Department of Biology and Evolution, University of Ferrara, 44100 Ferrara, Italy.
Proc Natl Acad Sci U S A. 2010 Feb 2;107(5):2102-7. doi: 10.1073/pnas.0908281107. Epub 2010 Jan 4.
Fishery genetics have greatly changed our understanding of population dynamics and structuring in marine fish. In this study, we show that the Atlantic Bluefin tuna (ABFT, Thunnus thynnus), an oceanic predatory species exhibiting highly migratory behavior, large population size, and high potential for dispersal during early life stages, displays significant genetic differences over space and time, both at the fine and large scales of variation. We compared microsatellite variation of contemporary (n = 256) and historical (n = 99) biological samples of ABFTs of the central-western Mediterranean Sea, the latter dating back to the early 20th century. Measures of genetic differentiation and a general heterozygote deficit suggest that differences exist among population samples, both now and 96-80 years ago. Thus, ABFTs do not represent a single panmictic population in the Mediterranean Sea. Statistics designed to infer changes in population size, both from current and past genetic variation, suggest that some Mediterranean ABFT populations, although still not severely reduced in their genetic potential, might have suffered from demographic declines. The short-term estimates of effective population size are straddled on the minimum threshold (effective population size = 500) indicated to maintain genetic diversity and evolutionary potential across several generations in natural populations.
渔业遗传学极大地改变了我们对海洋鱼类种群动态和结构的认识。在这项研究中,我们表明,具有高度洄游行为、大种群规模和在早期生活阶段具有高扩散潜力的海洋掠食性物种大西洋蓝鳍金枪鱼(Thunnus thynnus),在空间和时间上都表现出显著的遗传差异,无论是在细微的变异尺度还是在大尺度上。我们比较了来自中西地中海的当代(n=256)和历史(n=99)大西洋蓝鳍金枪鱼生物样本的微卫星变异,后者可以追溯到 20 世纪初。遗传分化的衡量标准和普遍的杂合子缺失表明,无论是现在还是 96-80 年前,种群样本之间都存在差异。因此,地中海的大西洋蓝鳍金枪鱼并不代表一个单一的、具有生殖能力的群体。旨在从当前和过去的遗传变异推断种群规模变化的统计数据表明,尽管一些地中海大西洋蓝鳍金枪鱼种群的遗传潜力尚未严重降低,但它们可能已经经历了种群数量下降。短期有效种群规模的估计值处于维持自然种群中遗传多样性和进化潜力所需的最小阈值(有效种群规模=500)的边缘。