0000000001306652

AUTHOR

Bastiaan Star

showing 20 related works from this author

Ticket to spawn: Combining economic and genetic data to evaluate the effect of climate and demographic structure on spawning distribution in Atlantic…

2019

Abstract Climate warming and harvesting affect the dynamics of species across the globe through a multitude of mechanisms, including distribution changes. In fish, migrations to and distribution on spawning grounds are likely influenced by both climate warming and harvesting. The Northeast Arctic (NEA) cod (Gadus morhua) performs seasonal migrations from its feeding grounds in the Barents Sea to spawning grounds along the Norwegian coast. The distribution of cod between the spawning grounds has historically changed at decadal scales, mainly due to variable use of the northern and southern margins of the spawning area. Based on historical landing records, two major hypotheses have been put f…

0106 biological sciencesdemography010504 meteorology & atmospheric sciencesClimate ChangeFisheriesClimate change2306 Global and Planetary Change10125 Paleontological Institute and MuseumFish stock010603 evolutionary biology01 natural sciences2300 General Environmental Scienceddc:590spawning distributionGadusEnvironmental ChemistryAnimalsPrimary Research Article14. Life underwaterAtlantic Ocean0105 earth and related environmental sciencesGeneral Environmental ScienceGlobal and Planetary ChangebiologyEcologyNorwayReproductionGlobal warmingbiology.organism_classificationPrimary Research ArticlesSpawn (biology)FisheryGeographyHabitatArctic560 Fossils & prehistoric lifeGadus morhua2304 Environmental Chemistrysize truncationgenetic dataeconomic dataAtlantic cod2303 EcologyAnimal DistributionGlobal change biology
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Three chromosomal rearrangements promote genomic divergence between migratory and stationary ecotypes of Atlantic cod

2016

AbstractIdentification of genome-wide patterns of divergence provides insight on how genomes are influenced by selection and can reveal the potential for local adaptation in spatially structured populations. In Atlantic cod – historically a major marine resource – Northeast-Arctic- and Norwegian coastal cod are recognized by fundamental differences in migratory and non-migratory behavior, respectively. However, the genomic architecture underlying such behavioral ecotypes is unclear. Here, we have analyzed more than 8.000 polymorphic SNPs distributed throughout all 23 linkage groups and show that loci putatively under selection are localized within three distinct genomic regions, each of sev…

0106 biological sciences0301 basic medicineLinkage disequilibriumHeterozygoteGenotypePopulation010603 evolutionary biology01 natural sciencesGenomePolymorphism Single NucleotideArticleLinkage Disequilibrium03 medical and health sciencesVDP::Matematikk og naturvitenskap: 400::Basale biofag: 470::Genetikk og genomikk: 474Genetic variationAnimals14. Life underwatereducationLocal adaptationGeneticsEcotypeGene Rearrangementeducation.field_of_studyMultidisciplinaryGenomeEcotypebiologyGenetic VariationBayes TheoremGene rearrangementbiology.organism_classificationVDP::Mathematics and natural scienses: 400::Basic biosciences: 470::Genetics and genomics: 474030104 developmental biologyGadus morhuaEvolutionary biologyAnimal MigrationAtlantic codScientific Reports
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Disentangling structural genomic and behavioural barriers in a sea of connectivity

2019

18 pages, 4 tables, 3 figures.-- This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited

0106 biological sciences0301 basic medicineSympatryReproductive IsolationChromosomal rearrangementsPopulation010603 evolutionary biology01 natural sciencesGene flow03 medical and health sciencesBehavioural traitsGeneticsAnimalsGadus14. Life underwaterSelection GeneticAdaptationeducationEcology Evolution Behavior and Systematicseducation.field_of_studySympatric divergencebiologyGenetic DriftHomozygoteGenetic VariationReproductive isolationbiology.organism_classificationSpecial Issue on the Role of Genomic Structural Variants in Adaptation and DiversificationGene flowGenetic divergenceSympatrySpecial Issue: The Role of Genomic Structural Variants in Adaptation and Diversification030104 developmental biologyGadus morhuaSympatric speciationEvolutionary biologyAtlantic codChromosome InversionGenetic FitnessAtlantic cod
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An improved version of the Atlantic cod genome and advancements in functional genomics: implications for the future of cod farming

