Search results for " genome"

showing 10 items of 510 documents

Ancient goat genomes reveal mosaic domestication in the Fertile Crescent

2018

How humans got their goatsLittle is known regarding the location and mode of the early domestication of animals such as goats for husbandry. To investigate the history of the goat, Dalyet al.sequenced mitochondrial and nuclear sequences from ancient specimens ranging from hundreds to thousands of years in age. Multiple wild populations contributed to the origin of modern goats during the Neolithic. Over time, one mitochondrial type spread and became dominant worldwide. However, at the whole-genome level, modern goat populations are a mix of goats from different sources and provide evidence for a multilocus process of domestication in the Near East. Furthermore, the patterns described suppor…

0301 basic medicineFollistatinMESH: DomesticationAGRICULTURE1103CATTLEMESH: FollistatinMESH: AfricaGenome[SHS]Humanities and Social SciencesDomestication0601 history and archaeologyMESH: AnimalsMESH: Genetic VariationMESH: PhylogenyPhylogenyZAGROSmedia_common2. Zero hunger[SDV.EE]Life Sciences [q-bio]/Ecology environmentGenome1311MultidisciplinaryMiddle East060102 archaeologyMosaicismMESH: AsiaGoats06 humanities and the artsEuropeAnimals DomesticMESH: MosaicismReproductionTRAITSAsia[SHS.ARCHEO]Humanities and Social Sciences/Archaeology and Prehistorymedia_common.quotation_subject1204BiologyDNA MitochondrialMESH: GoatsMosaic03 medical and health sciencesPhylogeneticsGenetic variationAnimalsMESH: GenomeMESH: Animals DomesticDNA AncientDietary change[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biochemistry [q-bio.BM]Domestication[SDV.GEN]Life Sciences [q-bio]/GeneticsNEAR-EASTMESH: DNA MitochondrialGenetic VariationMESH: DNA AncientGENEMODEL030104 developmental biologySHEEPEvolutionary biologyORIGINSAfricaMESH: EuropeScience
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Reconstructing the deep population history of Central and South America

2018

We report genome-wide ancient DNA from 49 individuals forming four parallel time transects in Belize, Brazil, the Central Andes, and the Southern Cone, each dating to at least ∼9,000 years ago. The common ancestral population radiated rapidly from just one of the two early branches that contributed to Native Americans today. We document two previously unappreciated streams of gene flow between North and South America. One affected the Central Andes by ∼4,200 years ago, while the other explains an affinity between the oldest North American genome associated with the Clovis culture and the oldest Central and South Americans from Chile, Brazil, and Belize. However, this was not the primary sou…

0301 basic medicineGene Flow010506 paleontologyHistoryPopulationPopulationPopulation ReplacementBiology01 natural sciencesGenomeMedical and Health SciencesDNA MitochondrialGeneral Biochemistry Genetics and Molecular BiologyGene flowAncient03 medical and health sciencesTheoreticalModelsGeneticsHumansGENÉTICA DE POPULAÇÕESanthropologyIndis de l'Amèrica CentralDNA AncientTransecteducationHistory Ancient0105 earth and related environmental scienceseducation.field_of_studypopulation geneticGenomeGenome HumanHuman Genomepopulation geneticsarchaeologyCentral AmericaDNABiological SciencesSouth AmericaModels TheoreticalArchaeologyMitochondrial030104 developmental biologyAncient DNAGenetics PopulationDevelopmental BiologyHuman
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Early cave art and ancient DNA record the origin of European bison

2016

The two living species of bison (European and American) are among the few terrestrial megafauna to have survived the late Pleistocene extinctions. Despite the extensive bovid fossil record in Eurasia, the evolutionary history of the European bison (or wisent, Bison bonasus) before the Holocene (<11.7 thousand years ago (kya)) remains a mystery. We use complete ancient mitochondrial genomes and genome-wide nuclear DNA surveys to reveal that the wisent is the product of hybridization between the extinct steppe bison (Bison priscus) and ancestors of modern cattle (aurochs, Bos primigenius) before 120 kya, and contains up to 10% aurochs genomic ancestry. Although undetected within the fossil re…

