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A Reverse Taxonomic Approach to Assess Macrofaunal Distribution Patterns in Abyssal Pacific Polymetallic Nodule Fields

机译:逆向分类学方法评估深海太平洋多金属结核域中的大型动物分布模式

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摘要

Heightened interest in the exploitation of deep seafloor minerals is raising questions on the consequences for the resident fauna. Assessing species ranges and determination of processes underlying current species distributions are prerequisites to conservation planning and predicting faunal responses to changing environmental conditions. The abyssal central Pacific nodule belt, located between the Clarion and Clipperton Fracture Zones (CCZ), is an area prospected for mining of polymetallic nodules. We examined variations in genetic diversity and broad-scale connectivity of isopods and polychaetes across the CCZ. Faunal assemblages were studied from two mining claims (the eastern German and French license areas) located 1300 km apart and influenced by different productivity regimes. Using a reverse taxonomy approach based on DNA barcoding, we tested to what extent distance and large-scale changes in environmental parameters lead to differentiation in two macrofaunal taxa exhibiting different functions and life-history patterns. A fragment of the mitochondrial gene Cytochrome Oxidase Subunit 1 (COI) was analyzed. At a 97% threshold the molecular operational taxonomic units (MOTUs) corresponded well to morphological species. Molecular analyses indicated high local and regional diversity mostly because of large numbers of singletons in the samples. Consequently, variation in composition of genotypic clusters between sites was exceedingly large partly due to paucity of deep-sea sampling and faunal patchiness. A higher proportion of wide-ranging species in polychaetes was contrasted with mostly restricted distributions in isopods. Remarkably, several cryptic lineages appeared to be sympatric and occurred in taxa with putatively good dispersal abilities, whereas some brooding lineages revealed broad distributions across the CCZ. Geographic distance could explain variation in faunal connectivity between regions and sites to some extent, while assumed dispersal capabilities were not as important.
机译:人们对开发深海海底矿物的兴趣日益浓厚,这引发了对居民动物的后果的质疑。评估物种范围和确定当前物种分布的基础过程是保护规划和预测动物对环境条件变化的反应的前提。位于克拉里昂和克利珀顿断裂带(CCZ)之间的深海中部太平洋结核结核带是一个有望开采多金属结核的地区。我们研究了整个CCZ的遗传多样性以及等足动物和多足动物的广泛连通性。从两个相距1300公里的采矿主张(德国和法国东部许可地区)研究了动物群的组合,并受到不同生产力制度的影响。使用基于DNA条形码的反向分类法,我们测试了距离和环境参数的大规模变化在多大程度上导致表现出不同功能和生活史模式的两个大型动物分类群的分化。分析了线粒体基因细胞色素氧化酶亚基1(COI)的片段。在97%的阈值下,分子操作分类单位(MOTU)很好地对应于形态学物种。分子分析表明,较高的局部和区域多样性主要是由于样品中存在大量单例。因此,不同地点之间基因型簇的组成变化非常大,部分原因是深海采样的缺乏和动物区系的分散。与多足类动物中大部分受限制的分布形成对比的是,多毛类中范围广泛的物种比例较高。值得注意的是,一些隐性谱系似乎是同胞的,并在类群中发生,具有良好的分散能力,而一些育雏谱系则显示出整个CCZ的广泛分布。地理距离可以在一定程度上解释区域和地点之间动物区系连通性的变化,而假定的分散能力并不那么重要。

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