Annotating the genotype-phenotype relationship, and developing a proper quantitative description of the relationship, requires understanding the impact of natural genomic variation on gene expression. We apply a sequence-level model of gap gene expression in the early development of Drosophila to analyze single nucleotide polymorphisms (SNPs) in a panel of natural sequenced D. melanogaster lines. Using a thermodynamic modeling framework, we provide both analytical and computational descriptions of how single-nucleotide variants affect gene expression. The analysis reveals that the sequence variants increase (decrease) gene expression if located within binding sites of repressors (activators). We show that the sign of SNP influence (activati...
A central challenge in regulatory genomics today is to understand the precise relationship between r...
SummaryQuantitative traits are shaped by networks of pleiotropic genes [1]. To understand the mechan...
2015-03-28Connecting genetic variants with phenotypic differences is a fundamental aim in bio- logic...
A fundamental problem in functional genomics is to determine the structure and dynamics of genetic n...
Quantitative analysis of Drosophila melanogaster gap gene expression data reveals valuable informati...
Developmental gene networks implement the dynamic regulatory mechanisms that pattern and shape the o...
Developmental gene networks implement the dynamic regulatory mechanisms that pattern and shape the o...
Variation in gene expression contributes significantly to phenotypic variation. As a result, in addi...
Variation in gene expression contributes significantly to phenotypic variation. As a result, in addi...
Understanding the relationship between genetic and phenotypic variation is one of the great outstand...
<div><p>Understanding the relationship between genetic and phenotypic variation is one of the great ...
Understanding the relationship between genetic and phenotypic variation is one of the great outstand...
Background: Inference of gene regulatory networks (GRNs) requires accurate data, a method to simulat...
We present a general methodology in order to build mathematical models of genetic regulatory network...
Understanding the relationship between genetic and phenotypic variation is one of the great outstand...
A central challenge in regulatory genomics today is to understand the precise relationship between r...
SummaryQuantitative traits are shaped by networks of pleiotropic genes [1]. To understand the mechan...
2015-03-28Connecting genetic variants with phenotypic differences is a fundamental aim in bio- logic...
A fundamental problem in functional genomics is to determine the structure and dynamics of genetic n...
Quantitative analysis of Drosophila melanogaster gap gene expression data reveals valuable informati...
Developmental gene networks implement the dynamic regulatory mechanisms that pattern and shape the o...
Developmental gene networks implement the dynamic regulatory mechanisms that pattern and shape the o...
Variation in gene expression contributes significantly to phenotypic variation. As a result, in addi...
Variation in gene expression contributes significantly to phenotypic variation. As a result, in addi...
Understanding the relationship between genetic and phenotypic variation is one of the great outstand...
<div><p>Understanding the relationship between genetic and phenotypic variation is one of the great ...
Understanding the relationship between genetic and phenotypic variation is one of the great outstand...
Background: Inference of gene regulatory networks (GRNs) requires accurate data, a method to simulat...
We present a general methodology in order to build mathematical models of genetic regulatory network...
Understanding the relationship between genetic and phenotypic variation is one of the great outstand...
A central challenge in regulatory genomics today is to understand the precise relationship between r...
SummaryQuantitative traits are shaped by networks of pleiotropic genes [1]. To understand the mechan...
2015-03-28Connecting genetic variants with phenotypic differences is a fundamental aim in bio- logic...