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Global patterns and drivers of phylogenetic structure in island floras

机译:岛屿植物群系统发育结构的整体格局和驱动因素

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Islands are ideal for investigating processes that shape species assemblages because they are isolated and have discrete boundaries. Quantifying phylogenetic assemblage structure allows inferences about these processes, in particular dispersal, environmental filtering and in-situ speciation. Here, we link phylogenetic assemblage structure to island characteristics across 393 islands worldwide and 37,041 vascular plant species (representing angiosperms overall, palms and ferns). Physical and bioclimatic factors, especially those impeding colonization and promoting speciation, explained more variation in phylogenetic structure of angiosperms overall (49%) and palms (52%) than of ferns (18%). The relationships showed different or contrasting trends among these major plant groups, consistent with their dispersal- and speciation-related traits and climatic adaptations. Phylogenetic diversity was negatively related to isolation for palms, but unexpectedly it was positively related to isolation for angiosperms overall. This indicates strong dispersal filtering for the predominantly large-seeded, animal-dispersed palm family whereas colonization from biogeographically distinct source pools on remote islands likely drives the phylogenetic structure of angiosperm floras. We show that signatures of dispersal limitation, environmental filtering and in-situ speciation differ markedly among taxonomic groups on islands, which sheds light on the origin of insular plant diversity.
机译:岛屿是研究物种集合的过程的理想选择,因为它们是孤立的并且具有离散的边界。量化系统发育组合结构可以推断出这些过程,尤其是分散,环境过滤和原位物种形成。在这里,我们将系统发育组合结构与全球393个岛屿和37,041种维管植物物种(代表整体被子植物,棕榈和蕨类植物)的岛屿特征联系起来。物理和生物气候因素,尤其是那些阻碍定居和促进物种形成的因素,解释了总体上被子植物(49%)和手掌(52%)比蕨类植物(18%)的系统发育结构变化更多。这些关系在这些主要植物群之间显示出不同或相反的趋势,这与它们的与散布和物种形成有关的性状和气候适应一致。系统发育多样性与手掌的分离负相关,但出乎意料的是,与整体被子植物的分离正相关。这表明对主要为大种子,动物分散的棕榈科进行了强力的扩散过滤,而在偏远岛屿上的生物地理上不同的来源库中进行的定殖可能推动了被子植物群的系统发育结构。我们表明,在岛上的生物分类群之间,传播限制,环境过滤和原位物种形成的特征明显不同,这为岛屿植物多样性的起源提供了启示。

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