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Nestedness in centipede (Chilopoda) assemblages on continental islands (Aegean, Greece)

机译:continent在大陆岛屿(希腊爱琴海)上的Chi(Chilopoda)组合

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In natural ecosystems, species assemblages among isolated ecological communities such as continental islands often show a nested pattern in which biotas of sites with low species richness are non-random subsets of biotas of richer sites. The distribution of centipede (Chilopoda) species in the central and south Aegean archipelago was tested for nestedness. To achieve this aim we used distribution data for 53 species collected on 24 continental Aegean islands (Kyklades and Dodekanisa). Based on the first-order jackknife estimator, most of islands were comprehensively surveyed. In order to quantify nestedness, we used the nestedness temperature calculator (NTC) as well as the nestedness metric based on overlap and decreasing Fill (NODF). NTC indicated that data exhibited a high degree of nestedness in the central and south Aegean island complexes. As far as the Kyklades and Dodekanisa are concerned, NTC showed less nested centipede structures than the 24 islands. Likewise, NODF revealed a significant degree of nestedness in central and south Aegean islands. It also showed that biotas matrices without singletons were more nested than the complete ones (Aegean, Kyklades and Dodekanisa). The two commonest centipede taxa (lithobiomorphs and geophilomorphs) contributed differently to centipede assemblages. In the Kyklades and Dodekanisa, geophilomorphs did not show a reliable nested arrangement unlike lithobiomorphs. In relation to the entire data set, nestedness was positively associated with the degree of isolation. In the Kyklades altitudinal range best explained nestedness patterns, while in Dodekanisa habitat heterogeneity proved to be more important for the centipede communities. Island area does not seem to be a significant explanatory variable. Some of our results from the Kyklades were critically compared with those for terrestrial isopod and land snail nested assemblages from the same geographical area. The complex geological and palaeogeographical history of the Aegean archipelago partly accounted for the pattern of centipede assemblages.
机译:在自然生态系统中,孤立的生态群落(例如大陆群岛)之间的物种组合通常表现出一种嵌套模式,其中物种丰富度低的站点的生物区系是物种丰富的站点的非随机子集。测试了爱琴海中部和南部群岛中ipe类(Chilopoda)物种的分布,以了解巢状情况。为了实现这一目标,我们使用了在24个爱琴海岛屿(Kyklades和Dodekanisa)上收集的53种物种的分布数据。根据一阶折刀估计量,对大多数岛屿进行了全面调查。为了量化嵌套度,我们使用了嵌套度温度计算器(NTC)以及基于重叠和递减填充(NODF)的嵌套度度量。 NTC指出,数据在爱琴海中部和南部岛屿群中表现出高度的嵌套性。就Kyklades和Dodekanisa而言,NTC显示的嵌套cent结构少于24个岛屿。同样,NODF发现爱琴海中部和南部岛屿的嵌套程度很高。它还表明,没有单例的生物群矩阵比完整的生物群(爱琴海,Kyklades和Dodekanisa)嵌套得更多。两种最常见的cent类群(石生物体和嗜地生物体)对cent的组合的贡献不同。在Kyklades和Dodekanisa中,与岩石生物形态不同,地球形态没有显示出可靠的嵌套排列。对于整个数据集,嵌套度与隔离度呈正相关。在Kyklades的海拔范围内,最能解释嵌套模式,而在Dodekanisa,栖息地的异质性对the群落更为重要。岛屿面积似乎并不是一个重要的解释变量。我们将Kyklades的某些结果与来自同一地理区域的地面等足动物和蜗牛筑巢的组合进行了严格的比较。爱琴海群岛复杂的地质和古地理历史在一定程度上解释了of组合的模式。

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