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首页> 外文期刊>Biodiversity and Conservation >Sampling adequacy in an extreme environment: species richness patterns in Slovenian caves
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Sampling adequacy in an extreme environment: species richness patterns in Slovenian caves

机译:极端环境中的采样充足性:斯洛文尼亚洞穴中的物种丰富度模式

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摘要

Caves harbor a rich fauna unique to subterranean environments. Although extensive records of cave animals are available, only a small fraction of known caves in any region have been biologically assessed. We investigated the impact of incomplete sampling using one of the richest, best documented cave faunas in the world - that of the Dinaric karst of Slovenia. We utilized time snapshots (1940, 1970, and 2000) of the caves and cave fauna to analyze stability of hotspots, spatial pattern, and relationship between number of species and number of caves. Using data aggregated into 100 km(2) hexagons, the location of hotspots, black - white joins, Moran's I, and spatial autocorrelation all remained constant, at least from 1970 on. The linear regression coefficient of the relationship between number of caves and number of species declined with time. Most hexagons had been sampled, but there was no indication that any hexagon had been sampled intensively enough for the accumulation curve of number of caves versus number of species within a hexagon to reach an asymptote. This appeared to be the result of a highly skewed distribution of species richness among caves. Number and position of hotspots can be predicted from information on these few high diversity caves.
机译:洞穴拥有地下环境特有的丰富动物区系。尽管可获得大量的洞穴动物记录,但在任何地区中只有一小部分已知的洞穴已经过生物学评估。我们使用世界上最丰富,文献最丰富的洞穴动物之一-斯洛文尼亚的Dinaric岩溶研究了不完整采样的影响。我们利用洞穴和洞穴动物的时间快照(1940、1970和2000)来分析热点的稳定性,空间格局以及物种数量与洞穴数量之间的关系。使用聚集在100 km(2)六边形中的数据,至少从1970年开始,热点,黑白连接,Moran's I和空间自相关的位置都保持不变。洞穴数量与物种数量之间的关系的线性回归系数随时间下降。大多数六边形已被采样,但是没有迹象表明已经对任何六边形进行了足够的采样,以使洞的数量与六边形内的物种数量的累积曲线达到渐近线。这似乎是洞穴之间物种丰富度分布高度偏斜的结果。可以根据这几个高多样性洞穴的信息预测热点的数量和位置。

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