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授粉精度假说:来自本地蜜蜂和花蜜蝙蝠的支持。

Pollination-precision hypothesis: support from native honey bees and nectar bats.

机构信息

Department of Plant Science, Faculty of Science, Mahidol University, Bangkok, 10400, Thailand.

Department of Plant Protection Biology, Swedish University of Agricultural Sciences, Alnarp, 234 56, Sweden.

出版信息

New Phytol. 2022 Aug;235(4):1629-1640. doi: 10.1111/nph.18050. Epub 2022 Mar 7.

Abstract

The evolution of floral traits is often considered to reflect selection for increased pollination efficiency. Known as the pollination-precision hypothesis, increased pollination efficiency is achieved by enhancing pollen deposition on precise areas of the pollinator. Most research to date addressing this hypothesis has examined plant species that are a priori predicted to place pollen precisely, but we still lack comparisons with species predicted to have low pollination efficiency. We studied 39 plant species with diverse floral morphologies and measured the precision of pollen placement on two pollinator groups: honey bees (genus Apis) and nectar bats (family Pteropodidae). Pollen was collected from four locations of each pollinator's body (bees: dorsal thorax, ventral thorax, dorsal abdomen, ventral abdomen; bats: crown, face, chest, wing) to calculate pollen placement precision using Pielou's evenness index. We also quantified variation in floral design by scoring floral symmetry, corolla fusion, floral orientation and stamen number. We confirm the importance of four floral character states (bilateral symmetry, fused corollas, horizontal orientation and reduced stamen number) in promoting precise pollen placement on diverse pollinators. Our findings provide phylogenetically corrected, empirical support that the evolution of the four floral characters reflect selection for enhanced precision of pollen placed on pollinators.

摘要

花部特征的进化通常被认为反映了对提高传粉效率的选择。这被称为传粉精确性假说,提高传粉效率是通过增强花粉在传粉者精确区域的沉积来实现的。迄今为止,大多数研究都集中在那些预先被预测为能精确放置花粉的植物物种上,但我们仍然缺乏与那些被预测为传粉效率低的物种的比较。我们研究了 39 种具有不同花部形态的植物物种,并测量了两种传粉者(蜜蜂属 Apis 和花蜜蝙蝠科 Pteropodidae)上花粉放置的精确性。从每个传粉者身体的四个部位(蜜蜂:背胸、腹胸、背腹、腹腹;蝙蝠:冠、脸、胸、翅)收集花粉,使用皮尔洛均匀度指数计算花粉放置的精确性。我们还通过对花部对称性、花冠融合、花部方位和雄蕊数进行评分来量化花部设计的变异。我们证实了四个花部特征状态(双侧对称性、融合的花冠、水平方位和减少的雄蕊数)在促进在不同传粉者上花粉放置的精确性方面的重要性。我们的研究结果提供了系统发育校正的、经验支持,表明这四个花部特征的进化反映了对增强传粉者上花粉放置精确性的选择。

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