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- W1766851672 abstract "Using gamma-corrected distances based on amino acid sequences of two mitochondrial protein-coding genes, we have roughly calibrated a molecular dock to estimate deep divergence times for bony fishes, which turned out to be about three times slower than in mammals. Calibrations were based on the reasonable assumption of the vicariant divergence of cichlids, as well as some reliable fossil records for the external calibration. We have applied this dock to studies of the osteoglossiform freshwater fishes. The Asian arowana has been hypothesized to have originated from morphologically quite similar Australasian arowanas via recent transmarine dispersal. However, the molecular data urged us to propose a new model that the former vicariantly diverged from the latter in the eastern margin of Gondwanaland and migrated into Eurasia on the Indian subcontinent or smaller continental blocks. The arowanas are thus likely to have kept a large extent of morphological conservation like the coelacanth. We hope that people will pay more attention to the conservation of this evolutionarily special species." @default.
- W1766851672 created "2016-06-24" @default.
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- W1766851672 date "2002-01-01" @default.
- W1766851672 modified "2023-10-16" @default.
- W1766851672 title "Molecular clock estimation in fishes and its application to biogeographical studies" @default.
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- W1766851672 doi "https://doi.org/10.2331/fishsci.68.sup1_357" @default.
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