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Gene balance hypothesis: Connecting issues of dosage sensitivity across biological disciplines
by
Birchler, James A
, Veitia, Reiner A
in
Aneuploidy
/ Biochemistry, Molecular Biology
/ Biological Sciences
/ Chromosomes
/ Chromosomes - genetics
/ Drosophila
/ Evolution
/ Evolution, Molecular
/ Evolutionary biology
/ Evolutionary genetics
/ Gene dosage
/ Gene Dosage - physiology
/ Gene expression
/ Genes
/ Genetic variation
/ Genome - genetics
/ Genomes
/ Genomics
/ Life Sciences
/ Models, Genetic
/ Phenotype
/ Ploidies
/ population dynamics
/ Quantitative Trait, Heritable
/ quantitative traits
/ signal transduction
2012
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Gene balance hypothesis: Connecting issues of dosage sensitivity across biological disciplines
by
Birchler, James A
, Veitia, Reiner A
in
Aneuploidy
/ Biochemistry, Molecular Biology
/ Biological Sciences
/ Chromosomes
/ Chromosomes - genetics
/ Drosophila
/ Evolution
/ Evolution, Molecular
/ Evolutionary biology
/ Evolutionary genetics
/ Gene dosage
/ Gene Dosage - physiology
/ Gene expression
/ Genes
/ Genetic variation
/ Genome - genetics
/ Genomes
/ Genomics
/ Life Sciences
/ Models, Genetic
/ Phenotype
/ Ploidies
/ population dynamics
/ Quantitative Trait, Heritable
/ quantitative traits
/ signal transduction
2012
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Do you wish to request the book?
Gene balance hypothesis: Connecting issues of dosage sensitivity across biological disciplines
by
Birchler, James A
, Veitia, Reiner A
in
Aneuploidy
/ Biochemistry, Molecular Biology
/ Biological Sciences
/ Chromosomes
/ Chromosomes - genetics
/ Drosophila
/ Evolution
/ Evolution, Molecular
/ Evolutionary biology
/ Evolutionary genetics
/ Gene dosage
/ Gene Dosage - physiology
/ Gene expression
/ Genes
/ Genetic variation
/ Genome - genetics
/ Genomes
/ Genomics
/ Life Sciences
/ Models, Genetic
/ Phenotype
/ Ploidies
/ population dynamics
/ Quantitative Trait, Heritable
/ quantitative traits
/ signal transduction
2012
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Gene balance hypothesis: Connecting issues of dosage sensitivity across biological disciplines
Journal Article
Gene balance hypothesis: Connecting issues of dosage sensitivity across biological disciplines
2012
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Overview
We summarize, in this review, the evidence that genomic balance influences gene expression, quantitative traits, dosage compensation, aneuploid syndromes, population dynamics of copy number variants and differential evolutionary fate of genes after partial or whole-genome duplication. Gene balance effects are hypothesized to result from stoichiometric differences among members of macromolecular complexes, the interactome, and signaling pathways. The implications of gene balance are discussed.
Publisher
National Academy of Sciences,National Acad Sciences
Subject
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