Large-scale-even genome-wide-duplications have repeatedly been invoked as an explanation for major radiations. Teleosts, the most species-rich vertebrate clade, underwent a "fish-specific genome duplication" (FSGD) that is shared by most ray-finned fish lineages. We investigate here the Hox complement of the goldeye (Hiodon alosoides), a representative of Osteoglossomorpha, the most basal teleostean clade. An extensive PCR survey reveals that goldeye has at least eight Hox clusters, indicating a duplicated genome compared to basal actinopterygians. The possession of duplicated Hox clusters is uncoupled to species richness. The Hox system of the goldeye is substantially different from that of other teleost lineages, having retained several d...
For many genes, ray-finned fish (Actinopterygii) have two paralogous copies, where only one ortholog...
BackgroundTeleost fish have seven paralogous clusters of Hox genes stemming from two complete genome...
Teleost fishes have extra Hox gene clusters owing to shared or lineage-specific genome duplication e...
Abstract Large-scale—even genome-wide—duplications have repeatedly been invoked as an explanation fo...
Higher teleost fishes, including zebrafish and fugu, have duplicated their Hox genes relative to the...
Higher teleost fishes, including zebrafish and fugu, have duplicated their Hox genes relative to the...
An ancient genome duplication (TGD or 3R) occurred in teleost fish after divergence from the lineage...
An ancient genome duplication (TGD or 3R) occurred in teleost fish after divergence from the lineage...
SYNOPSIS. The early origin of four vertebrate Hox gene clusters during the evo-lution of gnathostome...
SYNOPSIS. The early origin of four vertebrate Hox gene clusters during the evo-lution of gnathostome...
The early origin of four vertebrate Hox gene clusters during the evolution of gnathostomes was likel...
The Hox gene complement of zebrafish, medaka, and fugu differs from that of other gnathostome verteb...
Numerous ancient whole-genome duplications (WGD) have occurred during eukaryote evolution. In verteb...
Higher teleost fishes, including zebrafish and fugu, have duplicated their Hox genes relative to the...
The Hox gene complement of zebrafish, medaka, and fugu differs from that of other gnathostome verteb...
For many genes, ray-finned fish (Actinopterygii) have two paralogous copies, where only one ortholog...
BackgroundTeleost fish have seven paralogous clusters of Hox genes stemming from two complete genome...
Teleost fishes have extra Hox gene clusters owing to shared or lineage-specific genome duplication e...
Abstract Large-scale—even genome-wide—duplications have repeatedly been invoked as an explanation fo...
Higher teleost fishes, including zebrafish and fugu, have duplicated their Hox genes relative to the...
Higher teleost fishes, including zebrafish and fugu, have duplicated their Hox genes relative to the...
An ancient genome duplication (TGD or 3R) occurred in teleost fish after divergence from the lineage...
An ancient genome duplication (TGD or 3R) occurred in teleost fish after divergence from the lineage...
SYNOPSIS. The early origin of four vertebrate Hox gene clusters during the evo-lution of gnathostome...
SYNOPSIS. The early origin of four vertebrate Hox gene clusters during the evo-lution of gnathostome...
The early origin of four vertebrate Hox gene clusters during the evolution of gnathostomes was likel...
The Hox gene complement of zebrafish, medaka, and fugu differs from that of other gnathostome verteb...
Numerous ancient whole-genome duplications (WGD) have occurred during eukaryote evolution. In verteb...
Higher teleost fishes, including zebrafish and fugu, have duplicated their Hox genes relative to the...
The Hox gene complement of zebrafish, medaka, and fugu differs from that of other gnathostome verteb...
For many genes, ray-finned fish (Actinopterygii) have two paralogous copies, where only one ortholog...
BackgroundTeleost fish have seven paralogous clusters of Hox genes stemming from two complete genome...
Teleost fishes have extra Hox gene clusters owing to shared or lineage-specific genome duplication e...