PLoS Biology · 2005 · 1.5K citations · 47 references
Gene FamiliesWhole Genome DuplicationsComparative GenomicsGeneticsGenomicsPhylogeneticsMolecular EcologyGenome AnalysisGenome StructureGenetic VariationPhylogenomicsGene EvolutionPopulation GeneticsWhole Genome DuplicationVertebrate BiologyBiologyNatural SciencesEvolutionary BiologyReference GenomeMedicineGene Tree Topology
The hypothesis that the vertebrate genome arose from two ancient whole‑genome duplications remains unresolved. The authors reconstructed gene‑family phylogenies from tunicate, fish, mouse, and human genomes and mapped duplication events onto the species tree. Although gene‑count data show little evidence, the physical clustering of paralogous genes duplicated before the fish‑tetrapod split reveals two distinct WGD events that likely contributed to vertebrate evolutionary success.
The hypothesis that the relatively large and complex vertebrate genome was created by two ancient, whole genome duplications has been hotly debated, but remains unresolved. We reconstructed the evolutionary relationships of all gene families from the complete gene sets of a tunicate, fish, mouse, and human, and then determined when each gene duplicated relative to the evolutionary tree of the organisms. We confirmed the results of earlier studies that there remains little signal of these events in numbers of duplicated genes, gene tree topology, or the number of genes per multigene family. However, when we plotted the genomic map positions of only the subset of paralogous genes that were duplicated prior to the fish-tetrapod split, their global physical organization provides unmistakable evidence of two distinct genome duplication events early in vertebrate evolution indicated by clear patterns of four-way paralogous regions covering a large part of the human genome. Our results highlight the potential for these large-scale genomic events to have driven the evolutionary success of the vertebrate lineage.
47
Basic local alignment search tool
Stephen F. Altschul, Warren Gish, Webb Miller et al. · Journal of Molecular Biology · 1990 · 92.8K citations
Initial sequencing and analysis of the human genome
Eric S. Lander, Lauren Linton, Bruce W. Birren et al. · Nature · 2001 · 24.3K citations · Full text
The Sequence of the Human Genome
J. Craig Venter, Mark D. Adams, Eugene W. Myers et al. · Science · 2001 · 13.6K citations
Initial sequencing and comparative analysis of the mouse genome
Scott Schwartz · Nature · 2002 · 7.2K citations · Full text
Sequencing, Medicine, Genetics +5