Sicily). For this purpose, relationships with environmental variables (temperature, salinity and fluorescence), zooplankton biomass, water circulation and bathymetry are discussed. Hydrodynamic conditions resulted very differently between two study areas. The Southern Tyrrhenian Sea was characterized by moderate shallow circulation compared to the Strait of Sicily. In this framework, distribution pattern of larval density in the Tyrrhenian Sea was mainly dri…

Settore BIO/07 - Ecologia0106 biological sciences010504 meteorology & atmospheric sciencesMesopelagic zoneSettore BIO/05 - ZoologiaMesoscale oceanographic structureIchthyoplankton Larval fish assemblages Environmental conditions Mesoscale oceanographic structure Southern Tyrrhenian Sea Strait of SicilyAquatic ScienceOceanography01 natural sciencesDemersal zoneLarval fish assemblagesOcean gyreBathymetryEnvironmental conditionsEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesgeographygeography.geographical_feature_categorybiology010604 marine biology & hydrobiologyFront (oceanography)Pelagic zoneIchthyoplanktonbiology.organism_classificationFisheryStrait of SicilyOceanographyClupeidaeSouthern Tyrrhenian SeaIchthyoplanktonGeology
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Mesonia oceanica sp. Nov., isolated from oceans during the tara oceans expedition, with a preference for mesopelagic waters

2020

10 pages, 4 figures, 3 tables

Mesopelagic zoneMesonia oceanicaMicrobiology03 medical and health sciencesMarine bacteriophageBotany14. Life underwaterGenome sizeEcology Evolution Behavior and Systematics030304 developmental biology0303 health sciencesbiologyStrain (chemistry)030306 microbiologyMarine bacteriaTaxogenomicsGeneral Medicinebiology.organism_classification16S ribosomal RNAFlavobacteriaceaeHalophilebody regionsMesopelagic zoneMesoniaFlavobacteriaceaeBacteria
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Signals from the deep-sea: Genetic structure, morphometric analysis, and ecological implications of Cyclothone braueri (Pisces, Gonostomatidae) early…

2020

Abstract Cyclothone braueri (Stomiiformes, Gonostomatidae) is a widely distributed fish inhabiting the mesopelagic zone of marine tropical and temperate waters. Constituting one of the largest biomasses of the ocean, C. braueri is a key element in most of the ecological processes occurring in the twilight layer. We focused on the ecological processes linked to early life stages in relation to marine pelagic environmental drivers (temperature, salinity, food availability and geostrophic currents) considering different regions of the Central Mediterranean Sea. A multivariate morphometric analysis was carried out using six parameters with the aim of discerning different larval morphotypes, whi…

Tyrrhenian Sea0106 biological sciencesGenetic StructuresMesopelagic zoneAquatic ScienceOceanography010603 evolutionary biology01 natural sciencesLarvaeMediterranean seaGeneticsMediterranean SeaAnimalsCiliophoraStomiiformesbiologyEcologyMorphometry010604 marine biology & hydrobiologyFishesPelagic zoneGeneral MedicineFish populationRemote sensingIchthyoplanktonbiology.organism_classificationPollutionStrait of SicilyGenetic divergenceMultivariate analysisLarvaIchthyoplanktonGenetic structureMesopelagic zoneGonostomatidaeMarine Environmental Research
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First record of the enigmatic coleoid genus Longibelus from Sakhalin (Far East Russia): a contribution to our understanding of Cretaceous coleoid hab…

2021

AbstractA newly collected specimen of the enigmatic coleoid genus Longibelus is recorded from lower Turonian strata along the River Shadrinka in Sakhalin (Russian Far East). To date, this is the first record of Late Cretaceous coleoid cephalopods from the island and, in fact, from the entire Pacific coast of the Russian Federation. Lithological characteristics, coupled with published geochemical analyses (δ13C and Corg content), suggest the habitat of this coleoid taxon to have been the middle to outer (i.e. distal) shelf. Its provenance from the stratigraphical level that is known as the Scaphites Event, characterised by a mass occurrence of Scaphites and Yesoites, may be indicative of occ…

