0000000000142833

AUTHOR

Ann-marie Waldvogel

0000-0003-2637-0766

showing 16 related works from this author

Temperature dependence of spontaneous mutation rates.

2021

Mutation is the source of genetic variation and the fundament of evolution. Temperature has long been suggested to have a direct impact on realized spontaneous mutation rates. If mutation rates vary in response to environmental conditions, such as the variation of the ambient temperature through space and time, they should no longer be described as species-specific constants. By combining mutation accumulation with whole-genome sequencing in a multicellular organism, we provide empirical support to reject the null hypothesis of a constant, temperature-independent mutation rate. Instead, mutation rates depended on temperature in a U-shaped manner with increasing rates toward both temperature…

Mutation rateTemperatureMutation AccumulationBiologyEvolution MolecularMutation AccumulationMutation RateMolecular evolutionEvolutionary biologyGenetic variationMutation (genetic algorithm)MutationGeneticsSpontaneous mutationGenetics (clinical)Genome research
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Measuring mutagenicity in ecotoxicology: A case study of Cd exposure in Chironomus riparius

2020

AbstractExisting mutagenicity tests for metazoans lack the direct observation of enhanced germline mutation rates after exposure to anthropogenic substances, therefore being inefficient. Cadmium (Cd) is a metal described as a mutagen in mammalian cells and listed as a group 1 carcinogenic and mutagenic substance. But Cd mutagenesis mechanism is not yet clear. Therefore, in the present study, we propose a method coupling short-term mutation accumulation (MA) lines with subsequent whole genome sequencing (WGS) and a dedicated data analysis pipeline to investigate if chronic Cd exposure on Chironomus riparius can alter the rate at which de novo point mutations appear. Results show that Cd expo…

Chironomus ripariusGeneticsved/biologyPoint mutationMutagenesisved/biology.organism_classification_rank.speciesfood and beveragesMutagenBiologyMutation Accumulationmedicine.disease_causeGermline mutationmedicineEcotoxicologyCarcinogen
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Establishing laboratory cultures and performing ecological and evolutionary experiments with the emerging model speciesChironomus riparius

2019

Chironomus riparius is a well‐established model organism in various fields such as ecotoxicology and ecology, and therefore, environmental preferences, ecological interactions and metabolic traits are well‐studied. With the recent publication of a high‐quality draft genome, as well as different population genetic parameters such as mutation and recombination rate, the species can be used as an alternative to the Drosophila models in experimental population genomics or molecular ecology. To facilitate access to this promising experimental model species for a wider range of researchers, we describe experimental methods to first create and sustain long‐term cultures of C. riparius and then use…

0106 biological sciencesChironomus ripariusExperimental evolutioneducation.field_of_studyEcologyved/biologyEcology (disciplines)ved/biology.organism_classification_rank.speciesPopulationBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesMolecular ecologyPopulation genomics010602 entomologyInsect ScienceChironomusModel organismeducationAgronomy and Crop ScienceJournal of Applied Entomology
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Temperature-dependence of spontaneous mutation rates

2020

Mutation is the source of genetic variation and the fundament of evolution. At the interphase of ecology and evolution, temperature has long been suggested to have a direct impact on realised spontaneous mutation rates. The question is whether mutation rates can be a species-specific constant under variable environmental conditions, such as variation of the ambient temperature. By combining mutation accumulation with whole genome sequencing in a multicellular organism, we provide empirical support to reject this null hypothesis. Instead mutation rates depend on temperature in a U-shaped manner with increasing rates towards both temperature extremes. This relation has important implications …

Whole genome sequencingMutation rateMulticellular organismEvolutionary biologyMolecular evolutionGenetic variationMutation (genetic algorithm)Evolutionary ecologyBiologyMutation Accumulation
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The genomic footprint of climate adaptation inChironomus riparius

