Large-scale systematic analysis of gene essentiality is an important step closer toward unraveling the complex relationship between genotypes and phenotypes. Such analysis cannot be accomplished without unbiased and accurate annotations of essential genes. In current genomic databases, most of the essential gene annotations are derived from whole-genome transposon mutagenesis (TM), the most frequently used experimental approach for determining essential genes in microorganisms under defined conditions. However, there are substantial systematic biases associated with TM experiments. In this study, we developed a novel Poisson model-based statistical framework to simulate the TM insertion process and subsequently correct the experimental bias...
We describe a Bayesian method for estimating the number of essential genes in a genome, on the basis...
Methods for identifying essential genes currently depend predominantly on biochemical ex-periments. ...
Motivation Probabilistic Identification of bacterial essential genes using transposon-directed inse...
<div><p>Large-scale systematic analysis of gene essentiality is an important step closer toward unra...
The development of new technologies and approaches has vastly transformed genomics research, leading...
Accurately predicting essential genes is important in many aspects of biology, medicine and bioengin...
BACKGROUND: The identification of genes essential for survival is of theoretical importance in the u...
The minimal subset of genes required for cellular growth, survival and viability of an organism are ...
Transposon-directed insertion site sequencing (TraDIS) is a high-throughput method coupling transpos...
The identification of genes essential for bacterial growth and survival represents a promising strat...
Genes critical for the survival or reproduction of an organism in certain circumstances are classifi...
The identification of genes essential for bacterial growth and survival represents a promising strat...
Transposon mutagenesis is an efficient way to explore gene essentiality of a bacterial genome. Howev...
This is the final version of the article. Available from Springer Nature via the DOI in this record....
Transposon-directed insertion site sequencing (TraDIS) is a high-throughput method coupling transpos...
We describe a Bayesian method for estimating the number of essential genes in a genome, on the basis...
Methods for identifying essential genes currently depend predominantly on biochemical ex-periments. ...
Motivation Probabilistic Identification of bacterial essential genes using transposon-directed inse...
<div><p>Large-scale systematic analysis of gene essentiality is an important step closer toward unra...
The development of new technologies and approaches has vastly transformed genomics research, leading...
Accurately predicting essential genes is important in many aspects of biology, medicine and bioengin...
BACKGROUND: The identification of genes essential for survival is of theoretical importance in the u...
The minimal subset of genes required for cellular growth, survival and viability of an organism are ...
Transposon-directed insertion site sequencing (TraDIS) is a high-throughput method coupling transpos...
The identification of genes essential for bacterial growth and survival represents a promising strat...
Genes critical for the survival or reproduction of an organism in certain circumstances are classifi...
The identification of genes essential for bacterial growth and survival represents a promising strat...
Transposon mutagenesis is an efficient way to explore gene essentiality of a bacterial genome. Howev...
This is the final version of the article. Available from Springer Nature via the DOI in this record....
Transposon-directed insertion site sequencing (TraDIS) is a high-throughput method coupling transpos...
We describe a Bayesian method for estimating the number of essential genes in a genome, on the basis...
Methods for identifying essential genes currently depend predominantly on biochemical ex-periments. ...
Motivation Probabilistic Identification of bacterial essential genes using transposon-directed inse...