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66 results for “pollinator visitation”
Pollinator visitation on Na-enriched plants in a subalpine meadow
<p>Many plants have evolved nutrient rewards to attract pollinators to flowers, but most research has focused on the sugar content of floral nectar resources. Concentrations of sodium in floral nectar (a micronutrient in low concentrations in nectar) can vary substantially both among and within co-occurring species. Sodium concentrations in floral nectar might play an important and underappreciated role in plant-pollinator interactions, especially because many animals, including pollinators, are sodium-limited in nature. Yet, the consequences of variation in sodium concentrations in floral nectar have gone largely unexplored. Here, we investigate whether enriching floral nectar with sodium influences the composition, diversity, and abundance of pollinator interactions. We experimentally enriched sodium concentrations in four plant species in a subalpine meadow in Colorado, USA. We found that flowers with sodium-enriched nectar received more visits from a greater diversity of pollinator visitors throughout the season. Each pollinator species foraged more frequently on flowers enriched with sodium and showed evidence of other changes to pollinator foraging behavior, including greater dietary evenness. These findings are consistent with the 'salty nectar hypothesis,' providing evidence for the importance of sodium limitation in pollinators and suggesting that even small nectar constituents can shape plant-pollinator interactions.</p>
Landscape simplification leads to loss of plant-pollinator interaction diversity and flower visitation frequency despite buffering by abundant generalist pollinators
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Pollinator visitation on Na-enriched plants in a subalpine meadow
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Population and community-level rarity have opposing effects on pollinator visitation and seed set
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Data from: Year-round pollinator visitation of ornamental plants in Mediterranean urban parks
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Data from: Gradual pollen release in a buzz pollinated plant: Investigating pollen presentation theory under bee visitation
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Pollinator visits to six plant species in an oil palm landscape
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Experimental test of the combined effects of water availability and flowering time on pollinator visitation and seed set
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Data from: Pollinator visitation rate and effectiveness vary with flowering phenology
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Pollinator visitation in Moving Uphill plots for 2019
Climate change impacts the interactions of many species, including those between plants and pollinators. Plant-pollinator interactions, crucial for the persistence of most plant and many insect species, are threatened by climate change-driven spatial shifts. Upward elevational shifts by plants can alter spatial overlap of plant and pollinator species. These spatial mismatches could decrease plant fecundity, influence pollinator nutrition, and impact the strength and resilience of pollinator networks, especially in less diverse systems such as the alpine. Past work at Niwot Ridge Research Station in the Colorado Rockies has examined differences in plant and microbe species across a large elevational gradient. Here, we strive to examine how elevation affects pollination. Initial findings indicate that plants experience higher visitation rates by insects at higher elevations. Analysis of the diversity of these insects is ongoing.
Data for: Wind drives temporal variation in pollinator visitation in a fragmented tropical forest
<p>Data for "Wind drives temporal variation in pollinator visitation in a fragmented tropical forest." Files include:</p> <p>1. Data on orchid bee abundance and species identification.</p> <p>2. Data for collection sessions, including forest cover at each site, as well as wind data for the specific time period of the collection, and overall abundance counts, etc.</p> <p>3. R scripts to recreate statistical presented in the paper, using the two datasets described above.</p>
Data from: Flower-visiting bat species contribute unequally toward agricultural pollination ecosystem services in southern Thailand
The large majority of angiosperm species depend on animals for pollination, including many agricultural crops, and plant-pollinator interactions have been extensively studied. However, not all floral visitors actually transfer pollen, and efforts to distinguish true pollinators from mere visitors are particularly scarce among the bat pollination literature. To determine whether Old World bat species are equally effective pollinators in mixed-agricultural areas of southern Thailand, we examined six night-blooming plant taxa and quantified pollinator importance (PI) of seven common nectarivorous bat species. PI was calculated as the product of nightly bat visitation rate (obtained from mist-netting data) and pollen transfer efficiency (estimated from bat pollen loads). We found that PI varied by both bat species and plant species. In general, the nectar-specialist bat species were more important pollinators, yet their order of importance differed across our focal plant species. In addition, PI was dictated more by pollen transfer effectiveness than visitation rate. Our findings highlight the importance of Old World bat pollinators within southern Thailand's mixed-agricultural landscape and illustrate how seemingly similar floral visitors can have very different contributions toward plant pollination success.
