Search results for "Ploidy"

showing 10 items of 299 documents

The oxidizing agent tertiary butyl hydroperoxide induces disturbances in spindle organization, c-meiosis, and aneuploidy in mouse oocytes

1996

It has been recently proposed that a concomitant generation of oxidative stress of oocytes with increasing maternal age may be a major factor responsible for the age-related increase in aneuploid conceptions. As a preliminary step in the testing of this hypothesis, we need to confirm that oxidative stress in itself can induce errors in chromosome segregation. In order to achieve this goal, germinal vesicle (GV)-stage mouse oocytes from unstimulated ICR and (C57BL x CBA) F1 hybrid female mice were matured in vitro for 9 h for metaphase I (MI) oocytes or 16 h for metaphase II (MII) oocytes in the presence of varying concentrations of the oxidizing agent tertiary-butyl hydroperoxide (tBH). MII…

EmbryologyAneuploidyIn Vitro TechniquesBiologyChromosome segregationMicetert-ButylhydroperoxideMeiosisBone plateGeneticsmedicineAnimalsHumansMolecular BiologyMice Inbred ICRMicroscopy ConfocalGerminal vesicleMeiosis IIObstetrics and GynecologyCell BiologyAneuploidyOxidantsmedicine.diseaseOocyteMolecular biologyPeroxidesCell biologyMice Inbred C57BLMeiosisOxidative Stressmedicine.anatomical_structureReproductive MedicineMice Inbred CBAOocytesSpindle organizationFemaleMaternal AgeDevelopmental Biology
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The genus Isoëtes L. (Lycophyta, Isoëtaceae): Synthesis of karyological data

2001

Summary A synthesis of relevant karyological data regarding the genus Isoetes is given, with an up-to-date check list of chromosome numbers including 152 records referring to 67 taxa (62 species and 5 infraspecific taxa) and 16 hybrids. Total of different chromosome counts (considering two or more cytotypes for certain taxa, excluding hybrids) is 80. Probable base number is x = 11, even though x = 10 and x = 12 have been proposed for certain species. On the basis of data here summarized, the mean percentage of polyploidy is 61.2%; 31 taxa are diploids (38.8%), 28 are tetraploids (35.0%), 8 are hexaploids (10.0%), with a few species each which are tri-, penta-, octo-, deca- and dodeca-ploids…

Evolutionmedia_common.quotation_subjectZoologychromosome numberPlant ScienceBiologyLycophytaIsoëteGenusPloidyIsoetaceaeBotanyEcology Evolution Behavior and SystematicsHybridmedia_commonEcologySettore BIO/02 - Botanica SistematicaKaryotypebiology.organism_classificationEcology Evolution Behavior and SystematicLycopodiophytaSpeciationTaxonIsoetesSettore BIO/03 - Botanica Ambientale E ApplicataPloidylycophyteKaryology
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Genetic and Ecotypic Differentiation in a Californian Plant Polyploid Complex (Grindelia, Asteraceae)

2014

Studies of ecotypic differentiation in the California Floristic Province have contributed greatly to plant evolutionary biology since the pioneering work of Clausen, Keck, and Hiesey. The extent of gene flow and genetic differentiation across interfertile ecotypes that span major habitats in the California Floristic Province is understudied, however, and is important for understanding the prospects for local adaptation to evolve or persist in the face of potential gene flow across populations in different ecological settings. We used microsatellite data to examine local differentiation in one of these lineages, the Pacific Coast polyploid complex of the plant genus Grindelia (Asteraceae). W…

Evolutionary GeneticsMarshPlant EvolutionSpeciationlcsh:MedicinePlant ScienceCaliforniaGene flowPloidyMolecular SystematicsNatural Selectionlcsh:ScienceFlowering Plantseducation.field_of_studyMultidisciplinarygeography.geographical_feature_categoryGeographyEcotypeEcologyfood and beveragesPolyploid complexPlantsBiological EvolutionHabitatResearch ArticleGene FlowEvolutionary ProcessesGrindeliaGenotypeGeneral Science & TechnologyPopulationParallel EvolutionBiologyPolyploidyGrindeliaEvolutionary Adaptationparasitic diseasesGeneticsEvolutionary SystematicseducationHybridizationTaxonomyLocal adaptationEcotypeEvolutionary BiologygeographyPopulation Biologylcsh:ROrganismsBiology and Life SciencesGeobotanyPlant Taxonomybiology.organism_classificationOrganismal EvolutionGenetic Locilcsh:QPopulation GeneticsMicrosatellite RepeatsPLoS ONE
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Reconstruction of the evolutionary history of Saccharomyces cerevisiae x S. kudriavzevii hybrids based on multilocus sequence analysis.

