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The shape of occupancy distributions in plant communities: the importance of artefactual effects

机译:植物群落中占用分布的形状:人工效应的重要性

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Occupancy frequency distributions are commonly used as an approach to describe and analyse interspecific distribution patterns. However, the relative importance of biological versus artefactual mechanisms in shaping occupancy distributions is still largely undetermined. We evaluated the importance of different and interacting artefactual effects on the shape of occupancy distributions in local plant communities. The effects of sampling protocol parameters (i.e. size and number of sample units, sample extent, coverage, and intensity) on the shape of the occupancy distributions were examined separately. We identified the mechanisms that cause the effects by tracking the shifts of individual species between occupancy classes with varying parameters. Furthermore, the impact of different species abundance distributions and increasing levels of intraspecific aggregation on occupancy distributions was investigated by means of artificial assemblages. We show the following results: 1) increases in the number of sample units, sample extent, coverage, and intensity all result in a unimodal occupancy distribution with the mode in the lowest occupancy class; 2) an increase in sample unit size leads to a bimodal distribution; 3) changes that occur in the shape of the occupancy distributions with varying sampling protocol parameters can be explained by the movements of the species between occupancy classes; 4) different species abundance distributions may cause occupancy distributions with a left-hand mode or a bimodal distribution; and 5) the number of species in the highest occupancy class decreases with increasing degree of aggregation. The mode that almost always occurs in the lowest occupancy class is most likely due to the high number of rare species existing in most communities; the mode in the highest class emerges as a pure artefact that occurs when the sample unit size is relatively large compared to the sample extent. Consequently, the exclusion or separation of concurrent artefactual mechanisms is crucial when investigating the biological causes for the shape of occupancy distributions.
机译:占用频率分布通常用作描述和分析种间分布模式的一种方法。但是,在确定占用率分布方面,生物机制与人工机制的相对重要性仍未确定。我们评估了不同且相互影响的人工制品对当地植物群落中居住分布形状的重要性。分别检查了抽样协议参数(即样本单位的大小和数量,样本范围,覆盖范围和强度)对占用分布形状的影响。我们通过跟踪具有变化参数的占用类别之间单个物种的转移,确定了造成这种影响的机制。此外,还通过人工组合研究了不同物种的丰度分布和种内聚集水平的提高对占用率分布的影响。我们显示以下结果:1)样本单位数量,样本范围,覆盖范围和强度的增加均导致单峰占用率分布,且模式处于最低占用级别; 2)样本单位大小的增加导致双峰分布; 3)可以通过物种在居住类别之间的移动来解释在具有不同采样协议参数的情况下,居住分布的形状发生的变化; 4)不同物种的丰度分布可能导致左手模式或双峰模式的占用率分布; 5)最高聚集度的物种数量随着聚集度的增加而减少。由于大多数社区中都存在大量稀有物种,因此这种模式几乎总是出现在最低占用率类别中。最高等级的模式是纯假象,当样本单位大小与样本范围相比相对较大时,就会出现这种情况。因此,在调查占用分布形状的生物学原因时,排除或分离同时存在的人为因素机制至关重要。

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