Gene regulatory networks generating the phenomena of additivity, dominance and epistasis.
about
The next evolutionary synthesis: from Lamarck and Darwin to genomic variation and systems biologyWeak selection and protein evolutionGenetic and environmental factors affecting cryptic variations in gene regulatory networksGenotype-Phenotype Map Characteristics of an In silico Heart CellEstimating coarse gene network structure from large-scale gene perturbation data.Genetic assimilation: a review of its potential proximate causes and evolutionary consequences.Nonlinear regulation enhances the phenotypic expression of trans-acting genetic polymorphismsA network model for the correlation between epistasis and genomic complexity.Allele interaction--single locus genetics meets regulatory biologySequence variation and genetic evolution at the human F12 locus: mapping quantitative trait nucleotides that influence FXII plasma levels.Inferences about the distribution of dominance drawn from yeast gene knockout data.Estimating directional epistasisNonlinear developmental processes as sources of dominanceHeterosis as investigated in terms of polyploidy and genetic diversity using designed Brassica juncea amphiploid and its progenitor diploid species.Parameters in dynamic models of complex traits are containers of missing heritability.Widespread correlations between dominance and homozygous effects of mutations: implications for theories of dominance.The genetic architecture of the behavioral ontogeny of foraging in honeybee workersExtensive sex-specific nonadditivity of gene expression in Drosophila melanogaster.Effect of regulatory architecture on broad versus narrow sense heritability.Epistasis correlates to genomic complexity.A classical genetic solution to enhance the biosynthesis of anticancer phytochemicals in Andrographis paniculata Nees.Dominance effects of deleterious and beneficial mutations in a single gene of the RNA virus ϕ6.Fitness landscapes: an alternative theory for the dominance of mutationStatistical epistasis is a generic feature of gene regulatory networksGene-Environment Interactions in Stress Response Contribute Additively to a Genotype-Environment Interaction.Modifiers of the Genotype-Phenotype Map: Hsp90 and Beyond.Inter-chromosomal level of genome organization and longevity-related phenotypes in humansWhen parameters in dynamic models become phenotypes: a case study on flesh pigmentation in the chinook salmon (Oncorhynchus tshawytscha).Models from experiments: combinatorial drug perturbations of cancer cells.Exploring the molecular etiology of dominant-negative mutations.Understanding quantitative genetics in the systems biology era.Genetic regulatory network motifs constrain adaptation through curvature in the landscape of mutational (co)variance.Bridging the genotype-phenotype gap: what does it take?Propagation of genetic variation in gene regulatory networks.The selective values of alleles in a molecular network model are context dependent.Evolution of dominance in metabolic pathways.Monotonicity is a key feature of genotype-phenotype maps.Gene dosage balance in cellular pathways: implications for dominance and gene duplicability.Genetic background affects epistatic interactions between two beneficial mutations.A New Mechanism for Mendelian Dominance in Regulatory Genetic Pathways: Competitive Binding by Transcription Factors.
P2860
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P2860
Gene regulatory networks generating the phenomena of additivity, dominance and epistasis.
description
2000 nî lūn-bûn
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2000 թուականի Յունիսին հրատարակուած գիտական յօդուած
@hyw
2000 թվականի հունիսին հրատարակված գիտական հոդված
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2000年の論文
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2000年論文
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2000年論文
@zh-hant
2000年論文
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2000年論文
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2000年論文
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2000年论文
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name
Gene regulatory networks generating the phenomena of additivity, dominance and epistasis.
@ast
Gene regulatory networks generating the phenomena of additivity, dominance and epistasis.
@en
Gene regulatory networks generating the phenomena of additivity, dominance and epistasis.
@nl
type
label
Gene regulatory networks generating the phenomena of additivity, dominance and epistasis.
@ast
Gene regulatory networks generating the phenomena of additivity, dominance and epistasis.
@en
Gene regulatory networks generating the phenomena of additivity, dominance and epistasis.
@nl
prefLabel
Gene regulatory networks generating the phenomena of additivity, dominance and epistasis.
@ast
Gene regulatory networks generating the phenomena of additivity, dominance and epistasis.
@en
Gene regulatory networks generating the phenomena of additivity, dominance and epistasis.
@nl
P2093
P2860
P1433
P1476
Gene regulatory networks generating the phenomena of additivity, dominance and epistasis
@en
P2093
P2860
P304
P407
P577
2000-06-01T00:00:00Z