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Invasions but not extinctions change phylogenetic diversity of angiosperm assemblage on southeastern Pacific Oceanic islands

机译:入侵而非灭绝改变了东南太平洋大洋岛屿上被子植物组合的系统发育多样性。

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摘要

We assessed changes in phylogenetic diversity of angiosperm flora on six oceanic islands located in the southeastern Pacific Ocean, by comparing flora from two periods: the pre-European colonization of islands and current times. We hypothesize that, in the time between these periods, extinction of local plant species and addition of exotic plants modified phylogenetic-α-diversity at different levels (deeper and terminal phylogeny) and increased phylo-β-diversity among islands. Based on floristic studies, we assembled a phylogenetic tree from occurrence data that includes 921 species, of which 165 and 756 were native or exotic in origin, respectively. Then, we studied change in the phylo-α-diversity and phylo-β-diversity (1 –Phylosor) by comparing pre-European and current times. Despite extinction of 18 native angiosperm species, an increase in species richness and phylo-α-diversity was observed for all islands studied, attributed to introduction of exotic plants (between 6 to 477 species per island). We did not observe significant variation of mean phylogenetic distance (MPD), a measure of the ‘deeper’ phylogenetic diversity of assemblages (e.g., orders, families), suggesting that neither extinctions nor introductions altered phylogenetic structure of the angiosperms of these islands. In regard to phylo-β-diversity, we detected temporal turnover (variation in phylogenetic composition) between periods to flora (0.38 ± 0.11). However, when analyses were performed only considering native plants, we did not observe significant temporal turnover between periods (0.07 ± 0.06). These results indicate that introduction of exotic angiosperms has contributed more notably than extinctions to the configuration of plant assemblages and phylogenetic diversity on the studied islands. Because phylogenetic diversity is closely related to functional diversity (species trait variations and roles performed by organisms), our results suggests that the introduction of exotic plants to these islands could have detrimental impacts for ecosystem functions and ecosystem services that islands provide (e.g. productivity).
机译:我们通过比较两个时期的植物群(欧洲群岛之前的殖民时期和当前时期),评估了位于东南太平洋的六个大洋岛屿上被子植物群的系统发育多样性变化。我们假设,在这两个时期之间,当地植物物种的灭绝和外来植物的添加在不同水平(更深和更深的系统发育)上改变了系统发育-α多样性,并增加了岛屿间的系统-β多样性。基于植物学研究,我们从包括921种在内的发生数据中组装了一个系统树,其中分别有165种和756种为外来物种。然后,我们通过比较欧洲前时期和当前时期研究了系统-α-多样性和系统-β-多样性(1-Pylosor)的变化。尽管有18种原生被子植物灭绝,但由于引入了外来植物(每个岛屿6至477种),所有研究的岛屿都发现物种丰富度和系统α-多样性增加。我们没有观察到平均系统发生距离(MPD)的显着变化,平均系统发生距离(MPD)是对群体(例如阶,科)“较深”系统发生多样性的一种度量,表明灭绝和引种均未改变这些岛屿被子植物的系统发生结构。关于系统β-多样性,我们检测到了菌群周期之间的时间转换(系统发生组成的变化)(0.38±0.11)。但是,当仅考虑天然植物进行分析时,我们在各时期之间未观察到明显的时间转换(0.07±0.06)。这些结果表明,外来被子植物的引入对已研究岛屿上植物组合的构型和系统发育多样性的贡献远大于灭绝。由于系统发育多样性与功能多样性(物种特征变异和生物体所发挥的作用)密切相关,因此我们的结果表明,将外来植物引入这些岛屿可能会对岛屿提供的生态系统功能和生态系统服务(例如生产力)产生不利影响。

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