Search results for "Pliensbachian"

showing 5 items of 5 documents

Macroecological properties of ammonites : spatial distribution, phylogeny, and faunal similarity

2016

The present work, which lies between macroecology and macroevolution, focuses on the spatio-temporal dynamics of early Pliensbachian ammonites of the western Tethys. Two main questions are addressed: how does inter-assemblage compositional similarity decrease with geographical distance? What is the relationship between species range size and phylogeny, species duration and latitudinal position?Ammonite dispersal dynamics are studied through a multi-scale Similarity Distance Decay analysis. We show that their long-distance dispersal is facilitated when the environment is more homogeneous and that it is not related to their morphology. This suggests that their long-distance dispersal occurred…

Pliensbachien inférieurPhylogénieTéthys de l’OuestDistribution spatialeDispersalDispersionAmmonitesProvincialismeGeological durationRapoport’s ruleDurée de vieEarly PliensbachianProvincialismSpatial distribution[SDU.STU.PG] Sciences of the Universe [physics]/Earth Sciences/PaleontologyMacroecologyMacroécologieRègle de RapoportPhylogenyWestern Tethys
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Ammonite diversity and its palaeobiogeographical structure during the early Pliensbachian (Jurassic) in the western Tethys and adjacent areas.

2009

14 pages; International audience; The early Pliensbachian (Early Jurassic) is known as a time of marked provincialism in the marine realm, notably between the Mediterranean Tethys and North–West Europe. In order to test this observation quantitatively, we compiled 104 locality-level species lists from those areas based on a comprehensive revision of early Pliensbachian ammonites. With this dataset, we also explore the relationship between ammonite richness and biogeography at the scale of the sub-chronozone during the early Pliensbachian. Using various multivariate statistics and rarefaction techniques, we show that: (i) there is a sharp contrast between the NW European (NWE) and the Medite…

Mediterranean climateAmmoniteRange (biology)EcologyBiogeographyEarly JurassicBiodiversityPaleontologyPliensbachianBiodiversityOceanographylanguage.human_languagePaleontologyBiogeographyAmmoniteslanguageRarefaction (ecology)ChronozoneSpecies richnessEcology Evolution Behavior and SystematicsGeologyEarth-Surface ProcessesWestern Tethys[ SDU.STU.PG ] Sciences of the Universe [physics]/Earth Sciences/Paleontology
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Gauging scale effects and biogeographical signals in similarity distance decay analyses: an Early Jurassic ammonite case study.

2016

17 pages; International audience; In biogeography, the similarity distance decay (SDD) relationship refers to the decrease in compositional similarity between communities with geographical distance. Although representing one of the most widely used relationships in biogeography, a review of the literature reveals that: (1) SDD is influenced by both spatial extent and sample size; (2) the potential effect of the phylogenetic level has yet to be tested; (3) the effect of a marked biogeographical structuring upon SDD patterns is largely unknown; and (4) the SDD relationship is usually explored with modern, mainly terrestrial organisms, whereas fossil taxa are seldom used in that perspective. U…

0106 biological sciences010506 paleontologyBiogeographyscale effectsContext (language use)Biology010603 evolutionary biology01 natural sciences[ SDE ] Environmental SciencesPaleontologySimilarity (network science)Geographical distanceprovincialismEcology Evolution Behavior and Systematicsbiogeography0105 earth and related environmental sciences[ SDU.STU.PG ] Sciences of the Universe [physics]/Earth Sciences/PaleontologyAmmoniteammonitesPhylogenetic treePaleontologyPliensbachianlanguage.human_languageTaxonsimilarity distance decay[SDE]Environmental ScienceslanguageBiological dispersal[SDU.STU.PG]Sciences of the Universe [physics]/Earth Sciences/Paleontology
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Distribution of clay minerals in Early Jurassic Peritethyan seas: palaeoclimatic significance inferred from multiproxy comparisons.

2009

13 pages; International audience; A set of published, unpublished, and new clay mineral data from 60 European and Mediterranean localities allows us to test the reliability of clay minerals as palaeoclimatic proxies for the Pliensbachian–Toarcian period (Early Jurassic) by reconstructing spatial and temporal variations of detrital fluxes at the ammonite biochronozone resolution. In order to discuss their palaeoclimatic meaning, a compilation of low-latitude belemnite δ18O, δ13C, Mg/Ca, and 87Sr/86Sr values is presented for the first time for the whole Pliensbachian– Toarcian period. Once diagenetic and authigenic biases have been identified and ruled out, kaolinite content variation is cons…

AmmoniteMediterranean climatePaleontologyPliensbachianAuthigenicToarcianOceanographyPalaeoclimate[ SDU.STU.ST ] Sciences of the Universe [physics]/Earth Sciences/Stratigraphy[ SDU.STU.GC ] Sciences of the Universe [physics]/Earth Sciences/Geochemistrylanguage.human_languageDiagenesisClay mineralsPaleontology[ SDE.MCG ] Environmental Sciences/Global ChangesPaleoclimatologylanguageKaoliniteSpatial variability[ SDU.STU.CL ] Sciences of the Universe [physics]/Earth Sciences/ClimatologyClay mineralsEcology Evolution Behavior and SystematicsGeologyEarth-Surface Processes
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Data from: Gauging scale effects and biogeographical signals in similarity distance decay analyses: an Early Jurassic ammonite case study

2017

In biogeography, the similarity distance decay (SDD) relationship refers to the decrease in compositional similarity between communities with geographical distance. Although representing one of the most widely used relationships in biogeography, a review of the literature reveals that: (1) SDD is influenced by both spatial extent and sample size; (2) the potential effect of the phylogenetic level has yet to be tested; (3) the effect of a marked biogeographical structuring upon SDD patterns is largely unknown; and (4) the SDD relationship is usually explored with modern, mainly terrestrial organisms, whereas fossil taxa are seldom used in that perspective. Using this relationship, we explore…

medicine and health careSimilarity Distance DecayAmmonitesPliensbachianLife SciencesMedicineearly PliensbachianAmmonitida
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