2012

In recent years, interspecific hybridization and introgression are increasingly recognized as significant events in the evolution of Saccharomyces yeasts. These mechanisms have probably been involved in the origin of novel yeast genotypes and phenotypes, which in due course were to colonize and predominate in the new fermentative environments created by human manipulation. The particular conditions in which hybrids arose are still unknown, as well as the number of possible hybridization events that generated the whole set of natural hybrids described in the literature during recent years. In this study, we could infer at least six different hybridization events that originated a set of 26 S…

Evolutionary Geneticslcsh:MedicineYeast and Fungal ModelsWineSaccharomycesGenomeSouth AfricaNatural SelectionFungal EvolutionDNA FungalMycological Typing Techniqueslcsh:ScienceGenome EvolutionPhylogenyRecombination GeneticGeneticsMultidisciplinarybiologyfood and beveragesGenomicsBiological EvolutionEuropePhylogeographyPloidyResearch ArticleGenome evolutionEvolutionary ProcessesGenotypeGenes FungalIntrogressionGenomicsMycologySaccharomyces cerevisiaeMicrobiologySaccharomycesModel OrganismsPhylogeneticsGeneticsHumansAdaptationBiologyHybridizationHybridEvolutionary BiologyPloidiesChimeralcsh:RComparative GenomicsSouth Americabiology.organism_classificationYeastGenetic Polymorphismlcsh:QPopulation GeneticsMultilocus Sequence TypingPLoS ONE
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Past climate changes facilitated homoploid speciation in three mountain spiny fescues (Festuca, Poaceae)

2016

Apart from the overwhelming cases of allopolyploidization, the impact of speciation through homoploid hybridization is becoming more relevant than previously thought. Much less is known, however, about the impact of climate changes as a driven factor of speciation. To investigate these issues, we selected Festuca picoeuropeana, an hypothetical natural hybrid between the diploid species F. eskia and F. gautieri that occurs in two different mountain ranges (Cantabrian Mountains and Pyrenees) separated by more than 400 km. To unravel the outcomes of this mode of speciation and the impact of climate during speciation we used a multidisciplinary approach combining genome size and chromosome coun…

Festuca0106 biological sciences0301 basic medicineReproductive IsolationFestucaGenetic SpeciationClimate ChangeNicheIntrogressionBiology010603 evolutionary biology01 natural sciencesArticlePolyploidy03 medical and health sciencesSpecies SpecificityGenetic algorithmPhylogenyHybridEcological nichePloidiesMultidisciplinaryGeographyGenetic VariationReproductive isolation15. Life on landbiology.organism_classificationDiploidy030104 developmental biologyGenetic SpeciationSpain13. Climate actionEvolutionary biologyHybridization GeneticGenome PlantScientific Reports
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Study of the combined effects of CDK1 inhibitors and senolytic drugs for the clearance of aneuploid-senescent cells

2022

Despite the progresses in discovering new therapeutic drugs and treatments, cancer is still one of the main causes of death. The biggest part of available treatments, moreover, is not always effective against tumour spread and it also has negative effects on the healthy tissues of the individual. For this reason, it is extremely relevant to find new strategies to avoid side effects during the anti-cancer therapies. Aneuploidy, an aberrant number of chromosomes in the cell, is a typical condition of cancer cells caused mainly by segregation errors and chromosomal instability (CIN). CIN is a process by which higher rate of chromosome segregation defects occurs by different mechanisms (chromos…

FlavonoidsSettore BIO/18 - GeneticaSettore BIO/10 - BiochimicaCDK1 inhibitionSenolyticCell cycleAneuploidySenescence: CDK1
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Genetic diversity in Cytisus aeolicus Guss. (Leguminosae), a rare endemite of the Italian flora

1998

ABSTRACT Cytisus aeolicus Guss, is an endemic plant restricted to the isles of Vulcano, Stromboli and Alicudi in the Aeolian archipelago. All known populations were assayed for genetic variability using enzyme polymorphism. Allozyme variation at 16 loci coding for 10 enzyme systems was examined. The great majority of loci turned out to be monomorphic or fixed heterozygous. The observed genetic depauperation is indicative of historical factors, such as the bottleneck effect associated with migration, and the founder effect in population re-establishment. The low genetic diversity is largely partitioned within rather than among populations, indicating that extant populations have not been est…

