grant

EDGE CMT: Identifying genes that shape complex multigenic traits within and between yeast species

Organization UNIVERSITY OF MINNESOTALocation MINNEAPOLIS, UNITED STATESPosted 19 Aug 2025Deadline 31 Jul 2029
NIHUS FederalResearch GrantFY2025AcademiaAddressAllelesAllelomorphsBackBaker's YeastBrewer's YeastCausalityChromosome ArmChromosome MappingCommunitiesComplexComplex Genetic TraitDNADataData SetDeoxyribonucleic AcidDevelopmentDistantDorsumEducational process of instructingEngineeringEnvironmentEnvironmental FactorEnvironmental Risk FactorEtiologyEvolutionGene LocalizationGene MappingGene Mapping GeneticsGene x Environment InteractionGeneral PopulationGeneral PublicGeneralized GrowthGenesGeneticGenetic DiversityGenetic VariationGenomeGenomic SegmentGrantGrowthGxE interactionIndividualIndustryInstructionInterventionInvestigatorsKnowledgeLearningLibrariesLinkage MappingMapsMethodsMolecularMorphologyPathway interactionsPhenotypePhysiologicPhysiologicalPopulationQTLQuantitative Trait LociResearchResearch PersonnelResearch ResourcesResearchersResolutionResourcesRoleS cerevisiaeS. cerevisiaeSTEM EducationSTEM careerSTEM knowledgeSTEM workforceSaccharomycesSaccharomyces cerevisiaeScience, Technology, Engineering and Math EducationScience, Technology, Engineering and Mathematics EducationShapesSisterStudentsTeachingTestingTissue GrowthTotal Human and Non-Human Gene MappingVariantVariationWorkYeastscausal allelecausal genecausal mutationcausal variantcausationcausative mutationcausative variantcomputer based predictioncostdevelopmentaldisease causationentire genomeenvironment effect on geneenvironmental riskexperienceexperimentexperimental researchexperimental studyexperimentsfull genomefundamental researchgene environment interactiongenetic architecturegenetic mappinggenome scalegenome segmentgenome wide analysisgenome wide studiesgenome-widegenome-wide analysisgenome-wide identificationgenomewidegenomic regionimprovedinnovateinnovationinnovativeinsightinterestmemberontogenypathwaypredictive modelingreproductiveresolutionsscience, technology, engineering and math careerscience, technology, engineering and math knowledgescience, technology, engineering and math workforcescience, technology, engineering and mathematics careerscience, technology, engineering and mathematics knowledgescience, technology, engineering and mathematics workforcesocial rolespecies differencetraitundergradundergraduateundergraduate research experienceundergraduate research opportunitiesundergraduate research programsundergraduate studentwhole genome
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Description preview

Most phenotypic traits, including nearly all morphological, physiological, and molecular quantities, vary
continuously among individuals in a population. These traits are shaped by DNA variation at dozens to

thousands of genes, giving them a complex, multigenic basis. Over the past 20 years, there has been

remarkable progress in identifying…

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EDGE CMT: Identifying genes that shape complex multigenic traits within and between yeast species — UNIVERSITY OF MINNES | Dev Procure