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Developing an observational design for epibenthos and fish assemblages in the Chukchi Sea

机译:开发Chukchi海中的Epibenthos和鱼群的观测设计

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摘要

In light of ongoing, and accelerating, environmental changes in the Pacific sector of the Arctic Ocean, the ability to track subsequent changes over time in various marine ecosystem components has become a major research goal. The high logistical efforts and costs associated with arctic work demand the prudent use of existing resources for the most comprehensive information gain. Here, we compare the information that can be gained for epibenthic invertebrate and for demersal fish assemblages reflecting coverage on two different spatial scales: a broader spatial coverage from the Arctic Marine Biodiversity Observing Network (AMBON, 67 stations total), and the spatial coverage from a subset of these stations (14 stations) that reflect two standard transect lines of the Distributed Biological Observatory (DBO). Multivariate cluster analysis was used to discern community similarity patterns in epibenthic invertebrate and fish communities. The 14 stations reflecting the two DBO lines captured about 57% of the epibenthic species richness that was observed through the larger-scale AMBON coverage, with a higher percentage on the more southern DBO3 than the northern DBO4 line. For demersal fishes, both DBO lines captured 88% of the richness from the larger AMBON spatial coverage. The epifaunal assemblage clustered along the south-north and the inshore-offshore axes of the overall study region. Of these, the southern DBO3 line well represented the regional (southern) epifaunal assemblage structure, while the northern DBO4 line only captured a small number of the distinct assemblage clusters. The demersal fish assemblage displayed little spatial structure with only one coastal and one offshore cluster. Again, this structure was well represented by the southern DBO3 line but less by the northern DBO4 line. We propose that extending the coverage of the DBO4 line in the northern Chukchi Sea farther inshore and offshore would result in better representation of the overall northern Chukchi epifaunal and fish assemblages. In addition, the multi-annual stability of epifaunal and, to a lesser extent also fish assemblages, suggests that these components may not need to be sampled on an annual basis and sampling every 2-3 years could still provide sufficient understanding of long-term changes. Sampling these assemblages every few years from a larger region such as covered by the AMBON project would create the larger-scale context that is important in spatial planning of long-term observing.
机译:鉴于持续,加速,北极海洋的太平洋部门的环境变化,在各种海洋生态系统组件中跟踪随后随着时间的推移的能力已成为一个重大的研究目标。与北极工作相关的高后勤努力和成本要求审慎使用现有资源以获得最全面的信息收益。在这里,我们可以比较可以获得ePibenthic无脊椎动物和反射两种不同空间尺度的覆盖的覆盖的信息:从北极海洋生物多样性观察网络(Ambon,67站总计)的更广泛的空间覆盖,以及空间覆盖范围这些站(14个站)的子集反映了分布式生物观测所(DBO)的两个标准横向线。多变量聚类分析用于辨别盲肠无脊椎动物和鱼群中的社区相似模式。反映了两个DBO线的14个站捕获了通过较大规模的AMBon覆盖率观察到的大约57%的表皮物种丰富度,比北部DBO4线更南部DBO3在更高的南部DBO3上。对于倒影鱼,两条DBO线均以较大的布汶空间覆盖率捕获了88%的丰富度。沿南北集群聚集在南北和整体研究区的近海轴上的Epifaunal组合。其中,南德鲍3系列良好地代表了区域(南方)Epifaunal组装结构,而北DBO4线仅捕获了少数不同的组装簇。 Defersal Fish组件仅显示一小次沿海和一个海上群集的空间结构。同样,这种结构由南部DBO3线很​​好地代表,但北DBO4线少。我们建议将DBO4线的覆盖范围扩展到北楚奇海更远的近海和海上的覆盖率将导致整体北部Chukchi Epifaunal和Fish组合的更好代表性。此外,Epifaunal的多年稳定性,以及较小程度,也表明这些组件可能不需要每年对每年进行抽样,每2-3岁采样仍然可以提供足够的长期理解变化。从更大的区域进行采样每隔几年,例如由Ambon项目所覆盖的区域将创造大规模上下文,在长期观察的空间规划中非常重要。

著录项

  • 来源
    《Deep-Sea Research》 |2019年第4期|180-190|共11页
  • 作者单位

    Univ Alaska Coll Fisheries & Ocean Sci Fairbanks AK 99701 USA;

    Univ Alaska Coll Fisheries & Ocean Sci Fairbanks AK 99701 USA;

    Univ Maryland Ctr Environm Sci Solomons MD USA;

    Univ Maryland Ctr Environm Sci Solomons MD USA;

    Univ Alaska Coll Fisheries & Ocean Sci Fairbanks AK 99701 USA;

    UiT Arctic Univ Norway Dept Arctic & Marine Biol Tromso Norway;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Arctic; Observing system; Biomass; Diversity;

    机译:北极;观察系统;生物量;多样性;

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