2017

The gradual heterogeneity of climatic factors produces continuously varying selection pressures across geographic distances that leave signatures of clinal variation in the genome. Separating signatures of clinal adaptation from signatures of other evolutionary forces, such as demographic processes, genetic drift, and adaptation to specific non-clinal conditions of the immediate local environment is a major challenge. Here, we examine climate adaptation in five natural populations of the non-biting midge Chironomus riparius sampled along a climatic gradient across Europe. Our study integrates experimental data, individual genome resequencing, Pool-Seq data, and population genetic modelling.…

0301 basic medicineCandidate geneAcclimatizationClimateClimate ChangePopulationved/biology.organism_classification_rank.speciesBiologyGenomeChironomidaeGene flow03 medical and health sciencesGenetic driftGeneticsAnimalsPopulation growthSelection GeneticEvolutionary dynamicseducationEcosystemEcology Evolution Behavior and SystematicsSelection (genetic algorithm)Local adaptationChironomus ripariuseducation.field_of_studyEcologyved/biologyGenetic DriftGenomicsAdaptation PhysiologicalEuropeGenetics Population030104 developmental biologyEvolutionary biologyAdaptation
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Establishing Laboratory Cultures and Performing Ecological and Evolutionary Experiments with the Emerging Model Species <em>Chironomus Riparius…

2018

Chironomus riparius is a well-established model organism in various fields such as ecotoxicology and ecology, and therefore environmental preferences, ecological interactions and metabolic traits are well-studied. With the recent publication of a high-quality draft genome, as well as different population genetic parameters such as mutation and recombination rate, the species can be used as an alternative to the Drosophila models in experimental population genomics or molecular ecology. To facilitate access to this promising experimental model species for a wider range of researchers, we describe experimental methods to first create and sustain long term cultures of C. riparius and then use …

Chironomus ripariuseducation.field_of_studyExperimental evolutionved/biologyEcologyEcology (disciplines)ved/biology.organism_classification_rank.speciesPopulationBiologyGenomeMolecular ecologyPopulation genomicseducationModel organism
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A high-quality genome assembly from short and long reads for the non-biting midge Chironomus riparius (Diptera)

2020

AbstractBackgroundChironomus riparius is of great importance as a study species in various fields like ecotoxicology, molecular genetics, developmental biology and ecology. However, only a fragmented draft genome exists to date, hindering the recent rush of population genomic studies in this species.FindingsMaking use of 50 NGS datasets, we present a hybrid genome assembly from short and long sequence reads that make C. riparius’ genome one of the most contiguous Dipteran genomes published, the first complete mitochondrial genome of the species and the respective recombination rate as one of the first insect recombination rates at all.ConclusionsThe genome and associated resources will be h…

0106 biological sciencesmedicine.medical_specialtyMitochondrial DNAEcology (disciplines)ved/biology.organism_classification_rank.speciesPopulationSequence assemblyHybrid genome assemblyQH426-470Biology010603 evolutionary biology01 natural sciencesGenomeChironomidae03 medical and health sciencesMolecular geneticschironomus ripariusGeneticsmedicineAnimalseducationMolecular BiologyGenetics (clinical)030304 developmental biologyrecombination rateChironomus riparius0303 health scienceseducation.field_of_studyGenomehybrid genome assemblyved/biologyGenome ReportEvolutionary biology
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The era of reference genomes in conservation genomics

2022

Progress in genome sequencing now enables the large-scale generation of reference genomes. Various international initiatives aim to generate reference genomes representing global biodiversity. These genomes provide unique insights into genomic diversity and architecture, thereby enabling comprehensive analyses of population and functional genomics, and are expected to revolutionize conservation genomics.

