Search results for "Genome"

showing 10 items of 1913 documents

High mitochondrial DNA sequence diversity in the parthenogenetic earthworm Dendrobaena octaedra

2010

Apomictic parthenogens are clonal organisms with limited genetic opportunity for increasing diversity beyond mutation. However, such species can be successful and have been shown to harbor more genetic diversity than might be expected. Here we surveyed diversity of the cytochrome oxidase subunit I gene from the mitochondrial genome of the earthworm Dendrobaena octaedra, an apomictic parthenogen. Diversity estimates made previously from allozyme markers for this species were high, but could have been affected by a detection bias, namely variable expression of alleles in the polyploid genome. We found similarly high mtDNA diversity over three localities in Finland, each represented by two sit…

Mitochondrial DNAMolecular Sequence DataParthenogenesisZoologyBiologyDNA MitochondrialDendrobaena octaedraGenomeGene FrequencyGeneticsAnimalsSoil PollutantsOligochaetaPhylogenyGenetics (clinical)Sequence (medicine)GeneticsGenetic diversityBase SequenceEarthwormGenetic VariationSequence Analysis DNAParthenogenesisrespiratory systembiology.organism_classificationGenetics PopulationHaplotypesGenetic markerhuman activitiesHeredity
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Mitochondrial inheritance and fermentative : oxidative balance in hybrids between Saccharomyces cerevisiae and Saccharomyces uvarum.

2008

Breeding between Saccharomyces species is a useful tool for obtaining improved wine yeast strains, combining fermentative features of parental species. In this work, 25 artificial Saccharomyces cerevisiae × Saccharomyces uvarum hybrids were constructed by spore conjugation. A multi-locus PCR‐restriction fragment length polymorphism (PCR‐RFLP) analysis, targeting six nuclear gene markers and the ribosomal region including the 5.8S rRNA gene and the two internal transcribed spacers, showed that the hybrid genome is the result of two chromosome sets, one coming from S. cerevisiae and the other from S. uvarum. Mitochondrial DNA (mtDNA) typing showed uniparental inheritance in all hybrids. Furth…

Mitochondrial DNANuclear geneSaccharomyces cerevisiaeUniparental inheritanceBioengineeringSaccharomyces cerevisiaeBiologyApplied Microbiology and BiotechnologyBiochemistryGenomeDNA MitochondrialDNA RibosomalPolymerase Chain ReactionSaccharomyces cerevisiae; Saccharomyces uvarum; yeast hybrid; gene expression; mitochondrial DNAGeneticsMycological Typing TechniquesGeneHexose transportCrosses GeneticGeneticsRibosomal RNAbiology.organism_classificationRNA Ribosomal 5.8SGenes MitochondrialFermentationHybridization GeneticBiotechnologyYeast (Chichester, England)
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New Insights Into Mitochondrial DNA Reconstruction and Variant Detection in Ancient Samples

2021

Ancient DNA (aDNA) studies are frequently focused on the analysis of the mitochondrial DNA (mtDNA), which is much more abundant than the nuclear genome, hence can be better retrieved from ancient remains. However, postmortem DNA damage and contamination make the data analysis difficult because of DNA fragmentation and nucleotide alterations. In this regard, the assessment of the heteroplasmic fraction in ancient mtDNA has always been considered an unachievable goal due to the complexity in distinguishing true endogenous variants from artifacts. We implemented and applied a computational pipeline for mtDNA analysis to a dataset of 30 ancient human samples from an Iron Age necropolis in Poliz…

Mitochondrial DNANuclear genelcsh:QH426-470DNA damagemitochondrial DNAComputational biologySettore BIO/08 - AntropologiaBiologyGenomeHeteroplasmyHaplogrouplcsh:Geneticsancient DNA mitochondrial DNA NUMTs heteroplasmy variant detection anthropologyAncient DNAancient DNA; heteroplasmy; mitochondrial DNA; NUMTs; variant detectionGeneticsMolecular MedicineDNA fragmentationheteroplasmyancient DNANUMTsvariant detectionGenetics (clinical)Original ResearchFrontiers in Genetics
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The complete mitochondrial genome of Bactrocera biguttula (Bezzi) (Diptera: Tephritidae) and phylogenetic relationships with other Dacini

