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Adaptation to hummingbird pollination is associated with reduced diversification in Penstemon

机译:适应蜂鸟授粉会减少Penstemon的多样化

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摘要

A striking characteristic of the Western North American flora is the repeated evolution of hummingbird pollination from insect‐pollinated ancestors. This pattern has received extensive attention as an opportunity to study repeated trait evolution as well as potential constraints on evolutionary reversibility, with little attention focused on the impact of these transitions on species diversification rates. Yet traits conferring adaptation to divergent pollinators potentially impact speciation and extinction rates, because pollinators facilitate plant reproduction and specify mating patterns between flowering plants. Here, we examine macroevolutionary processes affecting floral pollination syndrome diversity in the largest North American genus of flowering plants, Penstemon. Within Penstemon, transitions from ancestral bee‐adapted flowers to hummingbird‐adapted flowers have frequently occurred, although hummingbird‐adapted species are rare overall within the genus. We inferred macroevolutionary transition and state‐dependent diversification rates and found that transitions from ancestral bee‐adapted flowers to hummingbird‐adapted flowers are associated with reduced net diversification rate, a finding based on an estimated 17 origins of hummingbird pollination in our sample. Although this finding is congruent with hypotheses that hummingbird adaptation in North American Flora is associated with reduced species diversification rates, it contrasts with studies of neotropical plant families where hummingbird pollination has been associated with increased species diversification. We further used the estimated macroevolutionary rates to predict the expected pattern of floral diversity within Penstemon over time, assuming stable diversification and transition rates. Under these assumptions, we find that hummingbird‐adapted species are expected to remain rare due to their reduced diversification rates. In fact, current floral diversity in the sampled Penstemon lineage, where less than one‐fifth of species are hummingbird adapted, is consistent with predicted levels of diversity under stable macroevolutionary rates.
机译:北美西部植物区系的一个显着特征是蜂鸟授粉从昆虫授粉祖先那里反复发生。这种模式作为研究重复性状进化以及对进化可逆性的潜在限制而受到广泛关注,而很少关注这些转变对物种多样化率的影响。然而,赋予传粉媒介适应性状的特性可能会影响物种形成和灭绝速度,因为传粉媒介促进植物繁殖并指定开花植物之间的交配模式。在这里,我们研究了影响北美最大的开花植物属Penstemon的花授粉综合症多样性的宏观进化过程。在Penstemon内,从适应蜜蜂祖先的花朵到适应蜂鸟的花朵的转换频繁发生,尽管适应蜂鸟的物种在该属中很少见。我们推断了宏观进化的过渡和国家依存的多样化速率,发现从祖先适应蜜蜂的花朵到适应蜂鸟的花朵的转化与净多样化率的降低有关,这一发现基于我们样本中估计的蜂鸟授粉的17个起源。尽管这一发现与北美植物区系的蜂鸟适应与物种多样化速度降低的假设相吻合,但与新热带植物家族研究相反,在该物种中,蜂鸟授粉与物种多样化增加有关。假设稳定的多样化和过渡速率,我们进一步使用估计的宏观进化速率来预测Penstemon内花卉多样性的预期模式。在这些假设下,我们发现适应蜂鸟的物种由于其多样化程度的降低而预计仍将很少见。事实上,目前采样的彭斯特蒙氏谱系中的花卉多样性(其中不到五分之一的物种是蜂鸟适应的)与稳定的宏观进化速率下的预测多样性水平相符。

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