2016

Abstract Recent advancements within state-of-the-art genomic tools and the generation of the first version of the Atlantic cod genome (Star et al., 2011) have proven to be valuable resources, improving our understanding of this species’ biology. In this chapter we describe some aspects and implications of using these resources to identify genes and molecular pathways involved in Atlantic cod growth and development, as well as responses to nutritional changes, pathogens and other immune stimuli, and environmental stressors (e.g., temperature, stress, or pollutants). Additionally, we highlight the immunological puzzle of the Atlantic cod that lacks components of the adaptive immune system pre…

Natural selectionbiologyEcologyEvolutionary biologySystems biologyPhenotypic traitAtlantic codbiology.organism_classificationGeneGenomeFunctional genomicsLocal adaptation
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The new era of genome sequencing using high-throughput sequencing technology: generation of the first version of the Atlantic cod genome

2016

Abstract The genome of Atlantic cod (Gadus morhua L.) published in 2011 was the first example of a teleost genome obtained using a pure high-throughput sequencing (HTS) technology strategy, and the first large vertebrate genome generated by exclusively using Roche/454 sequencing technology. At the start of the sequencing project in 2009, two HTS technologies were available, the Roche/454 and Illumina technologies. Because of the longer read length of the Roche/454 technology and a wider range of suitable software utilizing those data at the time, we chose to use this technology for the first version of the Atlantic cod genome. In this chapter, we describe the process leading to the assembly…

GeneticsAssembly softwarePyrosequencingSequence assemblyGadusComputational biologyVertebrate genomeBiologyAtlantic codbiology.organism_classificationGenomeDNA sequencing
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Ancient DNA reveals the Arctic origin of Viking Age cod from Haithabu, Germany

2017

Knowledge of the range and chronology of historic trade and long-distance transport of natural resources is essential for determining the impacts of past human activities on marine environments. However, the specific biological sources of imported fauna are often difficult to identify, in particular if species have a wide spatial distribution and lack clear osteological or isotopic differentiation between populations. Here, we report that ancient fish-bone remains, despite being porous, brittle, and light, provide an excellent source of endogenous DNA (15-46%) of sufficient quality for whole-genome reconstruction. By comparing ancient sequence data to that of modern specimens, we determine …

0106 biological sciences0301 basic medicineFishingPopulationchromosomal inversionFisheriesContext (language use)fish bone010603 evolutionary biology01 natural sciencesBone and Bones03 medical and health sciencesGermanygenomicsGadusAnimalsDNA AncienteducationAtlantic OceanEcosystemeducation.field_of_studyMultidisciplinarybiologyGeographyEcologyArctic RegionsFossilsNorwayhigh-throughput sequencingBiological Sciencesbiology.organism_classificationHistory MedievalUnited Kingdom030104 developmental biologyGeographyAncient DNAArcticGadus morhuaViking AgeAtlantic codtrade
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Genomic stability through time despite decades of exploitation in cod on both sides of the Atlantic

2021

Significance Both theory and experiments suggest that fishing can drive the evolution of an earlier maturation age. However, determining whether changes in the wild are the result of fisheries-induced evolution has been difficult. Temporal, genome-wide datasets can directly reveal responses to selection. Here, we investigate the genomes of two wild Atlantic cod populations from samples that pre- and postdate periods of intensive fishing. Although phenotypic changes suggest fisheries-induced evolution, we do not find evidence for any strong genomic change or loss of genetic diversity. While evolution could have occurred through undetectable frequency changes at many loci, the irreversible lo…

