The zebrafish genome in context: ohnologs gone missing
- 26 October 2006
- journal article
- review article
- Published by Wiley in Journal of Experimental Zoology Part B: Molecular and Developmental Evolution
- Vol. 308B (5) , 563-577
- https://doi.org/10.1002/jez.b.21137
Abstract
Some zebrafish genes appear to lack an ortholog in the human genome and researchers often call them “novel” genes. The origin of many so‐called “novel” genes becomes apparent when considered in the context of genome duplication events that occurred during evolution of the phylum Chordata, including two rounds at about the origin of the subphylum Vertebrata (R1 and R2) and one round before the teleost radiation (R3). Ohnologs are paralogs stemming from such genome duplication events, and some zebrafish genes said to be “novel” are more appropriately interpreted as “ohnologs gone missing”, cases in which ohnologs are preserved differentially in different evolutionary lineages. Here we consider ohnologs present in the zebrafish genome but absent from the human genome. Reasonable hypotheses are that lineage‐specific loss of ohnologs can play a role in establishing lineage divergence and in the origin of developmental innovations. How does the evolution of ohnologs differ from the evolution of gene duplicates arising from other mechanisms, such as tandem duplication or retrotransposition? To what extent do different major vertebrate lineages or different teleost lineages differ in ohnolog content? What roles do differences in ohnolog content play in the origin of developmental mechanisms that differ among lineages? This review explores these questions. J. Exp. Zool. (Mol. Dev. Evol.) 308B:563–577, 2007.Keywords
This publication has 88 references indexed in Scilit:
- Tunicates and not cephalochordates are the closest living relatives of vertebratesNature, 2006
- Two Rounds of Whole Genome Duplication in the Ancestral VertebratePLoS Biology, 2005
- Genome evolution and biodiversity in teleost fishHeredity, 2004
- Genome duplication in the teleost fish Tetraodon nigroviridis reveals the early vertebrate proto-karyotypeNature, 2004
- Phylogenetic Timing of the Fish-Specific Genome Duplication Correlates with the Diversification of Teleost FishJournal of Molecular Evolution, 2004
- Origin and diversity of the Sox transcription factor gene family: genome-wide analysis in Fugu rubripesGene, 2004
- Comparative genomics provides evidence for an ancient genome duplication event in fishPhilosophical Transactions Of The Royal Society B-Biological Sciences, 2001
- Genomic organization of theHoxa4-Hoxa10 region fromMorone saxatilis: Implications forHox gene evolution among vertebratesJournal of Experimental Zoology, 1999
- Vertebrate genome evolution and the zebrafish gene mapNature Genetics, 1998
- Gapped BLAST and PSI-BLAST: a new generation of protein database search programsNucleic Acids Research, 1997