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Implications of using different metrics for niche analysis in ecological communities

机译:在生态群落中使用不同指标进行生态位分析的含义

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Explaining the mechanisms driving niche partitioning among species is of great importance in ecology. Unlike the fundamental niche, a species' realised niche can only be measured in situ, as a result of biotic and abiotic interactions defining its size. Following current methodology, the realised niche of a species is often influenced by the rare and divergent individuals of the community sampled. In this study, using fish on coral and temperate reefs as an example, behavioural empirical data were collected to estimate realised niche sizes and niche overlaps. Niche measurements were made using the total area of the convex hull (TA), but as an alternative, a metric not as strongly influenced by sample size, standard ellipse area (SEA), was also used. A comprehensive description is given, and contextdependent pros and cons of using both metrics are discussed. Additionally, an alternative sample size correction was presented for both metrics. The analyses revealed large differences in the sizes of realised niches and their overlaps between species depending on the measurement metric used. Regardless of the species, niche size and overlap were always larger for TA than SEA. Increasing sample size reduced niche size variability for both TA and SEA, but the variation was always smaller for SEA than TA. We successfully adapted the SEA metric for analysis of behavioural niche components and demonstrated that measuring niche sizes using the 2 metrics, each with their own strengths and weaknesses, can produce contradictory results, the ecological consequences of which are likely to be important.
机译:解释驱动物种间生态位分配的机制在生态学中非常重要。与基本生态位不同,物种的已实现生态位只能在原位进行测量,这是生物和非生物相互作用决定其大小的结果。按照当前的方法,一个物种的已实现生态位通常受到所采样社区中稀有和不同个体的影响。在这项研究中,以珊瑚和温带珊瑚礁上的鱼类为例,收集了行为经验数据,以估算已实现的生态位大小和生态位重叠。利基测量是使用凸包的总面积(TA)进行的,但也可以使用标准椭圆面积(SEA)作为不受样本大小强烈影响的指标。给出了全面的描述,并讨论了使用这两个度量的上下文相关的利弊。此外,还针对这两个指标提出了另一种样本大小校正方法。分析表明,根据所使用的度量标准,已实现的生态位大小及其在物种之间的重叠程度存在很大差异。无论物种如何,TA的生态位大小和重叠总是大于SEA。样本数量的增加减少了TA和SEA的生态位大小变异性,但SEA的变异总是小于TA。我们成功地将SEA度量标准用于行为生态位成分的分析,并证明了使用这两种度量标准(分别具有各自的优缺点)来测量生态位大小会产生矛盾的结果,其生态后果可能很重要。

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