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首页> 外文期刊>Frontiers in Marine Science >A Multidisciplinary Approach to Investigate Deep-Pelagic Ecosystem Dynamics in the Gulf of Mexico Following Deepwater Horizon
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A Multidisciplinary Approach to Investigate Deep-Pelagic Ecosystem Dynamics in the Gulf of Mexico Following Deepwater Horizon

机译:墨西哥湾深水湾深层骨质生态系统动态的多学科方法

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The pelagic Gulf of Mexico (GoM) is a complex system of dynamic physical oceanography (western boundary current, mesoscale eddies), high biological diversity, and community integration via diel vertical migration and lateral advection. Humans also heavily utilize this system, including its deep-sea components, for resource extraction, shipping, tourism, and other commercial activity. The Deepwater Horizon oil spill (DWHOS) occurred at a depth of ~1500 m (Macondo wellhead), creating a persistent and toxic mixture of hydrocarbons and dispersant in the deep-pelagic (water column below 200 m depth) habitat. In order to assess the impacts of the DWHOS on this habitat, two large-scale research programs, described herein, were designed and executed. These programs, ONSAP and DEEPEND, aimed to quantitatively characterize the oceanic ecosystem of the northern GoM and to establish a time-series with which natural and anthropogenic changes could be detected. The approach was multi-disciplinary in nature and included in situ sampling, acoustic sensing, water column profiling and sampling, satellite remote sensing, AUV sensing, numerical modeling, genetic sequencing, and biogeochemical analyses. The synergy of these methodologies has provided new and unprecedented perspectives of an oceanic ecosystem with respect to composition, connectivity, drivers, and variability.
机译:墨西哥的胸壁(GOM)是一种复杂的动态物理海洋学(西部边界电流,Mescre Eddies),高生物多样性和社区集成,通过DIEL垂直迁移和横向平流。人类还利用该系统,包括其深海组件,用于资源开采,航运,旅游等商业活动。深水地平线油溢出(DWHOS)发生在〜1500米(Macondo井口)的深度,在深层(水柱深度深度)栖息地的碳氢化合物和分散剂产生持续和有毒的混合物。为了评估DWHOS对该栖息地的影响,设计并执行了两个大规模研究程序。这些计划,ONSAP和深化,旨在定量表征北方GOM的海洋生态系统,并建立一个时间序列,可以检测到自然和人为变化。该方法本质上是多学科,包括原位采样,声学传感,水柱分析和采样,卫星遥感,AUV传感,数值建模,遗传测序和生物地球化学分析。这些方法的协同作用提供了关于组成,连通,司机和可变性的海洋生态系统的新的和前所未有的观点。
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