Department Biology, Institute of Sensory Ecology, Heinrich-Heine-University Düsseldorf, Düsseldorf, Germany.
Plant Biol (Stuttg). 2014 Mar;16(2):503-7. doi: 10.1111/plb.12111. Epub 2013 Oct 18.
The two widespread tropical Solanum species S. paniculatum and S. stramoniifolium are highly dependent on the visits of large bees that pollinate the flowers while buzzing them. Both Solanum species do not offer nectar reward; the rewarding of bees is thus solely dependent on the availability of pollen. Flower visitors are unable to visually assess the amount of pollen, because the pollen is hidden in poricidal anthers. In this study we ask whether and how the amount of pollen determines the attractiveness of flowers for bees. The number of pollen grains in anthers of S. stramoniifolium was seven times higher than in S. paniculatum. By contrast, the handling time per five flowers for carpenter bees visiting S. paniculatum was 3.5 times shorter than of those visiting S. stramoniifolium. As a result foraging carpenter bees collected a similar number of pollen grains per unit time on flowers of both species. Experimental manipulation of pollen availability by gluing the anther pores showed that the carpenter bees were unable to detect the availability of pollen by means of chemical cues before landing and without buzzing. Our study shows that the efficiency of pollen collecting on S. paniculatum is based on large inflorescences with short between-flower search times and short handling time of individual flowers, whereas that of S. stramoniifolium relies on a large amount of pollen per flower. Interestingly, large carpenter bees are able to adjust their foraging behaviour to drastically different strategies of pollen reward in otherwise very similar plant species.
两种广泛分布的热带茄属植物 S. paniculatum 和 S. stramoniifolium 高度依赖于大型蜜蜂的访问,这些蜜蜂在授粉花朵的同时嗡嗡作响。这两种茄属植物都不提供花蜜奖励;蜜蜂的奖励仅仅依赖于花粉的可用性。花访客无法通过视觉评估花粉的数量,因为花粉隐藏在多孔的花药中。在这项研究中,我们询问花粉的数量是否以及如何决定花朵对蜜蜂的吸引力。S. stramoniifolium 花药中的花粉粒数量是 S. paniculatum 的七倍。相比之下,访问 S. paniculatum 的木匠蜂每处理五朵花的时间比访问 S. stramoniifolium 的时间短 3.5 倍。结果表明,觅食的木匠蜂在两种花上单位时间采集的花粉粒数量相似。通过将花药孔胶合来操纵花粉可用性的实验表明,木匠蜂在降落前和不嗡嗡作响的情况下无法通过化学线索检测花粉的可用性。我们的研究表明,S. paniculatum 花粉采集效率基于大花序、短花间搜索时间和单个花朵处理时间短,而 S. stramoniifolium 则依赖于每朵花的大量花粉。有趣的是,大型木匠蜂能够根据不同的花粉奖励策略调整其觅食行为,而这些策略在其他非常相似的植物物种中是不同的。