QH301 Biology580 Plants (Botany)Genetics -- ResearchEvolutionsbiologibiodiversity conservation; conservation genetics; ERGA; European Reference Genome AtlasConservation genetics; Biodiversity conservation; European Reference Genome Atlas; ERGAAnimal genome mappingudc:630*1GenomeGEERGA[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE][SDE.BE.BIOD]Environmental Sciences/Biodiversity and Ecology/domain_sde.be.biodERGA ; Biodiversity [MeSH] ; Genomics [MeSH] ; Ecology Evolution Behavior and Systematics ; conservation genetics ; Genome [MeSH] ; biodiversity conservation ; European Reference Genome Atlas3rd-DASGenomicsBiodiversityreferenčni genomi[SDV.BIBS]Life Sciences [q-bio]/Quantitative Methods [q-bio.QM][SDE.BE.BEC]Environmental Sciences/Biodiversity and Ecology/domain_sde.be.becChemistry10121 Department of Systematic and Evolutionary BotanygenomikaGE Environmental Sciences:Informàtica::Aplicacions de la informàtica::Bioinformàtica [Àrees temàtiques de la UPC]biodiverzitetaSettore BIO/18 - GENETICAeducationQH426 GeneticsQH301European Reference Genome AtlasVDP::Matematikk og Naturvitenskap: 400::Basale biofag: 470[SDE.BE.EVO]Environmental Sciences/Biodiversity and Ecology/domain_sde.be.evoGeneticsconservation genetics ; biodiversity conservation ; European Reference Genome Atlas ; ERGAgenomi10211 Zurich-Basel Plant Science CenterGenomesGenetikBiologyQH426Ecology Evolution Behavior and SystematicsEvolutionary BiologyBiodiversity conservation; Conservation genetics; European Reference Genome AtlasAmbientaleEcologíaGenética1105 Ecology Evolution Behavior and Systematicsconservation geneticsWildlife conservation570 Life sciences; biologyHuman medicinebiodiversity conservationAnimal genetics[SDE.BE]Environmental Sciences/Biodiversity and EcologyGenètica
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An experimental assessment of reproductive isolation and its consequences for seasonal hybridization dynamics

2018

0106 biological sciences0301 basic medicine03 medical and health sciences030104 developmental biologyEvolutionary biologyReproductive isolationBiology010603 evolutionary biology01 natural sciencesEcology Evolution Behavior and SystematicsBiological Journal of the Linnean Society
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Measuring mutagenicity in ecotoxicology: A case study of Cd exposure in Chironomus riparius.

2021

Abstract Existing mutagenicity tests for metazoans lack the direct observation of enhanced germline mutation rates after exposure to anthropogenic substances, therefore being inefficient. Cadmium (Cd) is a metal described as a mutagen in mammalian cells and listed as a group 1 carcinogenic and mutagenic substance. But Cd mutagenesis mechanism is not yet clear. Therefore, in the present study, we propose a method coupling short-term mutation accumulation (MA) lines with subsequent whole genome sequencing (WGS) and a dedicated data analysis pipeline to investigate if chronic Cd exposure on Chironomus riparius can alter the rate at which de novo point mutations appear. Results show that Cd exp…

endocrine system010504 meteorology & atmospheric sciencesHealth Toxicology and Mutagenesisved/biology.organism_classification_rank.speciesMutagen010501 environmental sciencesBiologyToxicologymedicine.disease_causeEcotoxicology01 natural sciencesChironomidaeGermline mutationmedicineAnimalsCarcinogen0105 earth and related environmental sciencesChironomus ripariusGeneticsved/biologyMutagenicity TestsPoint mutationfungiMutagenesisfood and beveragesGeneral MedicineMutation AccumulationPollutionmedicine.anatomical_structureMutagenesisGerm cellCadmiumMutagensEnvironmental pollution (Barking, Essex : 1987)
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Evolutionary genomics can improve prediction of species' responses to climate change

2020

Abstract Global climate change (GCC) increasingly threatens biodiversity through the loss of species, and the transformation of entire ecosystems. Many species are challenged by the pace of GCC because they might not be able to respond fast enough to changing biotic and abiotic conditions. Species can respond either by shifting their range, or by persisting in their local habitat. If populations persist, they can tolerate climatic changes through phenotypic plasticity, or genetically adapt to changing conditions depending on their genetic variability and census population size to allow for de novo mutations. Otherwise, populations will experience demographic collapses and species may go ext…

eco‐evolutionary dynamicsComments and OpinionsRange (biology)Species distributionlcsh:EvolutionBiodiversityeco-evolutionary dynamics10127 Institute of Evolutionary Biology and Environmental Studiesmodelslcsh:QH359-425GeneticsComment and OpinionKeystone speciesEcology Evolution Behavior and SystematicsLocal adaptationgenomic quantitative geneticsbusiness.industryEnvironmental resource managementEnvironmental niche modellingGeographyBiodiversity loss570 Life sciences; biology590 Animals (Zoology)Biological dispersalbusinessGlobal biodiversity
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Climate Change Genomics Calls for Standardized Data Reporting