FloraGenetic diversityeducation.field_of_studyEcologyPopulation sizeAeolian islands allozyme electrophoresis conservation endangered species genetic erosion polyploidy biogeography evolution floraSettore BIO/02 - Botanica SistematicaPopulationSmall population sizePlant ScienceBiologyCritically endangeredEvolutionary biologySettore BIO/03 - Botanica Ambientale E ApplicataGenetic variabilityeducationEcology Evolution Behavior and SystematicsFounder effect
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Development and implementation of high-throughput SNP genotyping in barley

2009

Abstract Background High density genetic maps of plants have, nearly without exception, made use of marker datasets containing missing or questionable genotype calls derived from a variety of genic and non-genic or anonymous markers, and been presented as a single linear order of genetic loci for each linkage group. The consequences of missing or erroneous data include falsely separated markers, expansion of cM distances and incorrect marker order. These imperfections are amplified in consensus maps and problematic when fine resolution is critical including comparative genome analyses and map-based cloning. Here we provide a new paradigm, a high-density consensus genetic map of barley based…

Genetic Markers0106 biological sciencesGenotypelcsh:QH426-470Genetic Linkagelcsh:BiotechnologyPopulationSingle-nucleotide polymorphismBiologyPolymorphism Single Nucleotide01 natural sciences03 medical and health sciencesGene mappinglcsh:TP248.13-248.65Research articleGeneticseducationAlleles030304 developmental biology2. Zero hungerGenetics0303 health scienceseducation.field_of_studyfood and beveragesHordeumSNP genotypingMinor allele frequencylcsh:GeneticsGenetic TechniquesGenetic distanceGenetic markerDoubled haploidy010606 plant biology & botanyBiotechnology
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Tetrasomy 18p de novo: Identification by FISH with conventional and microdissection probes and analysis of parental origin and formation by short seq…

1996

We report a de novo supernumerary isochromosome 18p in a child with tetrasomy 18p, analyzed by a straightforward combination of cytogenetic and molecular cytogenetic methods. The diagnostic procedure consisted of standard banding techniques and fluorescence in situ hybridization (FISH) with centromere and library DNA probes for chromosome 18, and 18p-specific FISH probes prepared by chromosome microdissection and in vitro amplification. The maternal origin as well as the most probable cell stages of formation of the supernumerary isochromosome were determined by typing of short sequence repeats (SSRs). The pattern of allelic distribution suggests a nondisjunction during meiosis followed by …

Genetic MarkersMalemedicine.medical_specialtyMarker chromosomeCentromereIsochromosomeMothersBiologyFathersTetrasomy 18pChromosome 18GeneticsmedicineHumansAllelesIn Situ Hybridization FluorescenceGenetics (clinical)Repetitive Sequences Nucleic AcidGeneticsmedicine.diagnostic_testCytogeneticsChromosome MappingInfantAneuploidymedicine.diseaseChromosome microdissectionMolecular biologyChild PreschoolTetrasomyFemaleChromosomes Human Pair 18DNA ProbesFluorescence in situ hybridizationHuman Genetics
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Molecular Characterization of a Chromosomal Rearrangement Involved in the Adaptive Evolution of Yeast Strains

2002

Wine yeast strains show a high level of chromosome length polymorphism. This polymorphism is mainly generated by illegitimate recombination mediated by Ty transposons or subtelomeric repeated sequences. We have found, however, that the SSU1-R allele, which confers sulfite resistance to yeast cells, is the product of a reciprocal translocation between chromosomes VIII and XVI due to unequal crossing-over mediated by microhomology between very short sequences on the 5' upstream regions of the SSU1 and ECM34 genes. We also show that this translocation is only present in wine yeast strains, suggesting that the use for millennia of sulfite as a preservative in wine production could have favored …

Genetic MarkersSaccharomyces cerevisiae ProteinsLetterChromosomal rearrangementsAnion Transport ProteinsGenes FungalMolecular Sequence DataSaccharomyces cerevisiaeSaccharomyces cerevisiaeChromosomal rearrangementSaccharomycesGenètica molecularTranslocation GeneticEvolution MolecularSaccharomycesGene FrequencySpecies SpecificityGeneticsVinificationDNA FungalGeneGenetics (clinical)Wine yeastsGene RearrangementRecombination GeneticGeneticsBase SequencebiologyGene rearrangementbiology.organism_classificationYeastYeast in winemakingChromosomes FungalGenome FungalPloidyGenome Research
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