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Partitioning genetic variation in swordfish (Xiphias gladius L.): Analysis of sample variance and population structure.

机译:剑鱼(Xiphias gladius L.)的遗传变异划分:样本方差和种群结构分析。

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Swordfish are highly mobile pelagic fishes of significant economic importance. The global distribution of swordfish makes the management of this species particularly challenging due to multinational exploitation. Studies examining the population structure of swordfish (Xiphias gladius) using mitochondrial DNA (mt) have revealed a significant amount of genetic differentiation between ocean basins despite. However, the maternal mode of inheritance of mtDNA reflects solely the history of maternal lineages and offers no insight into males reproductive behavior.; If the observed differences in mtDNA truly reflect limited gene flow between oceans basins then heterogeneity in allele frequencies at nuclear loci should also be detected. Therefore, investigations using polymorphic nuclear intron markers were made to test the null hypothesis of population homogeneity to the alternative hypothesis of heterogeneity in nuclear allele frequencies across ocean basins. Genetic variation was partitioned to examine the extent differences in sample collection (fishing trips) contributed to the overall observed regional genetic variation. Similarly, within region yearly samples were tested for temporal stability and the proportion of the total genetic variation assigned to this component was examined. Finally, partitioning of genetic variation between regions was examined to test for both concordance in mtDNA and nuclear markers and the genetic homogeneity of regional samples.; No significant differences were observed for any of the within region comparisons of trips or yearly samples. However, a small but significant portion of the genetic variation observed was attributable to differences among regions. In addition both nuclear and mtDNA markers revealed similar patterns of genetic differentiation. Therefore, the null hypothesis of homogeneity of nuclear allele frequencies was rejected. These data provide strong evidence for population differentiation in this highly mobile pelagic species.; Finally, population growth rates were assessed under two different management scenarios to examine the effectiveness of a size regulation on the north Atlantic swordfish fishery. Simulated populations of swordfish were exposed to varying fishing pressure using a Leslie matrix. The analyses indicate population growth rate decreases with size regulations in place. Undersize fish have the potential for contributing to a large percentage (25%) of biomass harvested. These results suggest that in a fishery where hook mortality is high (80%) and gear selectivity is low, size regulations may have an opposite effect than the one intended. Area closures may positively affect population growth rates, however the decrease in mortality of undersized swordfish would have to be substantial (estimated here to be 1/5 the actual fishing pressure). A combined approach of eliminating size regulations and implementing area closures may help to increase swordfish population growth rates.
机译:箭鱼是具有重要经济意义的高度流动的远洋鱼类。箭鱼的全球分布由于跨国开发而使该物种的管理特别具有挑战性。使用线粒体DNA(mt)研究箭鱼(Xiphias gladius)种群结构的研究表明,尽管如此,海盆之间仍存在大量遗传分化。但是,母体mtDNA的遗传方式仅反映了母系谱系的历史,对男性生殖行为没有任何了解。如果观察到的mtDNA差异确实反映了海洋盆地之间有限的基因流动,则还应检测到核基因座等位基因频率的异质性。因此,进行了使用多态核内含子标记的研究,以检验种群同质性的零假设,以检验整个海洋盆地核等位基因频率中的异质性替代假设。对遗传变异进行分区,以检查样本收集(捕鱼行程)的程度差异对整体观察到的区域遗传变异的影响。同样,在区域内,每年对样本进行时间稳定性测试,并检查分配给该组件的总遗传变异的比例。最后,检查区域之间遗传变异的划分,以测试mtDNA和核标记的一致性,以及区域样本的遗传同质性。对于旅行或年度样本的区域内比较,均未观察到显着差异。然而,观察到的一小部分但重要的遗传变异可归因于区域之间的差异。此外,核和mtDNA标记都显示出相似的遗传分化模式。因此,核等位基因频率同质性的零假设被拒绝了。这些数据为这种高度流动的中上层鱼类的种群分化提供了有力的证据。最后,在两种不同的管理方案下评估了人口增长率,以检验北大西洋箭鱼渔业规模规制的有效性。使用莱斯利矩阵,​​模拟的箭鱼种群受到不同的捕捞压力。分析表明,随着规模规制的到来,人口增长率下降。尺寸过小的鱼有可能贡献很大比例(25%)的生物量。这些结果表明,在一个钓钩死亡率高(<80%)且渔具选择性低的渔业中,尺寸调节的作用可能与预期的相反。禁渔区可能对人口增长率产生积极影响,但是尺寸过小的箭鱼的死亡率下降必须是可观的(这里估计为实际捕捞压力的1/5)。取消尺寸规则和实施区域封闭的综合方法可能有助于提高箭鱼种群的增长率。

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