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Florivore impacts on plant reproductive success and pollinator mortality in an obligate pollination mutualism

机译:在专性授粉共生中,花食对植物繁殖成功和授粉媒介死亡率的影响

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Florivores are present in many pollination systems and can have direct and indirect effects on both plants and pollinators. Although the impact of florivores are commonly examined in facultative pollination mutualisms, their effects on obligate mutualism remain relatively unstudied. Here, we used experimental manipulations and surveys of naturally occurring plants to assess the effect of florivory on the obligate pollination mutualism between yuccas and yucca moths. Yucca filamentosa (Agavaceae) is pollinated by the moth Tegeticula cassandra (Lepidoptera: Prodoxidae), and the mutualism also attracts two florivores: a generalist, the leaf-footed bug Leptoglossus phyllopus (Hemiptera: Coreidae), and a specialist, the beetle Hymenorus densus (Coleoptera: Tenebrionidae). Experimental manipulations of leaf-footed bug densities on side branches of Y. filamentosa inflorescences demonstrated that feeding causes floral abscission but does not reduce pollen or seed production in the remaining flowers. Similar to the leaf-footed bugs, experimental manipulations of beetle densities within individual flowers demonstrated that beetle feeding also causes floral abscission, but, in addition, the beetles also cause a significant reduction in pollen availability. Path analyses of phenotypic selection based on surveys of naturally occurring plants revealed temporal variation in the plant traits important to plant fitness and the effects of the florivores on fitness. Leaf-footed bugs negatively impacted fitness when fewer plants were flowering and leaf-footed bug density was high, whereas beetles had a positive effect on fitness when there were many plants flowering and their densities were low. This positive effect was likely due to adult beetles consuming yucca moth eggs while having a negligible effect on floral abscission. Together, the actions of both florivores either augmented the relationship of plant traits and fitness or slightly weakened the relationship. Overall, the results suggest that, although florivores are always present during flowering, the impact of florivores on phenotypic selection in yuccas is strongly mitigated by changes in their densities on plants from year to year. In contrast, both florivores consistently influenced pollinator larval mortality through floral abscission, and H. densus beetles additionally via the consumption of pollinator eggs.
机译:花粉症存在于许多授粉系统中,可能对植物和授粉媒介产生直接和间接影响。尽管通常在兼性授粉共生中研究食虫的影响,但它们对专性共生的影响仍未被研究。在这里,我们使用实验操作和对天然植物的调查来评估花粉对丝兰和丝兰蛾专性授粉共生的影响。丝兰(Agavaceae)被飞蛾(Tegeticula cassandra)(鳞翅目:Prodoxidae)授粉,并且共生也吸引了两种花食动物:通才,叶足虫Leptoglossus phyllopus(Hemiptera:Coreidae),以及甲虫Hymenorus densus (鞘翅目:天蛾科)。操纵叶黄杨花序侧枝上的叶足虫密度的实验操作表明,进食会引起花序脱落,但不会减少其余花朵的花粉或种子产量。与叶足虫类似,对单个花中甲虫密度的实验操作表明,甲虫摄食也会引起花的脱落,但此外,甲虫还会导致花粉可用性的显着降低。根据对天然植物的调查,对表型选择进行的路径分析揭示了对植物适应性重要的植物性状的暂时性变化,以及植物性对适应性的影响。当植物较少开花且叶足虫密度高时,叶足虫对适应性产生负面影响,而当植物多花且密度低时,甲虫对适应度具有积极影响。这种积极作用可能是由于成年甲虫食用了丝兰蛾卵而对花脱落的影响可忽略不计。在一起,两种植物的作用要么增强了植物性状与适应性的关系,要么使这种关系略微减弱。总体而言,结果表明,尽管在开花过程中总是存在花食动物,但由于每年它们在植物上的密度变化,花食动物对丝兰表型选择的影响得到了很大的缓解。相比之下,两种食虫都通过花脱落而持续影响授粉媒介幼虫的死亡率,另外还通过食用授粉媒介卵来影响H. densus甲虫。

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