Large-scale DNA deletions and gene loss are pervasive in bacterial genomes. This observation raises the possibility that evolutionary adaptation has altered bacterial genome organization to increase its robustness to large-scale tandem gene deletions. To find out, we systematically analyzed 55 bacterial genome-scale metabolisms and showed that metabolic gene ordering renders an organism’s viability in multiple nutrient environments significantly more robust against tandem multigene deletions than expected by chance. This excess robustness is caused by multiple factors, which include the clustering of essential metabolic genes, a greater-than-expected distance of synthetically lethal metabolic gene pairs, and the clustering of nonessential m...
A high level of robustness against gene deletion is observed in many organisms. However, it is still...
Understanding the extreme variation among bacterial genomes remains an unsolved challenge in evoluti...
Bacterial genome evolution is characterized by gains, losses, and rearrangements of functional genet...
Large-scale DNA deletions and gene loss are pervasive in bacterial genomes. This observation raises ...
Large-scale DNA deletions and gene loss are pervasive in bacterial genomes. This observation raises ...
Gene loss by deletion is a common evolutionary process in bacteria, as exemplified by bacteria with ...
<div><p>Gene loss by deletion is a common evolutionary process in bacteria, as exemplified by bacter...
Abstract-We employ a novel implementation of flux balance analysis to investigate the role of genome...
Genome reduction has been observed in many bacterial lineages that have adapted to specialized envir...
The research presented in this thesis attempts to address research questions related to the role of ...
Why are certain bacterial genomes so small and compact? The adaptive genome streamlining hypothesis ...
Bacterial chromosomes are highly dynamic, continuously changing with respect to gene content and siz...
Abstract Background Gene clustering plays an important role in the organization of the bacterial chr...
Genes encoding proteins in a common pathway are often found near each other along bacterial chromoso...
Genetic disruption of an important phenotype should favor compensatory mutations that restore the ph...
A high level of robustness against gene deletion is observed in many organisms. However, it is still...
Understanding the extreme variation among bacterial genomes remains an unsolved challenge in evoluti...
Bacterial genome evolution is characterized by gains, losses, and rearrangements of functional genet...
Large-scale DNA deletions and gene loss are pervasive in bacterial genomes. This observation raises ...
Large-scale DNA deletions and gene loss are pervasive in bacterial genomes. This observation raises ...
Gene loss by deletion is a common evolutionary process in bacteria, as exemplified by bacteria with ...
<div><p>Gene loss by deletion is a common evolutionary process in bacteria, as exemplified by bacter...
Abstract-We employ a novel implementation of flux balance analysis to investigate the role of genome...
Genome reduction has been observed in many bacterial lineages that have adapted to specialized envir...
The research presented in this thesis attempts to address research questions related to the role of ...
Why are certain bacterial genomes so small and compact? The adaptive genome streamlining hypothesis ...
Bacterial chromosomes are highly dynamic, continuously changing with respect to gene content and siz...
Abstract Background Gene clustering plays an important role in the organization of the bacterial chr...
Genes encoding proteins in a common pathway are often found near each other along bacterial chromoso...
Genetic disruption of an important phenotype should favor compensatory mutations that restore the ph...
A high level of robustness against gene deletion is observed in many organisms. However, it is still...
Understanding the extreme variation among bacterial genomes remains an unsolved challenge in evoluti...
Bacterial genome evolution is characterized by gains, losses, and rearrangements of functional genet...