0301 basic medicineGeneral Physics and AstronomymegafaunaBison priscusMegafaunahybridizationBison bonasusComputingMilieux_MISCELLANEOUSHolocenePhylogenyMultidisciplinarygeography.geographical_feature_categoryGenomebiologyBisonFossilsQAmerican Bisonfossil recordMitochondrialPleistoceneEuropeCavesvisual_artSequence Analysis[SHS.ARCHEO]Humanities and Social Sciences/Archaeology and PrehistoryPleistoceneEvolutionLife on LandScienceBison Pleistocene fossil record mitochondrial genome hybridizationSocio-culturaleZoologySteppe bisonDNA MitochondrialArticleGeneral Biochemistry Genetics and Molecular BiologyAncientEvolution Molecular03 medical and health sciencesPaleontologyCaveGeneticsPleistocene extinctionsAnimalsDNA Ancientvisual_art.artworkCell NucleusgeographyHuman GenomeMolecularSequence Analysis DNAGeneral ChemistryDNAAurochsbiology.organism_classificationEurpoean BisonBos primigenius030104 developmental biologyAncient DNAmitochondrial genomeAmerican bisonGenome MitochondrialCommentaryCattlePaintings
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2018

In many viral infections, a large number of different genetic variants can coexist within a host, leading to more virulent infections that are better able to evolve antiviral resistance and adapt to new hosts. But how is this diversity maintained? Why do faster-growing variants not outcompete slower-growing variants, and erode this diversity? One hypothesis is if there are mutually beneficial interactions between variants, with host cells infected by multiple different viral genomes producing more, or more effective, virions. We modelled this hypothesis with both mathematical models and simulations, and found that moderate levels of beneficial coinfection can maintain high levels of coexist…

0301 basic medicineGeneticsHost (biology)Genetic variantsAntiviral resistanceVirulenceBiologymedicine.diseaseMicrobiology03 medical and health sciencesMultipartite030104 developmental biologyViral genomesVirologyCoinfectionmedicineDiversity (business)Virus Evolution
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Complete Genome Sequence of an Aquaculture-Associated Phage, FL-1, Infecting Flavobacterium spp

2017

Flavobacterium spp. are abundant and widespread in freshwater environments (1, 2). Despite the prevalence of the members in this genus, the phages infecting Flavobacterium spp. are less known. So far, most of the phages studied in detail infect fish pathogenic members of the genus, such as F. psychrophilum (3). The phage FL-1 and its Flavobacterium sp. host strain B183 were previously isolated from a water sample from a fish farm in Central Finland. Transmission electron microscopy revealed FL-1 to be a member of the family Myoviridae (4). In addition to the isolation host, FL-1 also infects multiple Flavobacterium sp. isolates and strains of the fish pathogen F. columnare, the causative ag…

0301 basic medicineGeneticsWhole genome sequencingbiologybusiness.industrycomplete genome sequenceeducation030106 microbiology1184 Genetics developmental biology physiologyZoologybiology.organism_classificationGenome6. Clean water03 medical and health sciences030104 developmental biologyAquacultureflavobacteriumaquaculture-associated phageGenetics1182 Biochemistry cell and molecular biologybusinessMolecular BiologyFlavobacteriumGenome Announcements
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Dissecting genome reduction and trait loss in insect endosymbionts

2016

Symbiosis has played a major role in eukaryotic evolution beyond the origin of the eukaryotic cell. Thus, organisms across the tree of life are associated with diverse microbial partners, conferring to the host new adaptive traits that enable it to explore new niches. This is the case for insects thriving on unbalanced diets, which harbor mutualistic intracellular microorganisms, mostly bacteria that supply them with the required nutrients. As a consequence of the lifestyle change, from free-living to host-associated mutualist, a bacterium undergoes many structural and metabolic changes, of which genome shrinkage is the most dramatic. The trend toward genome size reduction in endosymbiotic …

0301 basic medicineGeneticsbiologyGeneral NeuroscienceMicroorganismBacterial genome sizebiology.organism_classificationPhenotypeGenomeGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciences030104 developmental biologyHistory and Philosophy of ScienceSymbiosisGenome sizeGeneBacteriaAnnals of the New York Academy of Sciences
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Zebrafish as a Model for the Study of Chaperonopathies

