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How to integrate remotely sensed data and biodiversity for ecosystem assessments at landscape scale

机译:如何整合遥感数据和生物多样性以进行景观尺度的生态系统评估

摘要

Biodiversity and ecosystem functioning underpins the delivery of all ecosystem services and should be accounted for in all decision-making related to the use of natural resources and areas. However, biodiversity and ecosystem services are often inadequately accounted for in land use management decisions. We studied a boreal forest ecosystem by linking citizen-science bird data with detailed information on forest characteristics from airborne laser scanning (ALS). In this paper, we describe this method, and evaluate how similar kinds of biological data sets combined with remote sensing can be used for ecosystem assessments at landscape scale. We analysed data for 41 boreal forest bird species and for 14 structural ALS-based forest parameters. The results support the use of the selected method as a basis for quantifying spatially-explicit biodiversity indicators for ecosystem assessments, while suggestions for improvements are also reported. Finally, we evaluate the capacity of those indicators to describe biodiversity-ecosystem service relationships, for example with carbon trade-offs. The results showed clear distinctions between the different species as measured, for example, by above-ground forest biomass at the observation sites. We also assess how the available data sources can be developed to be compatible with the concept of essential biodiversity variables (EBV), which has been put forward as a solution to cover the most important aspects of biodiversity and ecosystem functioning. We suggest that EBVs should be integrated into environmental monitoring programmes in the future, and citizen science and remote sensing methods need to be an important part of them.
机译:生物多样性和生态系统功能是所有生态系统服务提供的基础,应在与自然资源和区域利用有关的所有决策中予以考虑。但是,在土地利用管理决策中,生物多样性和生态系统服务往往得不到充分考虑。我们通过将公民科学鸟类数据与机载激光扫描(ALS)的森林特征详细信息联系起来,研究了北方森林生态系统。在本文中,我们描述了这种方法,并评估了如何将相似种类的生物数据集与遥感技术结合起来用于景观尺度的生态系统评估。我们分析了41种北方森林鸟类的数据以及14种基于ALS的结构性森林参数。结果支持使用所选方法作为量化空间明确的生物多样性指标用于生态系统评估的基础,同时还报告了改进建议。最后,我们评估了这些指标描述生物多样性与生态系统服务关系的能力,例如碳权衡。结果显示不同物种之间存在明显区别,例如,通过观测地点的地上森林生物量进行测量。我们还评估了如何开发可用的数据源,使其与生物多样性基本变量(EBV)的概念兼容,该概念已被提出作为涵盖生物多样性和生态系统功能最重要方面的解决方案。我们建议未来应将EBV纳入环境监测计划,而公民科学和遥感方法应成为其中的重要组成部分。

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