0106 biological sciences0301 basic medicinepopulation genomicsFishing430010603 evolutionary biology01 natural sciencesGenomeGenomic InstabilityPopulation genomicsEvolution Molecular03 medical and health sciencesselective sweepsEffective population sizeGadusAnimalsBiomassAtlantic OceanGenetic diversityMultidisciplinaryPolymorphism GeneticbiologyPopulation Biologyfisheries-induced evolutiongenetic diversityBiological Sciencesbiology.organism_classification030104 developmental biologyArcticGadus morhuaEvolutionary biologysense organsAtlantic codhistorical DNA
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Genomic characterization of the Atlantic cod sex-locus

2016

AbstractA variety of sex determination mechanisms can be observed in evolutionary divergent teleosts. Sex determination is genetic in Atlantic cod (Gadus morhua), however the genomic location or size of its sex-locus is unknown. Here, we characterize the sex-locus of Atlantic cod using whole genome sequence (WGS) data of 227 wild-caught specimens. Analyzing more than 55 million polymorphic loci, we identify 166 loci that are associated with sex. These loci are located in six distinct regions on five different linkage groups (LG) in the genome. The largest of these regions, an approximately 55 Kb region on LG11, contains the majority of genotypes that segregate closely according to a XX-XY s…

Male0301 basic medicineGenotypeGenetic LinkageSequence analysisLocus (genetics)Polymorphism Single NucleotideGenomeArticle03 medical and health sciences0302 clinical medicineGenetic linkageAnimalsGadusDatabases ProteinGeneWhole genome sequencingGeneticsGenomeSex ChromosomesMultidisciplinarybiologyGene Expression ProfilingSequence Analysis DNASex Determination Processesbiology.organism_classification030104 developmental biologyGadus morhuaGenetic LociFemaleAtlantic cod030217 neurology & neurosurgery
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Trans-oceanic genomic divergence of Atlantic cod ecotypes is associated with large inversions

2017

Chromosomal rearrangements such as inversions can play a crucial role in maintaining polymorphism underlying complex traits and contribute to the process of speciation. In Atlantic cod (Gadus morhua), inversions of several megabases have been identified that dominate genomic differentiation between migratory and nonmigratory ecotypes in the Northeast Atlantic. Here, we show that the same genomic regions display elevated divergence and contribute to ecotype divergence in the Northwest Atlantic as well. The occurrence of these inversions on both sides of the Atlantic Ocean reveals a common evolutionary origin, predating the >100 000-year-old trans-Atlantic separation of Atlantic cod. The long…

0301 basic medicinemedia_common.quotation_subjectPopulationPolymorphism Single NucleotideLinkage DisequilibriumDivergence03 medical and health sciencesGeneticsAnimalsGadus14. Life underwatereducationAtlantic OceanGenetics (clinical)Coevolutionmedia_commonChromosomal inversionEcotypeeducation.field_of_studyEcotypebiologyEcologybiology.organism_classificationSpeciationGenetics Population030104 developmental biologyGadus morhuaChromosome InversionOriginal ArticleAnimal MigrationAtlantic codHeredity
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Evolution of the immune system influences speciation rates in teleost fishes.

2016

Teleost fishes constitute the most species-rich vertebrate clade and exhibit extensive genetic and phenotypic variation, including diverse immune defense strategies. The genomic basis of a particularly aberrant strategy is exemplified by Atlantic cod, in which a loss of major histocompatibility complex (MHC) II functionality coincides with a marked expansion of MHC I genes. Through low-coverage genome sequencing (9–39×), assembly and comparative analyses for 66 teleost species, we show here that MHC II is missing in the entire Gadiformes lineage and thus was lost once in their common ancestor. In contrast, we find that MHC I gene expansions have occurred multiple times, both inside and outs…

0301 basic medicineGenetic SpeciationLineage (evolution)Adaptation BiologicalGene Dosagechemical and pharmacologic phenomenaMajor histocompatibility complexMajor Histocompatibility Complex03 medical and health sciencesSpecies Specificitybiology.animalMHC class IGeneticsAnimals14. Life underwaterCladePhylogenyGeneticsGenomebiologyFishesVertebrateAcquired immune systemBiological Evolution030104 developmental biologyGenetic SpeciationImmune Systembiology.proteinAdaptationNature genetics
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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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An improved genome assembly uncovers prolific tandem repeats in Atlantic cod

