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Repeated evolution of vertebrate pollination syndromes in a recently diverged Andean plant clade

机译:最近分叉的Andean Plant Clade中的脊椎动物授粉综合征反复演变

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Although specialized interactions, including those involving plants and their pollinators, are often invoked to explain high species diversity, they are rarely explored at macroevolutionary scales. We investigate the dynamic evolution of hummingbird and bat pollination syndromes in the centropogonid clade (Lobelioideae: Campanulaceae), an Andean-centered group of ~550 angiosperm species. We demonstrate that flowers hypothesized to be adapted to different pollinators based on flower color fall into distinct regions of morphospace, and this is validated by morphology of species with known pollinators. This supports the existence of pollination syndromes in the centropogonids, an idea corroborated by ecological studies. We further demonstrate that hummingbird pollination is ancestral, and that bat pollination has evolved ~13 times independently, with ~11 reversals. This convergence is associated with correlated evolution of floral traits within selective regimes corresponding to pollination syndrome. Collectively, our results suggest that floral morphological diversity is extremely labile, likely resulting from selection imposed by pollinators. Finally, even though this clade’s rapid diversification is partially attributed to their association with vertebrate pollinators, we detect no difference in diversification rates between hummingbird- and bat-pollinated lineages. Our study demonstrates the utility of pollination syndromes as a proxy for ecological relationships in macroevolutionary studies of certain species-rich clades.
机译:虽然专业的相互作用,包括涉及植物及其粉丝器的互动,但经常被调用以解释高物种多样性,但它们很少在宏观调度尺度探索。我们调查了Centropogonid Clade(Lobelioideae:Campanulaceae)的蜂鸟和蝙蝠授粉综合征的动态演变,是一个以550〜550〜550个子植物种类的Andean--550的〜550族。我们证明,假设的花朵适应基于花色的不同传导素落入形态学的不同区域,这通过具有已知粉丝器的种类形态验证。这支持在Centropogonid中存在授粉综合征,这是生态学研究证实的想法。我们进一步证明蜂鸟授粉是祖先,蝙蝠授粉已经独立演变〜13次,〜11次逆转。这种收敛与与授粉综合征相对应的选择性制度内的花卉特征的相关演变有关。集体,我们的结果表明,花卉形态多样性是极其不稳定的,可能由粉刷师的选择产生。最后,尽管该思工的快速多样化部分被归因于与脊椎动物粉碎机的关联,但我们在蜂鸟和蝙蝠授粉谱系之间的多样化速率下检测到没有差异。我们的研究表明,授粉综合征的效用作为某些富含物种富含种类的宏观调查研究中的生态关系的代理。

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