Search results for "QUANTITATIVE TRAIT LOCUS"

showing 10 items of 69 documents

Mapping quantitative trait loci affecting biochemical and morphological fruit properties in eggplant (Solanum melongena L.)

2016

Eggplant berries are a source of health-promoting metabolites including antioxidant and nutraceutical compounds, mainly anthocyanins and chlorogenic acid; however, they also contain some anti-nutritional compounds such as steroidal glycoalkaloids (SGA) and saponins, which are responsible for the bitter taste of the flesh and with potential toxic effects on humans. Up to now, Quantitative Trait Loci (QTL) for the metabolic content are far from being characterized in eggplant, thus hampering the application of breeding programs aimed at improving its fruit quality. Here we report on the identification of some QTL for the fruit metabolic content in an F2 intraspecific mapping population of 156…

Anthocyanin0106 biological sciences0301 basic medicineQTLSettore AGR/13 - Chimica AgrariaPopulationSolasonineSettore AGR/04 - Orticoltura E FloricolturaPlant ScienceQuantitative trait locuslcsh:Plant culture01 natural sciencesBioactive compoundsAnthocyanins03 medical and health scienceschemistry.chemical_compoundGlycoalkaloidChlorogenic acidBotanylcsh:SB1-1110educationSolanaceaeOriginal Researcheducation.field_of_studyFruit qualitybiologyFleshAnthocyanins; Bioactive compounds; Chlorogenic acid; Fruit quality; Glycoalkaloid; QTL; Solanaceae; Plant Sciencefood and beveragesChlorogenic acidbiology.organism_classification030104 developmental biologychemistryGlycoalkaloidBioactive compoundSolanumSolanaceae010606 plant biology & botany
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Localization of quantitative trait loci for diapause and other photoperiodically regulated life history traits important in adaptation to seasonally …

2015

Seasonally changing environments at high latitudes present great challenges for the reproduction and survival of insects, and photoperiodic cues play an important role in helping them to synchronize their life cycle with prevalent and forthcoming conditions. We have mapped quantitative trait loci (QTL) responsible for the photoperiodic regulation of four life history traits, female reproductive diapause, cold tolerance, egg-to-eclosion development time and juvenile body weight in Drosophila montana strains from different latitudes in Canada and Finland. The F2 progeny of the cross was reared under a single photoperiod (LD cycle 16:8), which the flies from the Canadian population interpret a…

CanadaGenotypeGenetic LinkagePhotoperioddevelopment timeQuantitative Trait Locijuvenile body weightBiologyDiapauseQuantitative trait locusPolymorphism Single NucleotideLife history theoryGene interactionDrosophila montanaGenetic linkageGeneticsJuvenileAnimalsEcology Evolution Behavior and SystematicsCrosses GeneticFinlandGeneticsphotoperiodismta1184food and beveragescold tolerancediapauseGenetics PopulationPhenotypeEvolutionary biologyta1181EpistasisDrosophilaFemaleSeasonsAdaptation
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Genome-Wide Haplotype Analysis of Cis Expression Quantitative Trait Loci in Monocytes

2013

In order to assess whether gene expression variability could be influenced by several SNPs acting in cis, either through additive or more complex haplotype effects, a systematic genome-wide search for cis haplotype expression quantitative trait loci (eQTL) was conducted in a sample of 758 individuals, part of the Cardiogenics Transcriptomic Study, for which genome-wide monocyte expression and GWAS data were available. 19,805 RNA probes were assessed for cis haplotypic regulation through investigation of ∼2,1×109 haplotypic combinations. 2,650 probes demonstrated haplotypic p-values >104-fold smaller than the best single SNP p-value. Replication of significant haplotype effects were tested f…

Cancer Researchmedicine.medical_specialtyHereditylcsh:QH426-470Immune Cells[SDV]Life Sciences [q-bio]Quantitative Trait LociImmunologyGene ExpressionGenome-wide association studySingle-nucleotide polymorphismQuantitative trait locusBiologyRegulatory Sequences Nucleic AcidPolymorphism Single NucleotideMonocytes03 medical and health sciences0302 clinical medicineMolecular geneticsmedicineGeneticsGenome-Wide Association StudiesSNPHumansGenetic Predisposition to DiseaseMolecular BiologyBiologyGenetics (clinical)Ecology Evolution Behavior and Systematics030304 developmental biologyGenetics0303 health sciencesQuantitative TraitsComplex TraitsHaplotypeGenomicslcsh:GeneticsGene Expression RegulationHaplotypesExpression quantitative trait lociGenome Expression Analysis030217 neurology & neurosurgeryImputation (genetics)Population GeneticsGenome-Wide Association StudyResearch Article
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Quantitative trait loci affecting the 3D skull shape and size in mouse and prioritization of candidate genes in-silico.