2016

AbstractBackground: The first Atlantic cod (Gadus morhua) genome assembly published in 2011 was one of the early genome assemblies exclusively based on high-throughput 454 pyrosequencing. Since then, rapid advances in sequencing technologies have led to a multitude of assemblies generated for complex genomes, although many of these are of a fragmented nature with a significant fraction of bases in gaps. The development of long-read sequencing and improved software now enable the generation of more contiguous genome assemblies.Results: By combining data from Illumina, 454 and the longer PacBio sequencing technologies, as well as integrating the results of multiple assembly programs, we have …

0301 basic medicineHeterozygoteAssembly algorithmsSequence assemblyGenomicsRepetitive DNABiologyGenome03 medical and health sciences0302 clinical medicineAssembly consolidationTandem repeatIndel polymorphismGeneticsAnimalsGadusLong-read sequencing technologyPromoter Regions GeneticMicrosatellitesRepeated sequenceGenePacBioGeneticsHeterozygosityDinucleotide repeatsMolecular Sequence AnnotationGenomicsSequence Analysis DNAbiology.organism_classification030104 developmental biologyGadus morhuaTandem Repeat SequencesEvolutionary biologyPyrosequencingAtlantic cod030217 neurology & neurosurgeryResearch ArticleBiotechnology
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Tandem repeats lead to sequence assembly errors and impose multi-level challenges for genome and protein databases

2019

AbstractThe widespread occurrence of repetitive stretches of DNA in genomes of organisms across the tree of life imposes fundamental challenges for sequencing, genome assembly, and automated annotation of genes and proteins. This multi-level problem can lead to errors in genome and protein databases that are often not recognized or acknowledged. As a consequence, end users working with sequences with repetitive regions are faced with ‘ready-to-use’ deposited data whose trustworthiness is difficult to determine, let alone to quantify. Here, we provide a review of the problems associated with tandem repeat sequences that originate from different stages during the sequencing-assembly-annotatio…

FOS: Computer and information sciencesBioinformatics[SDV]Life Sciences [q-bio]Sequence assemblyGenomics[SDV.BC]Life Sciences [q-bio]/Cellular BiologyComputational biologyBiologyGenome03 medical and health sciencesAnnotation0302 clinical medicineTandem repeatGeneticsAnimalsSurvey and SummaryDatabases ProteinGeneComputingMilieux_MISCELLANEOUS030304 developmental biology0303 health sciencesEnd user572: BiochemieDNASequence Analysis DNAGenomics[SDV.BIBS]Life Sciences [q-bio]/Quantitative Methods [q-bio.QM]WorkflowComputingMethodologies_PATTERNRECOGNITIONGadus morhuaTandem Repeat SequencesScientific Experimental Error[INFO.INFO-BI]Computer Science [cs]/Bioinformatics [q-bio.QM]Databases Nucleic Acid030217 neurology & neurosurgery
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Genome architecture enables local adaptation of Atlantic cod despite high connectivity

2017

Adaptation to local conditions is a fundamental process in evolution; however, mechanisms maintaining local adaptation despite high gene flow are still poorly understood. Marine ecosystems provide a wide array of diverse habitats that frequently promote ecological adaptation even in species characterized by strong levels of gene flow. As one example, populations of the marine fish Atlantic cod (Gadus morhua) are highly connected due to immense dispersal capabilities but nevertheless show local adaptation in several key traits. By combining population genomic analyses based on 12K single-nucleotide polymorphisms with larval dispersal patterns inferred using a biophysical ocean model, we show…

/dk/atira/pure/sustainabledevelopmentgoals/life_below_waterecological adaptationGadus morhuachromosomal inversionpopulation divergenceSDG 14 - Life Below Watergene flow
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Additional file 1 of An improved genome assembly uncovers prolific tandem repeats in Atlantic cod

