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首页> 外文期刊>Journal of Applied Ichthyology >Population genetics of Atlantic bluefin tuna, Thunnus thynnus (Linnaeus, 1758), in the Mediterranean: implications for its conservation management
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Population genetics of Atlantic bluefin tuna, Thunnus thynnus (Linnaeus, 1758), in the Mediterranean: implications for its conservation management

机译:地中海大西洋蓝鳍金枪鱼(Thunnus thynnus(Linnaeus,1758))的种群遗传学:对其保护管理的意义

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The movement of Atlantic bluefin tuna (ABFT) across international boundaries necessitates traceability strategies that would provide more accurate information needed for stock assessment. The Mediterranean Sea is one of the main contributors to ABFT reproduction and global population genetic diversity. In the present study this genetic variability was investigated using 193 samples of adult bluefin tuna from Spain, Turkey and Malta - a longitudinal distance of 3400 km. Analysed were 13 microsatellite loci (eight of which were newly-tested) as genetic markers for the population study. Allele richness measured per locus and sampling location varied from 1.89 to 8.88, taking into account rarefaction. ABFT private alleles were detected in each of the three sampling sites. No significant spatial genetic divergence was found between pairs at the studied locations (F-ST values 0.0001; P-values >0.05). Bayesian clustering analysis corroborated a single and panmictic ABFT population in the Mediterranean Sea. Statistical power analyses indicated a high probability of detecting genetic differentiation and population structure with the sample size and microsatellites used, even at an F-ST value of 0.005. From the results it may be postulated that migrating ABFT during the spawning season are allowing gene flow within the Mediterranean Sea. The complex interplay of movements, including plasticity in the selection of spawning sites with increasing age and environmental conditions, require multiple and new fisheries monitoring and management techniques in order to target the ABFT long-term conservation effectively.
机译:大西洋蓝鳍金枪鱼(ABFT)跨越国际边界的移动需要可追溯性策略,该策略将提供库存评估所需的更准确信息。地中海是ABFT繁殖和全球人口遗传多样性的主要贡献者之一。在本研究中,使用来自西班牙,土耳其和马耳他的193只成年蓝鳍金枪鱼样本(纵向距离为3400公里)调查了这种遗传变异性。分析了13个微卫星基因座(其中8个是新测试的)作为人口研究的遗传标记。考虑到稀疏性,每个基因座和采样位置测得的等位基因丰富度从1.89到8.88不等。在三个采样点的每一个中都检测到ABFT私人等位基因。在研究位置,两对之间没有发现显着的空间遗传差异(F-ST值<0.0001; P值> 0.05)。贝叶斯聚类分析证实了地中海单一的和泛滥的ABFT种群。统计功效分析表明,即使在F-ST值为0.005的情况下,也具有使用样本量和微卫星检测遗传分化和种群结构的高可能性。从结果可以推测,在产卵季节进行ABFT迁移可以使基因在地中海中流动。运动的复杂相互作用,包括随着年龄和环境条件的增长而在产卵地点的选择上具有可塑性,需要多种和新的渔业监测和管理技术,以便有效地针对ABFT的长期保护。

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