2018

Bactrocera biguttula is an African olive fruit fly that does not attack cultivated olives but rather develops in the fruits of wild species of Olea and Noronhia. The complete mitochondrial genome of an individual specimen was characterized in comparison to other Bactrocera. The phylogenetic relationships of B. biguttula with other Dacini were investigated, with special focus on B. oleae, an agricultural pest known to attack cultivated and wild olives. The sequence had a total length of 15,829 bp, and included the typical features of insect mitogenomes, similarly to the other Bactrocera analysed. Start codons included ATG, ATC, ATT, and TCG (in COI). The majority of stop codons (TAA) were fu…

Mitochondrial DNAOlive fruit fly02 engineering and technologyBiochemistryOpen Reading Frames03 medical and health sciencesComplete sequenceRNA TransferStructural BiologyPhylogeneticsTephritidaeAnimalsBactroceraCodonMolecular BiologyPhylogeny030304 developmental biologyBase CompositionLikelihood Functions0303 health sciencesPhylogenetic treebiologyTephritidaeBayes TheoremGeneral MedicineAfrican olive fruit fly021001 nanoscience & nanotechnologybiology.organism_classificationStop codonMitogenomeWild olivesEvolutionary biologyGenome MitochondrialNucleic Acid ConformationDNA Circular0210 nano-technologyInternational Journal of Biological Macromolecules
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The mitochondrial genome of fission yeast: inability of all introns to splice autocatalytically, and construction and characterization of an intronle…

1991

In this paper we report the inability of four group I introns in the gene encoding subunit I of cytochrome c oxidase (cox1) and the group II intron in the apocytochrome b gene (cob) to splice autocatalytically. Furthermore we present the characterization of the first cox1 intron in the mutator strain anar-14 and the construction and characterization of strains with intronless mitochondrial genomes. We provide evidence that removal of introns at the DNA level (termed DNA splicing) is dependent on an active RNA maturase. Finally we demonstrate that the absence of introns does not abolish homologous mitochondrial recombination.

Mitochondrial DNARNA MitochondrialRNA SplicingMolecular Sequence DataBiologyDNA MitochondrialGenomeElectron Transport Complex IVConsensus SequenceSchizosaccharomycesGeneticsGroup I catalytic intronAmino Acid SequenceCloning MolecularMolecular BiologyGeneGeneticsBase SequenceIntronRNAGroup II intronCytochromes bCytochrome b GroupIntronsMitochondriaRNA splicingNucleic Acid ConformationRNAApoproteinsMolecular and General Genetics MGG
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Platyzoan mitochondrial genomes.

2012

Platyzoa is a putative lophotrochozoan (spiralian) subtaxon within the protostome clade of Metazoa, comprising a range of biologically diverse, mostly small worm-shaped animals. The monophyly of Platyzoa, the relationships between the putative subgroups Platyhelminthes, Gastrotricha and Gnathifera (the latter comprising at least Gnathostomulida, "Rotifera" and Acanthocephala) as well as some aspects of the internal phylogenies of these subgroups are highly debated. Here we review how complete mitochondrial (mt) genome data contribute to these debates. We highlight special features of the mt genomes and discuss problems in mtDNA phylogenies of the clade. Mitochondrial genome data seem to be …

Mitochondrial DNARotiferaZoologyGenomeDNA MitochondrialAcanthocephalaEvolution MolecularMonophylyGene OrderGeneticsAnimalsSpiraliaCladeMolecular BiologyEcology Evolution Behavior and SystematicsPhylogenyPhylogenetic treebiologySequence Analysis DNAbiology.organism_classificationInvertebratesEvolutionary biologyGenetic CodePlatyhelminthsGenome MitochondrialProtostomePlatyzoaMolecular phylogenetics and evolution
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A Revised Timescale for Human Evolution Based on Ancient Mitochondrial Genomes

2013

Summary Background Recent analyses of de novo DNA mutations in modern humans have suggested a nuclear substitution rate that is approximately half that of previous estimates based on fossil calibration. This result has led to suggestions that major events in human evolution occurred far earlier than previously thought. Results Here, we use mitochondrial genome sequences from ten securely dated ancient modern humans spanning 40,000 years as calibration points for the mitochondrial clock, thus yielding a direct estimate of the mitochondrial substitution rate. Our clock yields mitochondrial divergence times that are in agreement with earlier estimates based on calibration points derived from e…