2017

Supplementary figures and tables. (PDF 647 kb)

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Data from: Ancient DNA reveals the Arctic origin of Viking Age cod from Haithabu, Germany

2018

Knowledge of the range and chronology of historic trade and long-distance transport of natural resources is essential for determining the impacts of past human activities on marine environments. However, the specific biological sources of imported fauna are often difficult to identify, in particular if species have a wide spatial distribution and lack clear osteological or isotopic differentiation between populations. Here, we report that ancient fish-bone remains, despite being porous, brittle, and light, provide an excellent source of endogenous DNA (15–46%) of sufficient quality for whole-genome reconstruction. By comparing ancient sequence data to that of modern specimens, we determine …

medicine and health carechromosomal inversionMedicinefish boneLife sciencestrade
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Data from: Disentangling structural genomic and behavioral barriers in a sea of connectivity

2018

Genetic divergence among populations arises through natural selection or drift and is counteracted by connectivity and gene flow. In sympatric populations, isolating mechanisms are thus needed to limit the homogenizing effects of gene flow to allow for adaptation and speciation. Chromosomal inversions act as an important mechanism maintaining isolating barriers, yet their role in sympatric populations and divergence with gene flow is not entirely understood. Here, we revisit the question whether inversions play a role in the divergence of connected populations of the marine fish Atlantic cod, by exploring a unique dataset combining whole-genome sequencing data and behavioral data obtained w…

medicine and health careHolocenesympatric ecotypesAtlantic codbehavioral traitsMedicineLife scienceschromosomal rearrangements
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Data from: Genome architecture enables local adaptation of Atlantic cod despite high connectivity

2017

Adaptation to local conditions is a fundamental process in evolution; however, mechanisms maintaining local adaptation despite high gene flow are still poorly understood. Marine ecosystems provide a wide array of diverse habitats that frequently promote ecological adaptation even in species characterized by strong levels of gene flow. As one example, populations of the marine fish Atlantic cod (Gadus morhua) are highly connected due to immense dispersal capabilities but nevertheless show local adaptation in several key traits. By combining population genomic analyses based on 12K single nucleotide polymorphisms with larval dispersal patterns inferred using a biophysical ocean model, we show…

medicine and health carePopulation Divergencechromosomal inversionLife SciencesMedicinebiophysical modeling
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Data from: Trans-oceanic genomic divergence of Atlantic cod ecotypes is associated with large inversions

2017

Chromosomal rearrangements such as inversions can play a crucial role in maintaining polymorphism underlying complex traits and contribute to the process of speciation. In Atlantic cod (Gadus morhua), inversions of several megabases have been identified that dominate genomic differentiation between migratory and non-migratory ecotypes in the Northeast Atlantic. Here, we show that the same genomic regions display elevated divergence and contribute to ecotype divergence in the Northwest Atlantic as well. The occurrence of these inversions on both sides of the Atlantic Ocean reveals a common evolutionary origin, predating the more than 100,000 years old trans-Atlantic separation of Atlantic co…

medicine and health careGenomic adaptationInversion polymorphismLife SciencesMedicineChromosomal rearrangementecological divergenceSNPs
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Data from: Evolution of the immune system influences speciation rates in teleost fishes

2017

Teleost fishes constitute the most species-rich vertebrate clade and exhibit extensive genetic and phenotypic variation, including diverse immune defense strategies. The genomic basis of a particularly aberrant strategy is exemplified by Atlantic cod, in which a loss of major histocompatibility complex (MHC) II functionality coincides with a marked expansion of MHC I genes. Through low-coverage genome sequencing (9–39×), assembly and comparative analyses for 66 teleost species, we show here that MHC II is missing in the entire Gadiformes lineage and thus was lost once in their common ancestor. In contrast, we find that MHC I gene expansions have occurred multiple times, both inside and outs…

medicine and health careMedicinechemical and pharmacologic phenomenaTeleosteiJurassicLife sciences
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