0000000000222031

AUTHOR

Michael Hofreiter

showing 8 related works from this author

Defining the Island Dwarfing Rate of an Extinct Sicilian Elephant Using Ancient DNA

2020

Evolution on islands, and the often extreme phenotypic changes associated with it, has attracted much interest from evolutionary biologists. However, measuring the rate of change of a particular phenotypic trait of extinct animals can be challenging, due to the incompleteness of the fossil record. Here, we use combined molecular and fossil evidence to define the minimum and maximum rate of dwarfing in an extinct Mediterranean dwarf elephant from Puntali Cave (Sicily). Despite the challenges associated with recovering ancient DNA from warm climates, we successfully retrieved a mitogenome from a sample with an estimated age between 147,000 and 50,000 years. Our results suggest that this speci…

geographygeography.geographical_feature_categoryPleistocenePalaeoloxodonbiologyLineage (evolution)Phenotypic traitbiology.organism_classificationlanguage.human_languageDwarfingAncient DNACaveEvolutionary biologylanguageSicilianSSRN Electronic Journal
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Palaeolithic dogs and Pleistocene wolves revisited: a reply to Morey (2014)

2015

This is a reply to the comments of Morey (2014) on our identification of Palaeolithic dogs from several European Palaeolithic sites. In his comments Morey (2014) presents some misrepresentations and misunderstandings that we remedy here. In contrast to what Morey (2014) propounds, our results suggest that the domestication of the wolf was a long process that started early in the Upper Palaeolithic and that since that time two sympatric canid morphotypes can be seen in Eurasian sites: Pleistocene wolves and Palaeolithic dogs. Contrary to Morey (2014), we are convinced that the study of this domestication process should be multidisciplinary.

ArcheologyGeographyPleistoceneDomesticationArchaeologyJournal of Archaeological Science
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The genetic history of Europeans.

2012

The evolutionary history of modern humans is characterized by numerous migrations driven by environmental change, population pressures, and cultural innovations. In Europe, the events most widely considered to have had a major impact on patterns of genetic diversity are the initial colonization of the continent by anatomically modern humans (AMH), the last glacial maximum, and the Neolithic transition. For some decades it was assumed that the geographical structuring of genetic diversity within Europe was mainly the result of gene flow during and soon after the Neolithic transition, but recent advances in next-generation sequencing (NGS) technologies, computer simulation modeling, and ancie…

Environmental changePrehistoryPopulationPopulation geneticsBiologyBone and BonesWhite PeoplePrehistoric archaeology03 medical and health sciences0302 clinical medicineddc:590GeneticsAnimalsHumanseducationHunter-gatherer030304 developmental biologyGenetics0303 health scienceseducation.field_of_studyGenetic diversityFossilsGenetic VariationBiological EvolutionEuropeAncient DNAHuman evolutionEvolutionary biology030217 neurology & neurosurgeryTrends in genetics : TIG
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Spatio-temporal dynamics of genetic variation in the Iberian lynx along its path to extinction reconstructed with ancient DNA

2017

here is the tendency to assume that endangered species have been both genetically and demographically healthier in the past, so that any genetic erosion observed today was caused by their recent decline. The Iberian lynx (Lynx pardinus) suffered a dramatic and continuous decline during the 20th century, and now shows extremely low genome- and species-wide genetic diversity among other signs of genomic erosion. We analyze ancient (N = 10), historical (N = 245), and contemporary (N = 172) samples with microsatellite and mitogenome data to reconstruct the species' demography and investigate patterns of genetic variation across space and time. Iberian lynx populations transitioned from low but …

0106 biological sciences0301 basic medicineConservation of Natural ResourcesMetapopulationBiologyLincesExtinction Biological010603 evolutionary biology01 natural sciencesEndangered speciesgenetic erosion03 medical and health sciencesGenetic driftGenetic variationGeneticsAnimalsDNA AncientGenetic erosionancient DNAMolecular BiologyQH426Institut für Biochemie und BiologieDiscoveriesEcology Evolution Behavior and SystematicsPaleobiologíaGenetic diversityQLGenomeExtinctionAncient DNAEcologyQHEndangered SpeciesGenetic DriftGenetic VariationPaleogeneticsParque nacional de DoñanaSequence Analysis DNAIberian lynxGenéticahumanities030104 developmental biologyAncient DNAGenome MitochondrialLynxPaleogeneticsGenetic erosionpaleogeneticsMicrosatellite Repeats
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Estimating the dwarfing rate of an extinct Sicilian elephant.