Mitochondrial DNATime Factorsancient modern humansMolecular Sequence DataPopulationancient modern humans; mitochondrial genome; mitochondrial clockBiologyGenomeArticleGeneral Biochemistry Genetics and Molecular BiologyEvolution Molecular03 medical and health sciences0302 clinical medicineHumanseducationancient DNA Human EvolutionPhylogenyDemography030304 developmental biologyGeneticsHuman mitochondrial molecular clock0303 health scienceseducation.field_of_studyBase SequenceModels GeneticAgricultural and Biological Sciences(all)FossilsGenome HumanBiochemistry Genetics and Molecular Biology(all)HaplotypeHigh-Throughput Nucleotide SequencingBayes TheoremHaplogroup L3mitochondrial clockHaplotypesHuman evolutionmitochondrial genomeGenome MitochondrialLinear ModelsHuman genomeGeneral Agricultural and Biological Sciences030217 neurology & neurosurgeryCurrent Biology
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Mitochondrial genome sequence and gene order of Sipunculus nudus give additional support for an inclusion of Sipuncula into Annelida.

2010

Abstract Background Mitochondrial genomes are a valuable source of data for analysing phylogenetic relationships. Besides sequence information, mitochondrial gene order may add phylogenetically useful information, too. Sipuncula are unsegmented marine worms, traditionally placed in their own phylum. Recent molecular and morphological findings suggest a close affinity to the segmented Annelida. Results The first complete mitochondrial genome of a member of Sipuncula, Sipunculus nudus, is presented. All 37 genes characteristic for metazoan mtDNA were detected and are encoded on the same strand. The mitochondrial gene order (protein-coding and ribosomal RNA genes) resembles that of annelids, b…

Mitochondrial DNAlcsh:QH426-470Nematodalcsh:BiotechnologyAnnelidaBiologyGenomeDNA MitochondrialEvolution MolecularPhylogeneticslcsh:TP248.13-248.65ddc:570Sipunculus nudusGene OrderGeneticsAnimalsGeneInstitut für Biochemie und BiologiePhylogenyGeneticsSipunculaExpressed Sequence TagsAnnelidPhylogenetic treeSequence Analysis DNAbiology.organism_classificationlcsh:GeneticsGenes MitochondrialGenome MitochondrialBiotechnologyResearch ArticleBMC genomics
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More data on ancient human mitogenome variability in Italy: new mitochondrial genome sequences from three Upper Palaeolithic burials.

2021

BACKGROUND: Recently, the study of mitochondrial variability in ancient humans has allowed the definition of population dynamics that characterised Europe in the Late Pleistocene and Early Holocene. Despite the abundance of sites and skeletal remains few data are available for Italy. - AIM: We reconstructed the mitochondrial genomes of three Upper Palaeolithic individuals for some of the most important Italian archaeological contexts: Paglicci (South-Eastern Italy), San Teodoro (South-Western Italy) and Arene Candide (North-Western Italy) caves. - SUBJECTS AND METHODS We explored the phylogenetic relationships of the three mitogenomes in the context of Western Eurasian ancient and modern va…

Mitochondrial DNA; ancient DNA; Upper Palaeolithic; Italian huntergatherers; LGMAgingMitochondrial DNAPleistocenePhysiologyEpidemiologyLineage (evolution)PopulationItalian huntergatherersContext (language use)Settore BIO/08 - AntropologiaCaveGeneticsHumansDNA Ancienteducationancient DNAHolocenegeographyeducation.field_of_studygeography.geographical_feature_categoryGenome HumanPublic Health Environmental and Occupational HealthUpper PalaeolithicLGMMitochondrial DNAAncient DNAArchaeologyItalyItalian hunter-gatherersEvolutionary biologyGenome MitochondrialAnnals of human biology
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Conserved chromosomal clustering of genes governed by chromatin regulators in Drosophila

2008

Transcriptional analysis of chromatin regulator mutants in Drosophila melanogaster identified clusters of functionally related genes conserved in other insect species.

Model organismsanimal structuresTranscription GeneticEvolutionChromosomal Proteins Non-HistoneDrosòfila melanogasterGenome studiesDevelopmentBiologyNon-histone proteinAnimalsDrosophila ProteinsDrosòfila -- GenèticaTranscription factorGeneGeneticsMicroarray analysis techniquesResearchGene Expression ProfilingMutació (Biologia)fungiNuclear Proteinsbiology.organism_classificationChromatin Assembly and DisassemblyChromatinHistoneDrosophila melanogasterDrosofila melanogasterGene Expression RegulationMultigene Familybiology.proteinDrosophila melanogasterDrosophila ProteinGenètica del desenvolupamentTranscription FactorsGenome Biology
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