AmmoniteProvenancebiologyMesopelagic zoneScaphitesFossil man. Human paleontologyGN282-286.7PaleontologyWest-Sakhalin Mountainsbiology.organism_classificationQE701-760Cretaceouslanguage.human_languageLower TuronianPaleontologyGeographyTaxonCephalopodaJapanGenuslanguageFar EastColeoideaSwiss Journal of Palaeontology
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Anisakis infections in lantern fish (Myctophidae) from the Arabian Sea: A dual role for lantern fish in the life cycle of Anisakis brevispiculata?

2018

Abstract Data on geographic distribution and life cycles of parasitic nematodes of the genus Anisakis in tropical oceanic regions are extremely scarce. Myctophids (lantern fishes) are a key component of mesopelagic trophic webs and could play a significant role in the transmission of Anisakis spp. in these regions. We examined Anisakis infections in a sample of 160 myctophids collected in three localities from the Indian Exclusive Economic Zone (Arabian Sea) in 2015–16. Due to the poor condition of fish, a combination of morphological data and molecular barcoding was used to identify myctophids. Of the 104 specimens that could be identified at least to genus level, 75 (72.1%) were assigned …

0301 basic medicineLarvabiologyMesopelagic zoneZoologyKogiidae030108 mycology & parasitologyAquatic ScienceOceanographybiology.organism_classificationAnisakisPredation03 medical and health sciences030104 developmental biologyGenusDiaphusTrophic levelDeep Sea Research Part I: Oceanographic Research Papers
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Spatial Distribution and Abundance of Mesopelagic Fish Biomass in the Mediterranean Sea

2020

Mesopelagic fish, being in the middle of the trophic web, are important key species for the marine environment; yet limited knowledge exists about their biology and abundance. This is particularly true in the Mediterranean Sea where no regional assessment is currently undertaken regarding their biomass and/or distribution. This study evaluates spatial and temporal patterns of mesopelagic fish biomass in the 1994–2011 period. We do that for the whole Mediterranean Sea using two well-established statistical models, the Generalized Additive Model (GAM) and Random Forest (RF). Results indicate that the bathymetry played an important role in the estimation of mesopelagic fish biomass and in its …

Mediterranean climateGlobal and Planetary ChangeBiomass (ecology)Random Forestlcsh:QH1-199.5Mesopelagic zonemesopelagic fishGeneralized additive modelOcean Engineeringlcsh:General. Including nature conservation geographical distributionAquatic Sciencegeneralized additive modelOceanographySpatial distributionspatial modelOceanographyMediterranean seaAbundance (ecology)biomass distributionMediterranean Sealcsh:Qlcsh:ScienceWater Science and TechnologyTrophic level
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Assessing divergence time of Spirulida and Sepiida (Cephalopoda) based on hemocyanin sequences

2011

Abstract The phylogenetic position of the mesopelagic decabrachian cephalopod Spirula is still a matter of debate. Since hemocyanin has successfully been used to calibrate a molecular clock for many molluscan species, a molecular clock was calculated based on this gene with special attention to the cephalopod genera Spirula and Sepia. The obtained partial sequence comprising ca., one third (3567 bp) of the complete gene is similar to that of Sepia officinalis. The molecular clock was calibrated using the splits of Gastropoda–Cephalopoda (ca. 550 ± 50 mya) and Heterobranchia–Vetigastropoda (ca. 380 ± 10 mya). The resulting hemocyanin-based molecular clock is stable, and the estimated diverge…

Phylogenetic treebiologyMesopelagic zonemedicine.medical_treatmentHemocyaninSequence Analysis DNAbiology.organism_classificationDivergenceCephalopodEvolution MolecularPaleontologyCephalopodaEvolutionary biologyHemocyaninsGeneticsmedicineAnimalsSpirulidaSepiaMolecular clockSequence AlignmentMolecular BiologyPhylogenyEcology Evolution Behavior and SystematicsMolecular Phylogenetics and Evolution
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