2021

Summary Evolution on islands, together with the often extreme phenotypic changes associated with it, has attracted much interest from evolutionary biologists. However, measuring the rate of change of phenotypic traits of extinct animals can be challenging, in part due to the incompleteness of the fossil record. Here, we use combined molecular and fossil evidence to define the minimum and maximum rate of dwarfing in an extinct Mediterranean dwarf elephant from Puntali Cave (Sicily). 1 Despite the challenges associated with recovering ancient DNA from warm climates, 2 we successfully retrieved a mitogenome from a sample with an estimated age between 175,500 and 50,000 years. Our results sugge…

11000301 basic medicineMediterranean climate1300Lineage (evolution)ElephantsExtinction BiologicalDNA MitochondrialGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciences0302 clinical medicineCaveAnimalsDNA AncientSicilyPhylogenygeographygeography.geographical_feature_categoryPalaeoloxodonbiologyFossils2800Phenotypic traitbiology.organism_classificationlanguage.human_languageDwarfing030104 developmental biologyAncient DNAEvolutionary biologylanguageGeneral Agricultural and Biological SciencesSicilian030217 neurology & neurosurgeryCurrent biology : CB
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Tracking Five Millennia of Horse Management with Extensive Ancient Genome Time Series

2019

Summary Horse domestication revolutionized warfare and accelerated travel, trade, and the geographic expansion of languages. Here, we present the largest DNA time series for a non-human organism to date, including genome-scale data from 149 ancient animals and 129 ancient genomes (≥1-fold coverage), 87 of which are new. This extensive dataset allows us to assess the modern legacy of past equestrian civilizations. We find that two extinct horse lineages existed during early domestication, one at the far western (Iberia) and the other at the far eastern range (Siberia) of Eurasia. None of these contributed significantly to modern diversity. We show that the influence of Persian-related horse …

MaleRange (biology)BiologíaBreeding horsesBreedingGenomeDomestication0302 clinical medicinePaleobiologíaComputingMilieux_MISCELLANEOUSHistory AncientPhylogenyhorses0303 health sciencesDiversityGenomeAncient DNAanimal breedingBiological EvolutionmuleshumanitiesManagementEuropeDomestication animalEquestrian civilizationsEthnologyFemalemanagementequestrian civilizationsExtinct lineagesAsia[SHS.ARCHEO]Humanities and Social Sciences/Archaeology and PrehistoryselectionMultiple allelesCaballosBiologyMulesArticleGeneral Biochemistry Genetics and Molecular Biologydiversity03 medical and health sciencesdomesticationCaballo de Przewalskiddc:570[SDV.BBM.GTP]Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]AnimalsGenetic variationHorsesDNA AncientDomesticationSelectionancient DNAInstitut für Biochemie und Biologie030304 developmental biologyAnimal breedingSeries (stratigraphy)Genetic diversityGenetic VariationEquidaeGenéticaextinct lineagesAncient DNAdomestication ; selection ; equestrian civilizations ; horses ; ancient DNA ; mules ; animal breeding ; extinct lineages ; management ; diversityAnálisisancient DNA ; domestication ; animal breeding ; horses ; mules ; extinct lineages ; selection ; diversity ; management ; equestrian civilizations030217 neurology & neurosurgery
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Palaeolithic dogs and the early domestication of the wolf: a reply to the comments of Crockford and Kuzmin (2012)

2013

This is a response to the comments of Crockford and Kuzmin (2012) on our identification of Palaeolithic dogs from different European Palaeolithic sites. In their comments Crockford and Kuzmin (2012) present some errors, misunderstandings and misrepresentations that we remedy here. In our opinion, the early wolf domestication must be regarded as an intimate relationship between humans and canids including the breeding of the latter by prehistoric people, resulting in the European Palaeolithic dogs.

PrehistoryArcheologyHistoryEthnologyIdentification (biology)DomesticationArchaeologyJournal of Archaeological Science
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Ancient proteins resolve the evolutionary history of Darwin's South American ungulates.

2015

No large group of recently extinct placental mammals remains as evolutionarily cryptic as the approximately 280 genera grouped as 'South American native ungulates'. To Charles Darwin, who first collected their remains, they included perhaps the 'strangest animal[s] ever discovered'. Today, much like 180 years ago, it is no clearer whether they had one origin or several, arose before or after the Cretaceous/Palaeogene transition 66.2 million years ago, or are more likely to belong with the elephants and sirenians of superorder Afrotheria than with the euungulates (cattle, horses, and allies) of superorder Laurasiatheria. Morphology-based analyses have proved unconvincing because convergences…

ProteomicsAncient proteinsNotoungulataBiologíaPlacentaCiencias de la Tierra y relacionadas con el Medio Ambiente//purl.org/becyt/ford/1 [https]//purl.org/becyt/ford/1.5 [https]Genética y HerenciaPregnancyNotoungulataToxodonUngulateAfrotheriaPhylogenyMammalsMultidisciplinaryLaurasiatheriaLitopternabiologyAncient DNAFossilsLaurasiatheriaToxodonLitopternaFemaleCIENCIAS NATURALES Y EXACTAS1000UngulateZoologyPaleontologíaBone and BonesCollagen Type ICiencias BiológicasAnimalsAmino Acid Sequence//purl.org/becyt/ford/1.6 [https]BiologyPerissodactylaMAMMALIA2700MacraucheniaSouth Americabiology.organism_classificationCOLLAGEN (I)MacraucheniaAncient DNACattleMeteorología y Ciencias AtmosféricasZoologyAfrotheriaNature
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