One of the challenges of systems biology is to integrate multiple sources of data in order to build a cohesive view of the system of study. Here we describe the mass spectrometry based profiling of maize kernels, a model system for genomic studies and a cornerstone of the agroeconomy. Using a network analysis, we can include 97.5% of the 8,710 features detected from 210 varieties into a single framework. More conservatively, 47.1% of compounds detected can be organized into a network with 48 distinct modules. Eigenvalues were calculated for each module and then used as inputs for genome-wide association studies. Nineteen modules returned significant results, illustrating the genetic control of biochemical networks within the maize kernel. O...
Biological systems are exceedingly complex. The unraveling of the genome in plants and humans reveal...
analysis of the complexity underlying quantitative variation within the Arabidopsis thaliana metabol...
International audienceDespite the scientific and economic importance of maize, little is known about...
One of the challenges of systems biology is to integrate multiple sources of data in order to build ...
<div><p>One of the challenges of systems biology is to integrate multiple sources of data in order t...
With the rise of high-throughput omics tools and given the importance of maize and its products as f...
A combined metabolomic, biochemical, fluxomic, and metabolic modeling approach was developed using 1...
A combined metabolomic, biochemical, fluxomic, and metabolic modeling approach was developed using 1...
The present study expands metabolomic assessments of maize beyond commercial lines to include two se...
The present study expands metabolomic assessments of maize beyond commercial lines to include two se...
Abstract Background The advent of big data in biology offers opportunities while poses challenges to...
Biological systems are exceedingly complex. The unraveling of the genome in plants and humans reveal...
Carbon (C) and nitrogen (N) metabolism are critical to plant growth and development and are at the b...
Carbon (C) and nitrogen (N) metabolism are critical to plant growth and development and are at the b...
Metabolome-based genome-wide association study of maize kernel leads to novel biochemical insight
Biological systems are exceedingly complex. The unraveling of the genome in plants and humans reveal...
analysis of the complexity underlying quantitative variation within the Arabidopsis thaliana metabol...
International audienceDespite the scientific and economic importance of maize, little is known about...
One of the challenges of systems biology is to integrate multiple sources of data in order to build ...
<div><p>One of the challenges of systems biology is to integrate multiple sources of data in order t...
With the rise of high-throughput omics tools and given the importance of maize and its products as f...
A combined metabolomic, biochemical, fluxomic, and metabolic modeling approach was developed using 1...
A combined metabolomic, biochemical, fluxomic, and metabolic modeling approach was developed using 1...
The present study expands metabolomic assessments of maize beyond commercial lines to include two se...
The present study expands metabolomic assessments of maize beyond commercial lines to include two se...
Abstract Background The advent of big data in biology offers opportunities while poses challenges to...
Biological systems are exceedingly complex. The unraveling of the genome in plants and humans reveal...
Carbon (C) and nitrogen (N) metabolism are critical to plant growth and development and are at the b...
Carbon (C) and nitrogen (N) metabolism are critical to plant growth and development and are at the b...
Metabolome-based genome-wide association study of maize kernel leads to novel biochemical insight
Biological systems are exceedingly complex. The unraveling of the genome in plants and humans reveal...
analysis of the complexity underlying quantitative variation within the Arabidopsis thaliana metabol...
International audienceDespite the scientific and economic importance of maize, little is known about...