Nucleic Acids Research · 1998 · 990 citations · 13 references
This paper describes a new system, GLIMMER, for finding genes in microbial genomes. In a series of tests on Haemophilus influenzae , Helicobacter pylori and other complete microbial genomes, this system has proven to be very accurate at locating virtually all the genes in these sequences, outperforming previous methods. A conservative estimate based on experiments on H.pylori and H. influenzae is that the system finds >97% of all genes. GLIMMER uses interpolated Markov models (IMMs) as a framework for capturing dependencies between nearby nucleotides in a DNA sequence. An IMM-based method makes predictions based on a variable context; i.e., a variable-length oligomer in a DNA sequence. The context used by GLIMMER changes depending on the local composition of the sequence. As a result, GLIMMER is more flexible and more powerful than fixed-order Markov methods, which have previously been the primary content-based technique for finding genes in microbial DNA.
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Basic local alignment search tool
Stephen F. Altschul, Warren Gish, Webb Miller et al. · Journal of Molecular Biology · 1990 · 92.8K citations
Basic Local Alignment Search Tool
Stephen F. Altschul · Journal of Molecular Biology · 1990 · 13.8K citations
Whole-Genome Random Sequencing and Assembly of <i>Haemophilus influenzae</i> Rd
Robert Fleischmann, Mark D. Adams, Owen White et al. · Science · 1995 · 5.6K citations
Whole-genome Random Sequencing, Whole Chromosome, Genetics +12
The complete genome sequence of the gastric pathogen Helicobacter pylori
Jean-F. Tomb, Owen White, Anthony R. Kerlavage et al. · Nature · 1997 · 3.5K citations · Full text