Search results for "Microbial mat"

showing 10 items of 24 documents

Carbonate stromatolites from a Messinian hypersaline setting in the Caltanissetta Basin, Sicily: petrographic evidence of microbial activity and rela…

2010

Lower Messinian stromatolites of the Calcare di Base Formation at Sutera in Sicily record periods of low sea-level, strong evaporation and elevated salinity, thought to be associated with the onset of the Messinian Salinity Crisis. Overlying aragonitic limestones were precipitated in normal to slightly evaporative conditions, occasionally influenced by an influx of meteoric water. Evidence of bacterial involvement in carbonate formation is recorded in three dolomite-rich stromatolite beds in the lower portion of the section that contain low domes with irregular crinkly millimetre-scale lamination and small fenestrae. The dominant microfabrics are: (i) peloidal and clotted dolomicrite with c…

CalciteMicritebiologyStratigraphyDolomiteMineralogyGeologybiology.organism_classificationPetrographychemistry.chemical_compoundchemistryStromatoliteMeteoric waterCarbonateMicrobial matGeologySedimentology
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Genesis of the Lower Triassic bonebeds from Gogolin (S Poland): The impact of microbial mats on trapping of vertebrate remains

2017

Three bone-bearing horizons, consis ting of seven bone-bearing beds with fi sh and reptile remains, were recently discovered in the Uppermost Röt (Buntsandstein, Lower Tri assic) peritidal and shallow marine carbonates in the vi- cinity of Gogolin (S Poland). The aim of this study is to reco gnize the genesis and deposi tional environments of the bonebeds. Detailed fi eldwork, microfacies analysis, and SEM-EDS anal ysis reveal that the vertebrate remains occur to a great extent alongside evidence for former microbial activity. The reptile remains represent at least Dactylosaurus and Nothosaurus (Sauropterygia) genera, while the fi sh remains belong to the Chondrichthyes and Actinopterygii. …

Dactylosaurus010506 paleontologyIntertidal zonebonebed010502 geochemistry & geophysicsOceanography01 natural sciencesSedimentary depositional environmentPaleontologyNothosaurusstromatolitesMicrobial matEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesEarth-Surface ProcessesSabkhageographygeography.geographical_feature_categorybiologyEcologyActinopterygiimicrobialitesPaleontologybiology.organism_classificationtidal flatSauropterygiaLower TriassicGeologyPalaeogeography Palaeoclimatology Palaeoecology
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New Microbe Killers: Self-Assembled Silver(I) Coordination Polymers Driven by a Cagelike Aminophosphine

2019

New Ag(I) coordination polymers, formulated as [Ag(&micro

Electrospray ionizationInfrared spectroscopymetal-organic frameworks (mofs)02 engineering and technologyCrystal structure010402 general chemistry01 natural scienceslcsh:TechnologyArticleCoordination complexantimicrobial materialsGeneral Materials Sciencesilver135-triaza-7-phospaadamantanelcsh:Microscopylcsh:QC120-168.85chemistry.chemical_classificationlcsh:QH201-278.5ChemistryHydrogen bondlcsh:TPolymer021001 nanoscience & nanotechnology0104 chemical sciencesCrystallographycoordination polymersMicrocrystallinelcsh:TA1-2040coordination chemistrylcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineering0210 nano-technologylcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971Powder diffractionMaterials
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Taphonomy of insects in carbonates and amber

2004

Abstract The major taphonomic processes that control insect preservation in carbonate rocks (limestones, travertines and nodules) are biological: insect size and wingspan, degree of decomposition, presence of microbial mats, predation and scavenging; environmental: water surface tension, water temperature, density and salinity, current activity; and diagenetic: authigenic mineralisation, flattening, deformation, carbonisation. The major taphonomic processes that control the preservation of insects in fossil resins (amber and copal) are different, but can be considered under the same headings – biological: presence of resin producers, size and behaviour of insects; environmental: latitude, c…

Extinction eventTaphonomyExtinctionEcologyfungiPaleontologyAuthigenicOceanographyDiagenesisCarbonate rockSedimentary rockMicrobial matEcology Evolution Behavior and SystematicsGeologyEarth-Surface ProcessesPalaeogeography, Palaeoclimatology, Palaeoecology
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Carbonate precipitation in the alkaline lake Specchio di Venere (Pantelleria Island, Italy) and the possible role of microbial mats

2016

Abstract Alkaline lakes like the hydrothermally affected lake Specchio di Venere (Pantelleria Island, Central Mediterranean) are typical geological settings harbouring calcified microbial mats. The present work is focused on the discrimination between biotic and abiotic processes driving carbonate precipitation in this lake, using hydrochemical, mineralogical and isotopic data. Hydrochemical analyses demonstrate that the lake is nearly 10−fold supersaturated with regard to aragonite and seasonally reaches hydromagnesite supersaturation. Microscopic observations depict organosedimentary laminated structures consisting of microbial communities and aragonitic precipitates, which are rather dis…

Mediterranean climate010504 meteorology & atmospheric sciencesδ13CAragoniteGeochemistryAuthigenicengineering.material010502 geochemistry & geophysics01 natural sciencesPollutionDiagenesisAlkaline lake Carbonate precipitation Hydrochemistry Pantelleriachemistry.chemical_compoundchemistry13. Climate actionGeochemistry and PetrologyengineeringEnvironmental ChemistryCarbonate14. Life underwaterMicrobial matHydromagnesiteGeology0105 earth and related environmental sciences
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Between a rock and a soft place: the role of viruses in lithification of modern microbial mats.

