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Efficiency of conservation shortcuts: an investigation with otters asumbrella species

机译:保护捷径的效率:水獭伞种调查

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The use of shortcuts is widespread in conservation practices to help ensure biodiversity conservation with minimal expenditures. An umbrella species is a species whose conservation confers protection to a large number of naturally co- occurring species. The aim of this study is to test the usefulness of the umbrella species concept for conservation management. As our umbrella, we chose a wide-ranging and flagship species, the European otter (Lutra lutra). Otters are widely distributed predators with numerous genera and species, so otter occurrence could virtually be used as "umbrella" in every freshwater habitat. To test the usefulness of the concept, we investigated whether an umbrella species might protect other species in the long term. We compared (1) bird and amphibian species richness in 1993 and in 2003 on nine sites where otters were monitored for 20 years, and (2) bird, amphibian and mollusc species richness between the previous sites and nine bio-equivalent sites where no otter occurrence has been detected for 20 years. The study was carried out for two spatial scales: total otter home range and core areas (most intensely exploited areas). Our results show that species richness was significantly different between years on sites inhabited by otters. However, we showed that biodiversity did not differ between pairs of bio-equivalent sites inhabited or deserted by otters, whatever the estimation method. Our results cast doubt on the validity of umbrella species use as an objective tool for conservation. However, the keystone functional role that otters could play in ecosystems might be an interesting way to reconsider the purpose of the umbrella species concept.
机译:在保护实践中,捷径的使用非常广泛,有助于以最少的支出确保生物多样性的保护。伞形物种是一种保护物种,赋予大量自然而然同时存在的物种的保护物种。这项研究的目的是检验保护伞物种概念对保护管理的有用性。作为我们的保护伞,我们选择了范围广泛的旗舰物种欧洲水獭(Lutra lutra)。水獭是分布广泛的掠食性动物,具有许多属和种类,因此水獭的出现实际上可以用作每个淡水栖息地的“伞”。为了测试该概念的实用性,我们研究了伞形物种是否可以长期保护其他物种。我们比较了(1)在1993年和2003年在监测水獭20年的9个站点上鸟类和两栖动物的物种丰富度,以及(2)在先前站点与没有水獭的9个生物等效站点之间的鸟类,两栖动物和软体动物的物种丰富度。已经发现这种情况已有20年了。该研究在两个空间尺度上进行:水獭的总栖息地范围和核心区域(最被高度开发的区域)。我们的结果表明,水獭栖息地的物种丰富度在不同年份之间存在显着差异。但是,我们表明,无论采用哪种估算方法,水獭在成对的生物等效地点之间都没有生物多样性的差异。我们的结果使人们对使用雨伞物种作为保护的客观工具的有效性表示怀疑。但是,水獭在生态系统中可能扮演的关键功能角色可能是重新考虑伞形物种概念目的的有趣方式。

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