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一种具有风箱机制的专门化鸟类传粉系统,用于传递花粉和奖励雄蕊食物体。

A specialized bird pollination system with a bellows mechanism for pollen transfer and staminal food body rewards.

机构信息

Department of Botany and Biodiversity Research, Faculty of Life Sciences, University of Vienna, Rennweg 14, 1030 Vienna, Austria.

Department of Botany, California Academy of Sciences, Golden Gate Park, 55 Music Concourse Drive, San Francisco, CA 94118, USA.

出版信息

Curr Biol. 2014 Jul 21;24(14):1615-1619. doi: 10.1016/j.cub.2014.05.056. Epub 2014 Jul 3.

Abstract

Bird pollination has evolved repeatedly among flowering plants but is almost exclusively characterized by passive transfer of pollen onto the bird and by nectar as primary reward [1, 2]. Food body rewards are exceedingly rare among eudicot flowering plants and are only known to occur on sterile floral organs [3]. In this study, we report an alternative bird pollination mechanism involving bulbous stamen appendages in the Neotropical genus Axinaea (Melastomataceae). We studied the pollination process by combining pollination experiments, video monitoring, and detailed analyses of stamen structure and metabolomic composition. We show that the bulbous stamen appendages, which are consumed by various species of passerines (Thraupidae, Fringillidae), are bifunctional during the pollination process. First, the appendages work as bellows organs in a unique pollen expulsion mechanism activated by the passerines. As the birds seize an appendage with their beaks in order to remove it from the flower for consumption, air contained in the appendage's aerenchymatous tissue is pressed into the hollow anther. The resulting air flow causes the expulsion of a pollen jet and the deposition of pollen on the bird's head and beak. Second, the stamen appendages provide a hexose-rich, highly nutritious (15,100 J/g) food body reward for the pollinating passerines. This discovery expands our knowledge of flowering plant pollination systems and provides the first report of highly specialized bellows organs for active pollen transfer in flowering plants. In addition, this is the only known case of a food body reward associated with reproductive structures in the eudicot clade of flowering plants.

摘要

鸟类传粉在开花植物中反复进化,但几乎完全以花粉被动转移到鸟类身上和花蜜作为主要奖励为特征[1,2]。在真双子叶植物中,有营养体奖励的情况极为罕见,仅在不育的花器官中被发现[3]。在这项研究中,我们报告了一种涉及新热带属 Axinaea(Melastomataceae)的鳞茎状雄蕊附属物的替代鸟类传粉机制。我们通过结合传粉实验、视频监测以及对雄蕊结构和代谢组学组成的详细分析来研究传粉过程。我们表明,鳞茎状雄蕊附属物被各种雀形目鸟类(Thraupidae、Fringillidae)消耗,在传粉过程中具有双重功能。首先,附属物在由雀形目鸟类激活的独特花粉排出机制中充当风箱器官。当鸟类用喙抓住一个附属物以便将其从花中取出食用时,附属物气腔组织中的空气被压入空心花药中。由此产生的气流导致花粉射流的排出,并将花粉沉积在鸟类的头部和喙上。其次,雄蕊附属物为传粉的雀形目鸟类提供了富含己糖、高度营养(15,100 J/g)的有营养体奖励。这一发现扩展了我们对开花植物传粉系统的认识,并首次报道了在开花植物中具有高度专业化的风箱器官用于主动花粉转移。此外,这是在真双子叶植物分支中与生殖结构相关的有营养体奖励的唯一已知情况。

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