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Bodner, L.

Publications and source records attributed to Bodner, L..

2 recordsLinked to original sources

Do flowers with specialized morphologies produce more nectar and pollen?

Premise of the studyFlower morphology influences the wiring of plant-pollinator interaction networks. Flowers with deep corolla tubes and bilateral symmetry have a narrower pollinator range, hence are considered more specialized than shallow radial flowers. Past inter-specific comparisons revealed positive correlations between flower depth and nectar production rates in a few plant communities, suggesting that specialized flowers may allocate more resources into food rewards for pollinators. MethodsTo evaluate this hypothesis, we compiled a global dataset of flower morphology vs. nectar sugar production rates (n = 494 plant species) and per-flower pollen counts (n = 164 species). We applied phylogenetically controlled mixed models to examine the effects of symmetry and tube length on floral rewards. Key resultsCorolla tube lengths, symmetry type and their interaction significantly predicted nectar production rates, with the larger effect attributed to tube length. Neither tube length nor symmetry predicted pollen number. Both nectar and pollen production were affected by phylogeny in a larger dataset that included 854 nectar-producing and 1040 pollen-producing species. Plant genus explained more of the variation in nectar production, and less of the variation in pollen production, than plant family. ConclusionsOur findings suggest that visual signals associated with specialized flowers honestly advertise nectar production, but not pollen rewards. Other visual and chemical family-specific floral displays potentially advertise pollen availability to pollinators. We propose experiments to test whether nectar foragers indeed use flower depth as a visual signal that guides their choices of nectar sources.

ecology↗

An experimental approach towards untangling the role of nature versus nurture in shaping the microbiome of social insects

The gut microbiota is intimately related to host wellbeing, in terms of physiology, immune function, and even social interactions. The strength of this relationship is dynamic, but the extent to which the microbiome is shaped by the identity of the host (nature) or its environment (nurture) remains largely unknown. Here we aimed to identify factors shaping the microbiomes of nursing workers and larvae of two Vespidae species, using a cross-species experimental design to control for effects of environment, host identity and their interactions. We found that the microbiome composition of adults depended principally on the environment. Conversely, larval microbiome composition differed more between host species, regardless of treatment. We also found distinct microbiota profiles between the two species, across life stages and independently. These findings further elucidate the complexity of the host-microbiome relationship shaped by the environment while retaining symbionts that benefit the host. These results suggest that holobiont evolution may have promoted the rise of social behavior in animals.

evolutionary biology↗