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Mitochondrial DNA Analyses Indicate High Diversity Expansive Population Growth and High Genetic Connectivity of Vent Copepods (Dirivultidae) across Different Oceans

机译:线粒体DNA分析表明不同海洋中的Co足纲(Dirivultidae)具有高度的多样性广泛的种群增长和高度的遗传连通性

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摘要

Communities in spatially fragmented deep-sea hydrothermal vents rich in polymetallic sulfides could soon face major disturbance events due to deep-sea mineral mining, such that unraveling patterns of gene flow between hydrothermal vent populations will be an important step in the development of conservation policies. Indeed, the time required by deep-sea populations to recover following habitat perturbations depends both on the direction of gene flow and the number of migrants available for re-colonization after disturbance. In this study we compare nine dirivultid copepod species across various geological settings. We analyze partial nucleotide sequences of the mtCOI gene and use divergence estimates (FST) and haplotype networks to infer intraspecific population connectivity between vent sites. Furthermore, we evaluate contrasting scenarios of demographic population expansion/decline versus constant population size (using, for example, Tajima’s D). Our results indicate high diversity, population expansion and high connectivity of all copepod populations in all oceans. For example, haplotype diversity values range from 0.89 to 1 and FST values range from 0.001 to 0.11 for Stygiopontius species from the Central Indian Ridge, Mid Atlantic Ridge, East Pacific Rise, and Eastern Lau Spreading Center. We suggest that great abundance and high site occupancy by these species favor high genetic diversity. Two scenarios both showed similarly high connectivity: fast spreading centers with little distance between vent fields and slow spreading centers with greater distance between fields. This unexpected result may be due to some distinct frequency of natural disturbance events, or to aspects of individual life histories that affect realized rates of dispersal. However, our statistical performance analyses showed that at least 100 genomic regions should be sequenced to ensure accurate estimates of migration rate. Our demography parameters demonstrate that dirivultid populations are generally large and continuously undergoing population growth. Benthic and pelagic species abundance data support these findings.
机译:由于深海矿物开采,富含多金属硫化物的空间分散的深海热液喷口社区可能很快会面临重大干扰事件,因此,热液喷口种群之间基因流的揭示模式将是制定保护政策的重要一步。实际上,深海种群在栖息地扰动后恢复所需的时间既取决于基因流动的方向,也取决于扰动后可用于重新定殖的移民数量。在这项研究中,我们比较了各种地质环境中的九种di足类pe足类物种。我们分析了mtCOI基因的部分核苷酸序列,并使用差异估计(FST)和单倍型网络来推断发泄位点之间的种内种群连通性。此外,我们评估了人口增长/下降与恒定人口规模(使用田岛D)的对比情景。我们的结果表明,在所有海洋中,所有co足类种群具有高度多样性,种群扩展和高度连通性。例如,来自中部印度洋脊,中大西洋海脊,东太平洋隆起和东劳氏传播中心的Stygiopontius物种的单倍型多样性值范围为0.89至1,FST值范围为0.001至0.11。我们建议这些物种的丰度和高站点占有率有利于高度遗传多样性。两种情况都显示出相似的高连通性:快速扩散中心,通风孔之间的距离很小,而缓慢扩散中心,字段之间的距离更大。这种出乎意料的结果可能是由于自然干扰事件发生的频率不同,或者是由于个人生活史的某些方面影响了实际的分散速度。但是,我们的统计性能分析表明,至少应测序100个基因组区域,以确保准确估计迁移率。我们的人口统计学参数表明,土生动物种群通常很大,并且正在不断增长。底栖和浮游物种的丰度数据支持了这些发现。

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