Department of Ecology and Evolutionary Biology, Cornell University, Ithaca, NY, USA.
Center for Chromatography and Mass Spectrometry, CROM-MASS, CIBIMOL-CENIVAM, Industrial University of Santander, Carrera 27, Calle 9, Edificio 45, 680002, Bucaramanga, Colombia.
Sci Rep. 2022 Nov 18;12(1):19848. doi: 10.1038/s41598-022-23261-2.
Stickiness of vegetative tissues has evolved multiple times in different plant families but is rare and understudied in flowers. While stickiness in general is thought to function primarily as a defense against herbivores, it may compromise mutualistic interactions (such as those with pollinators) in reproductive tissues. Here, we test the hypothesis that stickiness on flower petals of the High-Andean plant, Bejaria resinosa (Ericaceae), functions as a defense against florivores. We address ecological consequences and discuss potential trade-offs associated with a repellant trait expressed in flowers that mediate mutualistic interactions. In surveys and manipulative experiments, we assess florivory and resulting fitness effects on plants with sticky and non-sticky flowers in different native populations of B. resinosa in Colombia. In addition, we analyze the volatile and non-volatile components in sticky and non-sticky flower morphs to understand the chemical information context within which stickiness is expressed. We demonstrate that fruit set is strongly affected by floral stickiness but also varies with population. While identifying floral stickiness as a major defensive function, our data also suggest that the context-dependency of chemical defense functionality likely arises from differential availability of primary pollinators and potential trade-offs between chemical defense with different modes of action.
营养组织的粘性在不同的植物科中多次进化,但在花中却很少见且研究不足。虽然粘性通常被认为主要作为防御食草动物的手段,但它可能会损害生殖组织中的互利共生相互作用(例如与传粉者的相互作用)。在这里,我们检验了一个假设,即高海拔植物 Bejaria resinosa(Ericaceae)的花瓣粘性作为对 Florivores 的防御功能。我们研究了与在介导互利共生相互作用的花中表达的驱避特性相关的生态后果和潜在权衡。在调查和操纵实验中,我们评估了粘性和非粘性花朵在哥伦比亚不同原生种群中对具有粘性和非粘性花朵的植物的 Florivory 及其对植物的适应性影响。此外,我们分析了粘性和非粘性花形态的挥发性和非挥发性成分,以了解粘性表达的化学信息背景。我们证明,结实率受到花的粘性的强烈影响,但也随种群而变化。虽然将花的粘性鉴定为主要防御功能,但我们的数据还表明,化学防御功能的上下文相关性可能源于主要传粉媒介的不同可用性以及不同作用模式的化学防御之间的潜在权衡。