Abstract Background Genomic, transcriptomic, and metabolic variations shape the complex adaptation landscape of bacteria to varying environmental conditions. Elucidating the genotype-phenotype relation paves the way for the prediction of such effects, but methods for characterizing the relationship between multiple environmental factors are still lacking. Here, we tackle the problem of extracting network-level information from collections of environmental conditions, by integrating the multiple omic levels at which the bacterial response is measured. Results To this end, we model a large compendium of growth conditions as a multiplex...
Given the vast behavioral repertoire and biological complexity of even the simplest organisms, accur...
With the availability of genome sequences of many organisms and information about gene-protein-react...
Recently, approaches have been developed to sample the genetic content of heterogeneous environments...
Abstract Background Genomic, transcriptomic, and metabolic variations shape the complex adaptation l...
Bacterial phenotypic traits and lifestyles in response to diverse environmental conditions depend on...
Abstract Background Two important challenges in the analysis of molecular biology information are da...
We are often able to describe what happens at almost all biological length scales, from the molecula...
A significant obstacle in training predictive cell models is the lack of integrated data sources. We...
Genome-scale metabolic models are valuable tools for assessing the metabolic potential of living org...
Combinations of ‘omics’ investigations (i.e, transcriptomic, proteomic, metabolomic and/or fluxomic)...
Combinations of 'omics' investigations (i.e, transcriptomic, proteomic, metabolomic and/or fluxomic)...
Given the vast behavioral repertoire and biological complexity of even the simplest organisms, accur...
With the availability of genome sequences of many organisms and information about gene-protein-react...
Recently, approaches have been developed to sample the genetic content of heterogeneous environments...
Abstract Background Genomic, transcriptomic, and metabolic variations shape the complex adaptation l...
Bacterial phenotypic traits and lifestyles in response to diverse environmental conditions depend on...
Abstract Background Two important challenges in the analysis of molecular biology information are da...
We are often able to describe what happens at almost all biological length scales, from the molecula...
A significant obstacle in training predictive cell models is the lack of integrated data sources. We...
Genome-scale metabolic models are valuable tools for assessing the metabolic potential of living org...
Combinations of ‘omics’ investigations (i.e, transcriptomic, proteomic, metabolomic and/or fluxomic)...
Combinations of 'omics' investigations (i.e, transcriptomic, proteomic, metabolomic and/or fluxomic)...
Given the vast behavioral repertoire and biological complexity of even the simplest organisms, accur...
With the availability of genome sequences of many organisms and information about gene-protein-react...
Recently, approaches have been developed to sample the genetic content of heterogeneous environments...