2020

The advent of new and affordable high-throughput sequencing techniques allows for the investigation of the genetic basis of environmental adaptation throughout the plant and animal kingdom. The framework of genotype-environment associations (GEA) provides a powerful link by correlating the geographic distribution of genotype patterns of individuals or populations with environmental factors on a spatial scale. We coarsely review the short history of GEA studies, summarizing available studies, organisms, data type, and data availability for these studies. GEA is a powerful tool in climate change research and we therefore focus on climate variables as environmental factors. While our initial a…

0106 biological sciences0301 basic medicineCandidate geneComputer sciencemeta-anaylseslcsh:EvolutionClimate changeGenomics010603 evolutionary biology01 natural sciencesliterature survey03 medical and health sciencesDocumentationgene ontology categorylcsh:QH540-549.5lcsh:QH359-425Adaptation (computer science)environmental association analysisEcology Evolution Behavior and SystematicsGeneralityEcologyData science030104 developmental biologySpatial ecologylcsh:EcologyLiterature surveycandidate genesFrontiers in Ecology and Evolution
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Little parallelism in genomic signatures of local adaptation in two sympatric, cryptic sister species.

2020

Species living in sympatry and sharing a similar niche often express parallel phenotypes as a response to similar selection pressures. The degree of parallelism within underlying genomic levels is often unexplored, but can give insight into the mechanisms of natural selection and adaptation. Here, we use multi-dimensional genomic associations to assess the basis of local and climate adaptation in two sympatric, cryptic Crematogaster levior ant species along a climate gradient. Additionally, we investigate the genomic basis of chemical communication in both species. Communication in insects is mainly mediated by cuticular hydrocarbons (CHCs), which also protect against water loss and, hence,…

0106 biological sciences0301 basic medicineSympatryClimateNicheGenome InsectAdaptation BiologicalBiology010603 evolutionary biology01 natural sciences03 medical and health sciencesddc:570AnimalsEcology Evolution Behavior and SystematicsLocal adaptationMutualism (biology)Phenotypic plasticityNatural selectionAntsBiological EvolutionHydrocarbonsAnimal CommunicationSympatry030104 developmental biologyEvolutionary biologySympatric speciationParallel evolutionJournal of evolutionary biologyREFERENCES
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Supplemental Material for Schmidt et al., 2020

2020

Supplementary Information and Data

FOS: Biological sciences60408 Genomics
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Establishing Laboratory Cultures and Performing Ecological and Evolutionary Experiments with the Emerging Model Species Chironomus Riparius

2018

Chironomus riparius is a well-established model organism in various fields such as ecotoxicology and ecology, and therefore environmental preferences, ecological interactions and metabolic traits are well-studied. With the recent publication of a high-quality draft genome, as well as different population genetic parameters such as mutation and recombination rate, the species can be used as an alternative to the Drosophila models in experimental population genomics or molecular ecology. To facilitate access to this promising experimental model species for a wider range of researchers, we describe experimental methods to first create and sustain long term cultures of C. riparius and then use …

anatomy_morphology
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Data from: Rapid adaptation to high temperatures in Chironomus riparius

2018

Effects of seasonal or daily temperature variation on fitness and physiology of ectothermic organisms and their ways to cope with such variations have been widely studied. However, the way multivoltines organisms cope with temperature variations from a generation to another is still not well understood and complex to identify. The aim of this study is to investigate whether the multivoltine midge Chironomus riparius Meigen (1803) responds mainly via acclimation as predicted by current theories, or if rapid genetic adaptation is involved. To investigate this issue, a common garden approach has been applied. A mix of larvae from five European populations was raised in the laboratory at three …

medicine and health caretemperature adaptationChironomus ripariusMedicinedevelopmental temperatureLife sciences
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