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How to monitor ecological communities cost-efficiently: The example of plant-pollinator networks

机译:如何经济高效地监测生态群落:植物授粉网络的示例

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Conservation practitioners often lack tools to monitor functioning of communities because time and monetary constraints create a gap between the optimal monitoring methods and the practical needs in conservation. Interaction networks provide a framework that has proven useful in ecological research. However, they are considered time consuming and too expensive for conservation purposes. We investigate whether it is possible to sample interaction networks cost-efficiently and whether a compromise exists between data quality and amount of resources required to sample the data by using a highly resolved mutualistic plant-pollinator network sampled over two years in Norway. The dataset was resampled with decreasing sampling intensity to simulate decreasing monitoring costs and we investigated the cost-efficiency of these monitoring regimes. The success in monitoring community structure varied largely with sampling intensity and the descriptor investigated. One major result was that a large proportion of the functionally most important species in the community, both plants and insects, could be identified with relatively little sampling. For example, monitoring only in "peak-season", which costs ca. 20% relative to full monitoring, resulted in recording of 70% (in 2003) or 85% (in 2004) of the top 20 most functionally important pollinator species. Also, peak-season monitoring resulted in relatively precise estimates of several network descriptors. We present a first estimation of the full cost (travel time, sampling time and taxonomic services) of constructing pollination networks with different sampling effort. We recommend monitoring plant-pollinator networks in temperate regions during peak-season to cost-efficiently collect data for practical habitat management of ecosystem functioning.
机译:养护从业人员通常缺乏监测社区功能的工具,因为时间和金钱的限制在最佳监测方法和养护的实际需求之间造成了差距。交互网络提供了一个已被证明对生态研究有用的框架。然而,它们被认为是耗时的并且对于保护目的而言太昂贵了。我们调查是否有可能以经济高效的方式对交互网络进行采样,以及是否使用在挪威进行了两年以上采样的高度解析的互惠植物传粉媒介网络,在数据质量与采样数据所需的资源量之间是否存在折衷。以降低的采样强度对数据集进行重新采样,以模拟降低的监控成本,并且我们研究了这些监控方案的成本效率。监测社区结构的成功与否随抽样强度和调查对象的不同而有很大差异。一个主要的结果是,只需很少的采样就可以识别出社区中功能最重要的物种中的很大一部分,包括植物和昆虫。例如,仅在“旺季”中进行监控,这大约需要花费大约1欧元。相对于全面监测而言,有20%的记录表明,在功能最重要的前20种传粉媒介物种中,有70%(2003年)或85%(2004年)的记录。同样,高峰季节的监视导致对几个网络描述符的相对精确的估计。我们提出了以不同的抽样工作构建授粉网络的全部成本(旅行时间,抽样时间和分类服务)的初步估算。我们建议在高峰季节期间监测温带地区的植物传粉媒介网络,以经济高效的方式收集数据,以对生态系统功能的实际栖息地进行管理。

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