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- W2048354671 abstract "There was a time not so long ago when geneticists might have branded the highly migratory Atlantic bluefin tuna (Thunnus thynnus) the quintessential panmictic population (1) of the marine world. Because bluefin tuna are designed for mobility and capable of generating millions of offspring per spawning pair (2), migration and gene flow throughout their entire range seemed likely. This would homogenize regional subgroups and cause them to behave, in a statistical sense, like one very large, randomly mating population. In other words, bluefin appeared to fit the null hypothesis that population geneticists make a living trying to reject. Hence, genetic discontinuities should have been hard to find, especially within a small inland sea. In a study in PNAS, Riccioni et al. (3) examine microsatellite loci from contemporary and historical samples of T. thynnus and find remarkable evidence (i) that the Mediterranean contains genetically subdivided populations, (ii) that this structure has persisted for nearly 100 years, and (iii) that gene diversity has remained surprisingly intact despite decades of overexploitation and dramatic decline in numbers. These results confirm previous work (4, 5) hinting that T. thynnus in the Mediterranean is composed of multiple breeding stocks and raises concern that these newly recognized gene pools are at risk from overfishing." @default.
- W2048354671 created "2016-06-24" @default.
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- W2048354671 date "2010-02-05" @default.
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- W2048354671 title "Genetic discontinuity of big fish in a small sea" @default.
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- W2048354671 doi "https://doi.org/10.1073/pnas.0914639107" @default.
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