2015

13 pages; International audience; We describe the first application of high-resolution 3D micro-computed tomography, together with 3D landmarks and geometric morphometrics, to map QTL responsible for variation in skull shape and size using a backcross between C57BL/6J and A/J inbred strains. Using 433 animals, 53 3D landmarks, and 882 SNPs from autosomes, we identified seven QTL responsible for the skull size (SCS.qtl) and 30 QTL responsible for the skull shape (SSH.qtl). Size, sex, and direction-of-cross were all significant factors and included in the analysis as covariates. All autosomes harbored at least one SSH.qtl, sometimes up to three. Effect sizes of SSH.qtl appeared to be small, r…

Candidate genePhysiologySingle-nucleotide polymorphismBiologyQuantitative trait locuslcsh:Physiology[ SDV.BDD.MOR ] Life Sciences [q-bio]/Development Biology/MorphogenesisFamily-based QTL mapping3D imagingPhysiology (medical)medicinegeometric morphometricsskull shapeOriginal ResearchGeneticsMorphometricsAutosomelcsh:QP1-981food and beverages[SDV.BDD.MOR]Life Sciences [q-bio]/Development Biology/Morphogenesis[ SDV.GEN.GA ] Life Sciences [q-bio]/Genetics/Animal geneticsmultivariate QTL mappingcandidate gene enrichmentSkull[SDV.GEN.GA]Life Sciences [q-bio]/Genetics/Animal geneticsmedicine.anatomical_structureNeurocranium
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Network reconstruction for trans acting genetic loci using multi-omics data and prior information.

2022

Background: Molecular measurements of the genome, the transcriptome, and the epigenome, often termed multi-omics data, provide an in-depth view on biological systems and their integration is crucial for gaining insights in complex regulatory processes. These data can be used to explain disease related genetic variants by linking them to intermediate molecular traits (quantitative trait loci, QTL). Molecular networks regulating cellular processes leave footprints in QTL results as so-called trans-QTL hotspots. Reconstructing these networks is a complex endeavor and use of biological prior information can improve network inference. However, previous efforts were limited in the types of priors…

Data Integrationeducation.field_of_studyComputer scienceScale (chemistry)Bayesian probabilityPopulationQuantitative Trait LociBiological databaseInferenceData Integration ; Machine Learning ; Multi-omics ; Network Inference ; Personalized Medicine ; Prior Information ; Simulation ; Systems BiologyComputational biologyQuantitative trait locusReplication (computing)Machine LearningPrior probabilityCohortGeneticsMolecular MedicineHumans:Medicine [Science]Gene Regulatory NetworkseducationTranscriptomeMolecular BiologyGenetics (clinical)Genome medicine
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Mpdz is a quantitative trait gene for drug withdrawal seizures

2004

Physiological dependence and associated withdrawal episodes can constitute a powerful motivational force that perpetuates drug use and abuse. Using robust behavioral models of drug physiological dependence in mice, positional cloning, and sequence and expression analyses, we identified an addiction-relevant quantitative trait gene, Mpdz. Our findings provide a framework to define the protein interactions and neural circuit by which this gene's product (multiple PDZ domain protein) affects drug dependence, withdrawal and relapse.

DrugGenotypePositional cloningmedia_common.quotation_subjectMolecular Sequence DataQuantitative Trait LociPDZ domainGene ExpressionQuantitative trait locusBiologyProtein–protein interactionMiceMice CongenicDrug withdrawalSeizuresmedicineAnimalsGenetic Predisposition to DiseaseCloning MolecularGenemedia_commonGeneticsBehavior AnimalEthanolGeneral NeuroscienceChromosome MappingMembrane ProteinsEmbryo Mammalianmedicine.diseaseSubstance Withdrawal SyndromeMice Inbred C57BLCarrier ProteinsNeuroscienceNature Neuroscience
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The peach volatilome modularity is reflected at the genetic and environmental response levels in a QTL mapping population

2014

Background: The improvement of fruit aroma is currently one of the most sought-after objectives in peach breeding programs. To better characterize and assess the genetic potential for increasing aroma quality by breeding, a quantity trait locus (QTL) analysis approach was carried out in an F-1 population segregating largely for fruit traits. Results: Linkage maps were constructed using the IPSC peach 9 K Infinium (R) II array, rendering dense genetic maps, except in the case of certain chromosomes, probably due to identity-by-descent of those chromosomes in the parental genotypes. The variability in compounds associated with aroma was analyzed by a metabolomic approach based on GC-MS to pro…

