Search results for "coccolithophores"

showing 10 items of 16 documents

The Uniqueness of Planktonic Ecosystems in the Mediterranean Sea: The Response to Orbital- and Suborbital-Climatic Forcing over the Last 130,000 Years

2016

AbstractThe Mediterranean Sea is an ideal location to test the response of organisms to hydrological transformations driven by climate change. Here we review studies carried out on planktonic foraminifera and coccolithophores during the late Quaternary and attempt the comparison of data scattered in time and space. We highlight the prompt response of surface water ecosystems to both orbital- and suborbital-climatic variations.A markedly different spatial response was observed in calcareous plankton assemblages, possibly due to the influence of the North Atlantic climatic system in the western, central and northern areas and of the monsoon system in the easternmost and southern sites. Orbita…

010506 paleontologyQE1-996.5010504 meteorology & atmospheric sciencesGeologyForcing (mathematics)Environmental Science (miscellaneous)Plankton01 natural scienceslate quaternaryMediterranean seaOceanographyplanktonic foraminiferaClimatologyGeneral Earth and Planetary SciencesEcosystemUniquenessmediterranean seacoccolithophoresGeology0105 earth and related environmental sciencesOpen Geosciences
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The impact of the Little ice age on coccolithophores in the central Mediterranea Sea

2010

The Little Ice Age (LIA) is the last episode of a series of Holocene climatic anomalies. There is still little knowledge on the response of the marine environment to the pronounced cooling of the LIA and to the transition towards the 20th century global warming. Here we present decadal-scale coccolithophore data from four short cores recovered from the central Mediterranean Sea (northern Sicily Channel and Tyrrhenian Sea), which on the basis of <sup>210</sup>Pb activity span the last 200–350 years. The lowermost part of the record of one of the cores from the Sicily Channel, Station 407, which extends down to 1650 AD, is characterized by drastic changes in productivity. Specific…

Coccolithophorelcsh:Environmental protectionStratigraphyAntarctic sea iceLittle ice ageMediterranean seaWater columnlcsh:Environmental pollutionMediterranean SeaCoccolithophoreslcsh:TD169-171.8lcsh:Environmental sciencesHoloceneLIAlcsh:GE1-350Global and Planetary ChangebiologyCoccolithophores trace elements geochemistryGlobal warmingPaleontologybiology.organism_classificationOceanographyProductivity (ecology)lcsh:TD172-193.5Little Ice AgeHydrographyGeology
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Uniqueness of Planktonic Ecosystems in the Mediterranean Sea: The Response to Orbital- and Suborbital-Climatic Forcing over the Last 130,000 Years

2016

The Mediterranean Sea is an ideal location to test the response of organisms to hydrological transformations driven by climate change. Here we review studies carried out on planktonic foraminifera and coccolithophores during the late Quaternary and attempt the comparison of data scattered in time and space. We highlight the prompt response of surface water ecosystems to both orbital- and suborbital-climatic variations. A markedly different spatial response was observed in calcareous plankton assemblages, possibly due to the influence of the North Atlantic climatic system in the western, central and northern areas and of the monsoon system in the easternmost and southern sites. Orbital-induc…

CoccolithophorePlanktonic Foraminifera; Coccolithophores; Mediterranean Sea; Late QuaternaryMediterranean SeaPlanktonic ForaminiferaLate Quaternary
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Coccolithophores in Water Samples and Fossil Assemblages in Sedimentary Archives of the Mediterranean Sea: A Review

2011

Coccolithophores Mediterranean
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Holocene climate variability of the Western Mediterranean: Surface water dynamics inferred from calcareous plankton assemblages

2020

A high-resolution study (centennial scale) has been performed on the calcareous plankton assemblage of the Holocene portion of the Ocean Drilling Program Site 976 (Alboran Sea) with the aim to identify the main changes in the surface water dynamic. The dataset also provided a seasonal foraminiferal sea surface water temperatures (SSTs), estimated using the modern analog technique SIMMAX 28, and it was compared with available geochemical and pollen data at the site. Three main climate shifts were identified as (1) the increase in abundance of Syracosphaera spp. and Turborotalita quinqueloba marks the early Holocene humid phase, during maximum summer insolation and enhanced river runoff. It i…

