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Floral traits driving reproductive isolation of two co-flowering taxa that share vertebrate pollinators

机译:共同隔离脊椎动物授粉媒介的两个共同开花类群的繁殖特性导致的花性状

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摘要

Floral attributes evolve in response to frequent and efficient pollinators, which are potentially important drivers of floral diversification and reproductive isolation. In this context, we asked, how do flowers evolve in a bat–hummingbird pollination system? Hence, we investigated the pollination ecology of two co-flowering Ipomoea taxa (I. marcellia and I. aff. marcellia) pollinated by bats and hummingbirds, and factors favouring reproductive isolation and pollinator sharing in these plants. To identify the most important drivers of reproductive isolation, we compared the flowers of the two Ipomoea taxa in terms of morphometry, anthesis and nectar production. Pollinator services were assessed using frequency of visits, fruit set and the number of seeds per fruit after visits. The studied Ipomoea taxa differed in corolla size and width, beginning and duration of anthesis, and nectar attributes. However, they shared the same diurnal and nocturnal visitors. The hummingbird Heliomaster squamosus was more frequent in I. marcellia (1.90 visits h−1) than in I. aff. marcellia (0.57 visits h−1), whereas glossophagine bats showed similar visit rates in both taxa (I. marcellia: 0.57 visits h−1 and I. aff. marcellia: 0.64 visits h−1). Bat pollination was more efficient in I. aff. marcellia, whereas pollination by hummingbirds was more efficient in I. marcellia. Differences in floral attributes between Ipomoea taxa, especially related to the anthesis period, length of floral parts and floral arrangement in the inflorescence, favour reproductive isolation from congeners through differential pollen placement on pollinators. This bat–hummingbird pollination system seems to be advantageous in the study area, where the availability of pollinators and floral resources changes considerably throughout the year, mainly as a result of rainfall seasonality. This interaction is beneficial for both sides, as it maximizes the number of potential pollen vectors for plants and resource availability for pollinators.
机译:花的属性随着频繁而高效的传粉者而发展,这是花多样化和生殖隔离的潜在重要驱动力。在这种情况下,我们问,蝙蝠-蜂鸟授粉系统中的花朵如何进化?因此,我们调查了由蝙蝠和蜂鸟授粉的两种共同开花的番薯类(I. marcellia和I. aff。marcellia)的授粉生态,以及这些植物中有利于生殖隔离和授粉媒介共享的因素。为了确定繁殖隔离的最重要驱动因素,我们从形态,花药和花蜜产量方面比较了两个番薯类的花。使用拜访频率,坐果情况和拜访后每种水果的种子数评估传粉媒介服务。研究的番薯类群在花冠的大小和宽度,花的开始和持续时间以及花蜜属性方面有所不同。但是,他们共享相同的昼夜游客。蜂鸟Heliomaster squamosus在马赛里氏菌中的发病率更高(1.90次访问h -1 ),而不是在艾弗氏菌中。马赛氏菌(0.57次访问h -1 ),而格罗帕汀蝙蝠在两个类群中均显示相似的访视率(马赛尔岛:0.57次访问h -1 和aff。marcellia: 0.64次访问h -1 )。蝙蝠传粉在I. aff。中更有效。 ,而蜂鸟的授粉在马赛菌中更有效。番薯属植物之间的花艺属性差异,特别是与花期,花期的长度和花序中的花序有关,有利于通过授粉媒介上不同的花粉放置与同类动物进行生殖隔离。这种蝙蝠-蜂鸟的授粉系统在研究区域似乎是有利的,那里的传粉媒介和花卉资源的可用性全年变化很大,这主要是由于降雨季节的影响。这种相互作用对双方都是有益的,因为它最大化了植物潜在花粉载体的数量和授粉媒介的资源利用率。

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