FitomejoramientoVolatile CompoundsGenotyping TechniquesQuantitative Trait LociPopulationLocus (genetics)Plant ScienceBreedingEnvironmentQuantitative trait locusPolymorphism Single NucleotideCompuesto VolátilPrunusMetabolomicsQTL (Quantitative Trait Loci)Databases GeneticGenotypeCluster AnalysisPrunus PersicaGene Regulatory NetworkseducationAromaAromaLoci de Rasgos CuantitativosGeneticsPrincipal Component AnalysisVolatile Organic Compoundseducation.field_of_studybiologyDuraznoChromosome Mappingfood and beveragesbiology.organism_classificationPlant BreedingFruitPeachesMetabolomeTraitPrunusLod ScoreResearch ArticleBMC Plant Biology
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Genetic variability at neutral markers, quantitative trait loci and trait in a subdivided population under selection

2003

Abstract Genetic variability in a subdivided population under stabilizing and diversifying selection was investigated at three levels: neutral markers, QTL coding for a trait, and the trait itself. A quantitative model with additive effects was used to link genotypes to phenotypes. No physical linkage was introduced. Using an analytical approach, we compared the diversity within deme (HS) and the differentiation (FST) at the QTL with the genetic variance within deme (VW) and the differentiation (QST) for the trait. The difference between FST and QST was shown to depend on the relative amounts of covariance between QTL within and between demes. Simulations were used to study the effect of se…

Genetic Markers0106 biological sciencesGenotypeQuantitative Trait LociPopulation[SDV.GEN] Life Sciences [q-bio]/GeneticsQuantitative trait locusBiology010603 evolutionary biology01 natural sciences03 medical and health sciencesFamily-based QTL mappingGeneticsComputer SimulationGenetic variabilitySelection Genetic10. No inequalityeducationSelection (genetic algorithm)ComputingMilieux_MISCELLANEOUS030304 developmental biologyDemeGenetics0303 health scienceseducation.field_of_study[SDV.GEN]Life Sciences [q-bio]/GeneticsModels GeneticDisruptive selectionGenetic VariationGenetic architectureGenetics PopulationPhenotypeEvolutionary biologyResearch Article
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Fine mapping of the 2p11 dyslexia locus and exclusion of TACR1 as a candidate gene.

2003

Developmental dyslexia, or reading disability, is a multigenic complex disease for which at least five loci, i.e. DYX1-3 and DYX5-6, have been clearly identified from the human genome. To date, DYX1C1 is the only dyslexia candidate gene cloned. We have previously reported linkage to 2p11 and 7q32 in 11 Finnish pedigrees. Here, we report the fine mapping of the approximately 40-cM linked region from chromosome 2 as we increased marker density to one per 1.8 cM. Linkage was supported with the highest NPL score of 3.0 (P=0.001) for marker D2S2216. Association analysis using the six pedigrees showing linkage pointed to marker D2S286/rs3220265 (P value0.001) in the near vicinity of D2S2216. We w…

Genetic MarkersCandidate geneLocus (genetics)Quantitative trait locusBiologyPolymorphism Single NucleotideDyslexia03 medical and health sciences0302 clinical medicineGene mappingGenetic linkageGeneticsmedicineHumansGenetics (clinical)FinlandReceptors Tachykinin030304 developmental biologyGenetics0303 health sciencesGene Expression ProfilingHaplotypeDyslexiaChromosome Mappingmedicine.diseaseBlotting NorthernPedigreeGenetic markerChromosomes Human Pair 2030217 neurology & neurosurgeryMicrosatellite RepeatsHuman genetics
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Identification of a genetic contamination in a commercial mouse strain using two panels of polymorphic markers

2007

Rapid detection of genetic contamination is critical in mouse studies involving inbred strains. During a Quantitative Trait Locus (QTL) study using simple sequence length polymorphism (SSLP) markers, we noticed heterozygosity at some loci of a commercially available inbred C57BL/6N mouse strain, suggesting a contamination by another mouse strain. A panel of 100 single-nucleotide polymorphism (SNP) markers was used to confirm and specify the genetic contamination suspected. Retrospective analyses demonstrated that the contamination took place as early as autumn 2003 and has persisted ever since at a fairly constant level. Contaminating alleles most probably originated from a DBA strain. Our…

Genetic MarkersGenotypeMice Inbred StrainsBiologyQuantitative trait locusMice03 medical and health sciences0302 clinical medicineInbred strainGenotypeAnimalsGenetic TestingAlleleSimple sequence length polymorphism030304 developmental biologyGeneticsMice Inbred BALB C0303 health sciencesPolymorphism GeneticBase SequenceGeneral VeterinaryGenetic Carrier ScreeningStrain (biology)Mice Inbred C57BLGenetic marker030220 oncology & carcinogenesisAnimal Science and ZoologyGenetic monitoringLaboratory Animals
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