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A proposal of framework to obtain an integrated biodiversity indicator for agricultural ponds incorporating the simultaneous effects of multiple pressures

机译:关于综合考虑多种压力同时影响的农业池塘生物多样性综合指标的框架提案

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摘要

One of the promising approaches to monitoring biodiversity is assessing the status of pressures driving the biodiversity state. To achieve this, we need to identify the principal pressures that cause simultaneous biodiversity loss across taxonomic groups and clarify how multiple pressures act synergistically or at least simultaneously to decrease biodiversity in the focal ecosystem. Here, we used a series of 64 ponds as a case study and we developed a framework for an integrated biodiversity indicator that took into consideration the estimated relative importance of multiple pressures. The indicator is defined as a function of the pressure(s) and is parameterized to explain a number of individual indicators of biodiversity, such as richness, abundance, and functional diversity of focal taxa. We selected aquatic macrophytes, Odonata, and benthic macroinvertebrates as the focal taxa. In addition, we focused on three types of pressure: eutrophication (represented by total phosphorus, total nitrogen, suspended solids, chlorophyll a, and density of cyanobacteria of pond water), habitat destruction (land-use type around the pond and pond bank protection), and invasive alien species (abundance of bluegill, largemouth bass, red swamp crayfish, and American bullfrog). We then evaluated the relationships among direct pressures and the individual biodiversity indicators and used a hierarchical Bayesian approach to calculate the integrated biodiversity indicator. Using this framework, we demonstrated that eutrophication had greater effects on the state of biodiversity of the agricultural ponds than did habitat destruction or the presence of invasive alien species. We also showed that the integrated indicator could well explain the behaviors of several individual biodiversity indicators, including total richness, endangered species richness, and functional diversity of focal taxa. These results demonstrate the advantages of the framework in providing a more practical method for assessing biodiversity, and quantifying the relative importance of the major threats to biodiversity to prioritize strategies in conservation planning and policy making.
机译:监测生物多样性的有前途的方法之一是评估驱动生物多样性状况的压力状况。为了实现这一目标,我们需要确定导致各分类组同时发生生物多样性丧失的主要压力,并阐明多种压力如何协同作用或至少同时作用以减少重点生态系统中的生物多样性。在这里,我们使用了一系列64个池塘作为案例研究,并为综合生物多样性指标开发了一个框架,该框架考虑了多种压力的估计相对重要性。该指标被定义为压力的函数,并被参数化以解释许多生物多样性的单独指标,例如焦点类群的丰富度,丰度和功能多样性。我们选择了水生大型植物,Odonata和底栖大型无脊椎动物作为重点类群。此外,我们重点研究了三种压力:富营养化(以总磷,总氮,悬浮固体,叶绿素a和池塘水蓝细菌的密度表示),栖息地破坏(池塘周围的土地利用类型和池塘岸边保护) )和外来入侵物种(大量的blue,大嘴鲈,红色沼泽小龙虾和美洲牛蛙)。然后,我们评估了直接压力与单个生物多样性指标之间的关系,并使用分层贝叶斯方法来计算综合生物多样性指标。使用此框架,我们证明了富营养化对农业池塘生物多样性的影响要比栖息地破坏或外来入侵物种的存在更大。我们还表明,综合指标可以很好地解释几个生物多样性指标的行为,包括总丰富度,濒危物种丰富度和重点分类单元的功能多样性。这些结果证明了该框架的优势,它为评估生物多样性提供了一种更实用的方法,并量化了对生物多样性的主要威胁的相对重要性,以便在保护规划和政策制定中优先考虑战略。

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