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1 December 2013 Loss of Genetic Diversity at an MHC Locus in the Endangered Tokyo Bitterling Tanakia tanago (Teleostei: Cyprinidae)
Hitoshi Kubota, Katsutoshi Watanabe
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Abstract

Genetic diversity at a major histocompatibility complex (MHC) class II B gene was examined for two wild and three captive populations of the endangered Tokyo bitterling Tanakia tanago. A specific primer set was first developed to amplify the MHC II B exon 2 locus. Using single strand conformation polymorphism (SSCP) and sequencing analysis, 16 DAB3 alleles were detected with 56 nucleotide substitutions in the 276-bp region. In the putative antigen-binding sites of exon 2, the rate of nonsynonymous substitutions was significantly higher than that of synonymous substitutions (dN/dS = 2.79), indicating positive selection on the retention of polymorphism. The population from the Handa Natural Habitat Conservation Area and that from the Tone River system exhibited low variation (one and three alleles, respectively), whereas the captive population that originated from a mix of three distinct populations had the highest amounts of variation (14 alleles). The levels of heterozygosity at the MHC varied considerably among populations and showed significant correlations with those at putative neutral microsatellite markers, suggesting that genetic drift following a bottleneck has affected MHC variability in some populations. Comparisons between endangered and non-endangered fish species in previous reports and the present results indicate that the number of MHC alleles per population is on average 70% lower in endangered species than non-endangered species. Considering the functional consequence of this locus, attention should be paid to captive and wild endangered fish populations in terms of further loss of MHC alleles.

© 2013 Zoological Society of Japan
Hitoshi Kubota and Katsutoshi Watanabe "Loss of Genetic Diversity at an MHC Locus in the Endangered Tokyo Bitterling Tanakia tanago (Teleostei: Cyprinidae)," Zoological Science 30(12), 1092-1101, (1 December 2013). https://doi.org/10.2108/zsj.30.1092
Received: 15 May 2013; Accepted: 30 July 2013; Published: 1 December 2013
KEYWORDS
adaptive variation
captive population
conservation
GENETIC DRIFT
major histocompatibility complex
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