Patterns of spatial autocorrelation in the distribution and diversity of carabid beetles and spiders along Alpine glacier forelands

M. Gobbi, M. Brambilla
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引用次数: 11

Abstract

Abstract Spatial autocorrelation is a common feature of ecological data and can be found in the distribution pattern of many species or in the diversity of many species assemblages. The presence of spatial autocorrelation in species distribution along primary successions on recently deglaciated terrains has been largely overlooked until now, despite its potential consequences for comparisons between glacier forelands. Here, we investigated the occurrence of spatial autocorrelation at different spatial scales in the distribution and diversity of ground beetles and spiders along glacier forelands. We found positive spatial autocorrelation in patterns of occurrence of most species and in patterns of species assemblages diversity at spatial scales representing single (< 3 km) or adjacent valleys (< 7 km), whereas at a larger spatial scales (0–30 km) such positive spatial autocorrelation disappeared. We concluded that spatial autocorrelation could be a key issue for studies investigating distribution of arthropods, including in glacier forelands, in order to perform more robust analysis and to avoid misinterpretation of species distribution in relation to the glacier retreat and other environmental characteristics.
高山冰川前陆甲虫和蜘蛛分布与多样性的空间自相关模式
空间自相关是生态数据的共同特征,可以在许多物种的分布格局或许多物种组合的多样性中找到。在最近冰川消退的地形上,物种分布在原始演替中的空间自相关性一直被忽视,尽管它对冰川前陆之间的比较有潜在的影响。研究了冰川前陆甲虫和蜘蛛在不同空间尺度上的分布及其多样性的空间自相关性。在单个(< 3 km)或相邻山谷(< 7 km)的空间尺度上,大多数物种的发生格局和物种组合多样性格局呈现出正的空间自相关性,而在更大的空间尺度(0 ~ 30 km)上,这种正的空间自相关性消失。我们得出结论,空间自相关可能是研究节肢动物分布(包括冰川前陆)的关键问题,以便进行更可靠的分析,并避免与冰川退缩和其他环境特征有关的物种分布的误解。
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来源期刊
Italian Journal of Zoology
Italian Journal of Zoology 生物-动物学
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6-12 weeks
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