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Monitoring program design for data‐limited marine biogenic habitats: A structured approach

机译:数据受限的海洋生物栖息地监测程序设计:结构化方法

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Marine biogenic habitats—habitats created by living organisms—provide essential ecosystem functions and services, such as physical structuring, nutrient cycling, biodiversity support, and increases in primary, secondary, and tertiary production. With the growing trend toward ecosystem approaches to marine conservation and fisheries management, there is greater emphasis on rigorously designed habitat monitoring programs. However, such programs are challenging to design for data‐limited habitats for which underlying ecosystem processes are poorly understood. To provide guidance in this area, we reviewed approaches to benthic assessments across well‐studied marine biogenic habitats and identified common themes related to indicator selection, sampling methods, and survey design. Biogenic habitat monitoring efforts largely focus on the characteristics, distribution, and ecological function of foundation species, but may target other habitat‐forming organisms, especially when community shifts are observed or expected, as well as proxies of habitat status, such as indicator species. Broad‐scale methods cover large spatial areas and are typically used to examine the spatial configuration of habitats, whereas fine‐scale methods tend to be laborious and thus restricted to small survey areas, but provide high‐resolution data. Recent, emerging methods enhance the capabilities of surveying large areas at high spatial resolution and improve data processing efficiency, bridging the gap between broad‐ and fine‐scale methods. Although sampling design selection may be limited by habitat characteristics and available resources, it is critically important to ensure appropriate matching of ecological, observational, and analytical scales. Drawing on these common themes, we propose a structured, iterative approach to designing monitoring programs for marine biogenic habitats that allows for rigorous data collection to inform management strategies, even when data and resource limitations are present. A practical application of this approach is illustrated using glass sponge reefs—a recently discovered and data‐limited habitat type—as a case study.
机译:海洋生物栖息地(由生物体创造的栖息地)提供了生态系统的基本功能和服务,例如物理结构,养分循环,生物多样性支持以及初级,次级和第三级生产的增加。随着越来越多的生态系统方法应用于海洋保护和渔业管理,人们越来越重视严格设计的栖息地监测计划。但是,对于那些对基础生态系统过程知之甚少的数据有限的栖息地,设计此类程序具有挑战性。为了在该领域提供指导,我们回顾了对经过深入研究的海洋生物生境的底栖动物评估方法,并确定了与指标选择,采样方法和调查设计有关的共同主题。生物栖息地监测工作主要集中在基础物种的特征,分布和生态功能上,但也可能以其他形成栖息地的生物为目标,特别是在观察到或预期到群落转移以及指示物种的栖息地状态代理时。大规模方法覆盖较大的空间区域,通常用于检查栖息地的空间配置,而精细方法则比较费力,因此仅限于较小的调查区域,但可提供高分辨率数据。最近,新兴的方法增强了在高空间分辨率下进行大面积测量的能力,并提高了数据处理效率,弥合了大尺度和精细尺度方法之间的差距。尽管抽样设计的选择可能会受到栖息地特征和可用资源的限制,但确保生态,观测和分析规模的适当匹配至关重要。利用这些共同的主题,我们提出了一种结构化的迭代方法来设计海洋生物源生境的监视程序,即使存在数据和资源限制的情况下,也可以通过严格的数据收集为管理策略提供依据。作为案例研究,使用玻璃海绵礁(一种最近发现且数据受限的栖息地类型)说明了这种方法的实际应用。

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