2021

10 pages; International audience; Stromatolites are geobiological systems formed by complex microbial communities, and fossilized stromatolites provide a record of some of the oldest life on Earth. Microbial mats are precursors of extant stromatolites; however, the mechanisms of transition from mat to stromatolite are controversial and are still not well understood. To fully recognize the profound impact that these ecosystems have had on the evolution of the biosphere requires an understanding of modern lithification mechanisms and how they relate to the geological record. We propose here viral mechanisms in carbonate precipitation, leading to stromatolite formation, whereby viruses directl…

Microbiology (medical)Geologic SedimentsBiogeochemical cycleviral lifestyleEarth sciencevirus–host interactionsGeologic recordMicrobiologyMESH: Host-Parasite InteractionsHost-Parasite InteractionsMESH: Viruses03 medical and health sciencesGeologic time scalebacteriophageVirologylytic/lysogenic cyclevirusesMicrobial matstromatoliteLithification030304 developmental biologyearly Earth0303 health sciencesBacteriabiology030306 microbiologyMESH: Virus Physiological PhenomenamicrobialitesBiosphereexopolymeric substances (EPS)MESH: Geologic Sedimentsbiology.organism_classificationEarly Earthmicrobial matMESH: BacteriaInfectious Diseases[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologyStromatolite13. Climate actionCRISPRbiosignaturesVirus Physiological Phenomena
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Vertical structure of bi-layered microbial mats from Byers Peninsula, Maritime Antarctica

2013

AbstractA summer study of the vertical structure of bi-layered microbial mats was carried out on Byers Peninsula (Livingston Island, South Shetland Islands). These benthic communities had a common basic structure that consisted of two distinct layers differing in composition, morphology and colour. Our sampling focused on mats showing more layering, which thrived over moist soils and at the bottom of ponds. The photosynthetic pigments analysis performed by high-performance liquid chromatography demonstrated a major occurrence of cyanobacteria and diatoms on these mats, the former being more abundant in relative terms on the surface and composed by morphospecies grouping into orders Oscillat…

NostocalesBiomass (ecology)Chlorophyll aGeologyScytoneminBiologyOceanographybiology.organism_classificationchemistry.chemical_compoundchemistryBenthic zoneBotanyOscillatorialesMicrobial matChroococcalesEcology Evolution Behavior and SystematicsAntarctic Science
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Total mercury and methyl-mercury contents and accumulation in polar microbial mats.

2014

Although polar regions are considered isolated and pristine areas, the organisms that inhabit these zones are exposed to global pollution. Heavy metals, such as mercury, are global pollutants and can reach almost any location on Earth. Mercury may come from natural, volcanic or geological sources, or result from anthropogenic sources, in particular industrial or mining activities. In this study, we have investigated one of the most prominent biological non-marine communities in both polar regions, microbial mats, in terms of their Hg and methyl-mercury (MeHg) concentrations and accumulation capacities. The main hypotheses posed argued on the importance of different factors, and to test them…

PollutionEnvironmental Engineeringmedia_common.quotation_subjectchemistry.chemical_elementIce shelfEnvironmental ChemistryMicrobial matWaste Management and Disposalmedia_commonShetlandPollutantgeographygeography.geographical_feature_categoryArctic RegionsMercuryMethylmercury CompoundsPollutionMercury (element)OceanographyArcticchemistryVolcanoBiofilmsEnvironmental scienceWater MicrobiologyWater Pollutants ChemicalEnvironmental MonitoringThe Science of the total environment
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Discrimination between effects induced by microbial activity and water-rock interactions under hydrothermal conditions according to REE behaviour

2013

AbstractRare earth elements (REE) were investigated in siliceous stromatolites forming in the Specchio di Venere Lake on Pantelleria Island. Chondrite-normalised patterns show significant La enrichments and Eu depletions suggesting that fluids involved in stromatolite growth experienced strong rock-water interactions under hydrothermal conditions. At the same time, enrichments in heavy REE (HREE) with respect to intermediate REE (MREE) suggest that hydrothermal fluids interacted with microbial mats during deposition of the stromatolites. The above-mentioned features suggest that rock-water interactions and bacterial activity were simultaneously recorded in the REE patterns of stromatolites,…

Rare Earth ElementsbiologyRock-water interactionsStromatolites; Rare Earth Elements; Bacterial activity; Rock-water interactions Hydrothermal systemRare earthGeochemistryMineralogyEarth and Planetary Sciences(all)General Medicinebiology.organism_classificationHydrothermal circulationStromatoliteRare Earth ElementHydrothermal systemDeposition (aerosol physics)StromatolitesStromatoliteBacterial activityRock-water interactions Hydrothermal systemMicrobial matBacterial activityGeology
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Community structure and physiological characterization of microbial mats in Byers Peninsula, Livingston Island (South Shetland Islands, Antarctica)

2007

The community structure and physiological characteristics of three microbial mat communities in Byers Peninsula (Livingston Island, South Shetland Islands, Antarctica) were compared. One of the mats was located at the edge of a stream and was dominated by diatoms (with a thin basal layer of oscillatorian cyanobacteria), whereas the other two mats, located over moist soil and the bottom of a pond, respectively, were dominated by cyanobacteria throughout their vertical profiles. The predominant xanthophyll was fucoxanthin in the stream mat and myxoxanthophyll in the cyanobacteria-dominated mats. The sheath pigment scytonemin was absent in the stream mat but present in the soil and pond mats. …

ShetlandEcologybiologyδ13CEcologyδ15NScytoneminbiology.organism_classificationApplied Microbiology and BiotechnologyMicrobiologychemistry.chemical_compoundMicrobial population biologyAlgaechemistrySoil waterMicrobial matFEMS Microbiology Ecology
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