2016

There is considerable information on the clinical manifestations and mode of inheritance for many genetic chaperonopathies but little is known on the molecular mechanisms underlying the cell and tissue abnormalities that characterize them. This scarcity of knowledge is mostly due to the lack of appropriate animal models that mimic closely the human molecular, cellular, and histological characteristics. In this article we introduce zebrafish as a suitable model to study molecular and cellular mechanisms pertaining to human chaperonopathies. Genetic chaperonopathies manifest themselves from very early in life so it is necessary to examine the impact of mutant chaperone genes during developmen…

0301 basic medicineGeneticsbiologymedicine.diagnostic_testPhysiologyClinical BiochemistryMutantCell BiologyComputational biologybiology.organism_classificationClinical biochemistry03 medical and health sciences030104 developmental biologyChaperone (protein)biology.proteinmedicineGeneZebrafishOrganismGenetic testingZebrafish genomeJournal of Cellular Physiology
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GIbPSs: a toolkit for fast and accurate analyses of genotyping-by-sequencing data without a reference genome.

2015

Genotyping-by-sequencing (GBS) and related methods are increasingly used for studies of non-model organisms from population genetic to phylogenetic scales. We present GIbPSs, a new genotyping toolkit for the analysis of data from various protocols such as RAD, double-digest RAD, GBS, and two-enzyme GBS without a reference genome. GIbPSs can handle paired-end GBS data and is able to assign reads from both strands of a restriction fragment to the same locus. GIbPSs is most suitable for population genetic and phylogeographic analyses. It avoids genotyping errors due to indel variation by identifying and discarding affected loci. GIbPSs creates a genotype database that offers rich functionality…

0301 basic medicineGeneticseducation.field_of_studyGenotyping TechniquesPopulationComputational BiologyLocus (genetics)Computational biologySequence Analysis DNABiology03 medical and health sciencesPhylogeography030104 developmental biologyGenetics PopulationGenotypeGeneticseducationIndelGenotypingGenotyping TechniquesEcology Evolution Behavior and SystematicsPaired-end tagBiotechnologyReference genomeMolecular ecology resources
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Exploiting Helminth–Host Interactomes through Big Data

2017

Helminths facilitate their parasitic existence through the production and secretion of different molecules, including proteins. Some helminth proteins can manipulate the host's immune system, a phenomenon that is now being exploited with a view to developing therapeutics for inflammatory diseases. In recent years, hundreds of helminth genomes have been sequenced, but as a community we are still taking baby steps when it comes to identifying proteins that govern host-helminth interactions. The information generated from genomic, immunomic, and proteomic studies, as well as from cutting-edge approaches such as proteogenomics, is leading to a substantial volume of big data that can be utilised…

0301 basic medicineGenome HelminthVaccinesHost (biology)business.industryHelminth proteinBig dataComputational BiologyHelminth ProteinsComputational biologyBiologyProteogenomicsHelminth GenomesProteomicsBioinformaticsHost-Parasite Interactions03 medical and health sciences030104 developmental biologyInfectious Diseasesparasitic diseasesAnimalsHumansParasitologybusinessTrends in Parasitology
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Basic Concepts in Molecular Biology Related to Genetics and Epigenetics.

2017

The observation that "one size does not fit all" for the prevention and treatment of cardiovascular disease, among other diseases, has driven the concept of precision medicine. The goal of precision medicine is to provide the best-targeted interventions tailored to an individual's genome. The human genome is composed of billions of sequence arrangements containing a code that controls how genes are expressed. This code depends on other nonstatic regulators that surround the DNA and constitute the epigenome. Moreover, environmental factors also play an important role in this complex regulation. This review provides a general perspective on the basic concepts of molecular biology related to g…

0301 basic medicineGenome-wide association study030204 cardiovascular system & hematologyGenomeEpigenesis Genetic03 medical and health sciences0302 clinical medicineComputational epigeneticsMedicineHumansEpigeneticsExerciseGeneticsbiologybusiness.industrySmokingGeneral MedicineEpigenomeDNA MethylationPrecision medicineMolecular biologyDietDNA-Binding ProteinsHistone Code030104 developmental biologyHistoneCardiovascular Diseasesbiology.proteinHuman genomeGene-Environment InteractionbusinessRevista espanola de cardiologia (English ed.)
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