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Bootstrap, Bayesian probability and maximum likelihood mapping: exploring new tools for comparative genome analyses

BMC Genomics · 2002 · Vol. 3(1) · pp. 4–4
Olga ZhaxybayevaJ. Peter Gogarten

Abstract

In some instances of interphylum relationships we find nearly equal numbers of quartets strongly supporting the three possible topologies. In contrast, our analyses of genome quartets containing the cyanobacterium Synechocystis sp. indicate that a large part of the cyanobacterial genome is related to that of low GC Gram positives. Other groups that had been suggested as sister groups to the cyanobacteria contain many fewer genes that group with the Synechocystis orthologs. Interdomain comparisons of genome quartets containing the archaeon Halobacterium sp. revealed that Halobacterium sp. shares more genes with Bacteria that live in the same environment than with Bacteria that are more closely related based on rRNA phylogeny. Many of these genes encode proteins involved in substrate transport and metabolism and in information storage and processing. The performed analyses demonstrate that relationships among prokaryotes cannot be accurately depicted by or inferred from the tree-like evolution of a core of rarely transferred genes; rather prokaryotic genomes are mosaics in which different parts have different evolutionary histories. Probability mapping is a valuable tool to explore the mosaic nature of genomes.

Genomics and Phylogenetic StudiesMicrobial Community Ecology and PhysiologyRNA and protein synthesis mechanismsGenomeBiologyHousekeeping geneGeneComputational biologyGeneticsPhylogeneticsPhylogenetic treeBacterial genome sizeRibosomal RNA

Funding

  • National Aeronautics and Space Administration
  • Arizona State University
  • NASA Astrobiology Institute
Citations
430
FWCI
3.54
field-weighted impact
References
60
Percentile
93%
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Cited by
Prokaryotic Evolution in Light of Gene Transfer
Molecular Biology and Evolution · 2002 · 991 citations
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