Mediterranean climate010506 paleontologyArcheology010504 meteorology & atmospheric sciencesPaleoclimate[SHS.ARCHEO]Humanities and Social Sciences/Archaeology and Prehistorymillennial–centennial-scale climate variability[SDE.MCG]Environmental Sciences/Global ChangesPhysical Geography; GeologyForaminifera01 natural sciencesForaminiferaPaleoclimatologyCoccolithophorescoccolithophore14. Life underwaterComputingMilieux_MISCELLANEOUSHolocene0105 earth and related environmental sciencesEarth-Surface ProcessesGlobal and Planetary ChangeEcologybiologyHoloceneMillennial-centennial-scale climate variabilityPaleontologyDrilling15. Life on landPlanktonbiology.organism_classificationAlboran SeaOceanography13. Climate actionMillennial-centennial scale climate variability[SDU.STU.PG]Sciences of the Universe [physics]/Earth Sciences/PaleontologySurface waterCalcareousGeologyPaleoproductivity
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Living Coccolithophores from the Gulf of Sirte (Southern Mediterranean Sea) during the summer of 2008

2012

The Gulf of Sirte is a largely unexplored area in the southernmost Mediterranean Sea.We are presenting here 2008 summer data on the distribution pattern of living coccolithophores, a main phytoplankton calcifying group, in 105 samples from 20 stations. The survey includes coastal and offshore stations, enabling us to provide indications on the dynamics of phytoplankton productivity in relation to oceanographic processes. The total coccosphere concentrations show higher values in the offshore stations and lower ones for coastal sites. Umbellosphaera tenuis, Emiliania huxleyi, Florisphaera profunda, Syracosphaera pulchra HOL (Calyptrosphaera oblonga) and Rhabdosphaera spp. dominate the assemb…

summerpaleoproductivityspatial distributionCoccolithophores EcologybiozonationPaleontologyvertical distributionMediterraneanGEO/01 - PALEONTOLOGIA E PALEOECOLOGIAanticyclonetaxonomyoceanic circulationGulf of Sirte; Mediterranean Sea; Anticyclone; Coccolith; Community composition; Oceanic circulation; Paleoproductivity; Phytoplankton; Spatial distribution; Species occurrence; Summer; Taxonomy; Vertical distributionphytoplanktonMediterranean Seacommunity compositionspecies occurrenceGulf of Sirtecoccolith
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The Messian Salinity Crisis and the catastrophic Zanclean flooding of the dessicated Mediterranean: the Red Sea record

2013

Evaporites Red Sea Foraminifera Coccolithophores Stable isotopes
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Calcareous Nannofossil Assemblages from the Central Mediterranean over the last Four Centuries.

2009

Paleoceanography Coccolithophores
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Ten Years of Paleoceanographic Studies at ODP Site 963 (Central Mediterranean Sea)

2014

The geographical location, the shape and the circulation pattern makes the Mediterranean Sea an ideal laboratory to study the interplay between different climatic systems, abrupt climate changes and the response of marine ecosystems. The Ocean Drilling Program Site 963 was drilled in the Northwestern part of the Sicily Channel, the sill that divides the western from the eastern Mediterranean Sea. Numerous papers have been published on Site 963 sediments in the last decade, investigating Mediterranean paleoceanographic themes. Here we offer a synthetic framework of these investigations carried out by sub-centennial resolution. We present the whole sequence of suborbital climatic oscillations…

ForaminiferaDeep chlorophyll maximumCoccolithophores late quaternary mediterranean sea planktonic foraminifera.OceanographyMediterranean seabiologyInterglacialDeglaciationMarine ecosystemStadialbiology.organism_classificationGeologyTeleconnection
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Productivity modes in the Mediterranean Sea during Dansgaard–Oeschger (20,000–70,000 yr ago) oscillations

2013

The study of planktonic organisms during abrupt climatic variations of the last glacial period (Dansgaard-Oeschger oscillations, D-O) may reveal important insights on climatic, oceanographic and biological interactions. Here we present planktic foraminifera and coccolithophore data collected at the Ocean Drilling Program Site 963 (Sicily Channel), with a mean sampling resolution of respectively 43.5 and 98.9. yr, over the interval between 70,000 and 20,000. yr ago. The paleoenvironmental reconstruction suggests that three different scenarios can be seen across each D-O cycle: 1. oligotrophic surface water and a deep thermocline for the early Interstadials; 2. a Deep Chlorophyll Maximum and …

010506 paleontology010504 meteorology & atmospheric sciencesCoccolithophoreMediterraneanOceanography01 natural sciencesForaminifera/dk/atira/pure/sustainabledevelopmentgoals/life_below_waterWater columnMediterranean seaPaleoproductivity Dansgaard–Oeschger Mediterranean Planktonic Foraminifera CoccolithophoresCoccolithophores14. Life underwaterStadialGlacial periodSDG 14 - Life Below WaterEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesEarth-Surface ProcessesDeep chlorophyll maximumbiologyPaleontologybiology.organism_classificationOceanography13. Climate actionClimatologyPlanktonic ForaminiferaDansgaard-OeschgerThermoclineGeologyPaleoproductivityPalaeogeography, Palaeoclimatology, Palaeoecology
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