Data from: Constructing more informative plant-pollinator networks: visitation and pollen deposition networks in a heathland plant community
Interaction networks are widely used as tools to understand plant–pollinator communities, and to examine potential threats to plant diversity and food security if the ecosystem service provided by pollinating animals declines. However, most networks to date are based on recording visits to flowers, rather than recording clearly defined effective pollination events. Here we provide the first networks that explicitly incorporate measures of pollinator effectiveness (PE) from pollen deposition on stigmas per visit, and pollinator importance (PI) as the product of PE and visit frequency. These more informative networks, here produced for a low diversity heathland habitat, reveal that plant–pollinator interactions are more specialized than shown in most previous studies. At the studied site, the specialization index Embedded Image was lower for the visitation network than the PE network, which was in turn lower than Embedded Image for the PI network. Our study shows that collecting PE data is feasible for community-level studies in low diversity communities and that including information about PE can change the structure of interaction networks. This could have important consequences for our understanding of threats to pollination systems.
Data from: Explaining variation in the effect of floral density on pollinator visitation
Pollinator responses to floral density have important implications for plant biology. In particular, a decline in pollinator visitation at low density can cause an Allee effect (a positive relation of fitness to density) in the plant population, which heightens that population's vulnerability to extinction. Empiricists have reported a variety of relations between flower or plant density and pollinator visitation rates. Here I develop and test a model that provides explanations for this diversity. The model assumes that pollinators distribute themselves between a focal patch of flowers and the surrounding environment so as to maximize foraging success. The resulting relation of per-flower visitation rate to focal patch floral density is non-linear, with positive effects at low floral densities and weaker or negative effects at higher densities. The relation is influenced by floral density in the surrounding environment and traits of both the plants and their pollinators. In a field experiment, floral density of Holocarpha virgata ssp. virgata had a non-linear effect on per-flower visitation that was largely consistent with the model's predictions. By producing testable hypotheses based on biologically reasonable assumptions, this model serves as a starting point for explaining an important facet of plant-pollinator mutualisms.
How does timing of flowering affect competition for pollinators, flower visitation and seed set in an early spring grassland plant?
<p><span>Knowledge on how the timing of flowering is related to plant fitness and species interactions is crucial </span><span>to understand consequences of phenological shifts as they occur under climate change. Early flowering </span><span>plants may face advantages of low competition for pollinators and disadvantages of low pollinator </span><span>abundances and unfavourable weather conditions. However, it is unknown how this trade-off changes </span><span>over the season and how the timing affects reproductive success. On eight grasslands we recorded </span><span>intra-seasonal changes in pollinators, co-flowering plants, weather conditions, flower visitation </span><span>rates, floral longevity and seed set of </span><span>Pulsatilla vulgaris</span><span>. Although bee abundances and the number of </span><span>pollinator-suitable hours were low at the beginning of the season, early flowers of </span><span>P. vulgaris</span><span> received </span><span>higher flower visitation rates and estimated total number of bee visits than later flowers, which was </span><span>positively related to seed set. Flower visitation rates decreased over time and with increasing number of </span><span>co-flowering plants, which competed with </span><span>P. vulgaris</span><span> for pollinators. Low interspecific competition for </span><span>pollinators seems to be a major driver for early flowering dates. Thus, non-synchronous temporal shifts </span><span>of co-flowering plants as they may occur under climate warming can be expected to strongly affect </span><span>plant-pollinator interactions and the fitness of the involved plants.</span></p>
Disentangling direct and indirect effects of habitat fragmentation on wild plants' pollinator visits and seed production
<p>Habitat fragmentation threatens plant and pollinator communities, as well as their interactions. However, the effects of landscape fragmentation on the pollination of wild plant species are not well-understood yet, partly because in fragmented landscapes there are many correlated features (e.g. decreased patch size, increased isolation and patch complexity) whose influences are difficult to disentangle. Using a SEM approach, we assessed the direct and indirect effects of landscape fragmentation (patch size, isolation and complexity, percentage of surrounding forest) on the abundance, functional-group richness and evenness of pollinators of 24 habitat fragments within an agricultural landscape in Southern Norway. In addition, we studied how these variables affected visitation rates (visits/flower) and seed production (seed set, seed weight) in the four most abundant plant species in the area. Flower abundance was higher in larger and complex patches and decreased with the percentage of forest in the surroundings, while flower richness increased with patch complexity. We found a direct negative relationship between patch complexity and the overall number of pollinator visits that the habitat fragments received. Apart from this direct landscape effect, pollinator visits were mostly affected by the floral communities, with overall flower abundance and richness increasing both total number of pollinator visits and pollinator-group richness, and flower richness having an additional negative influence on pollinator-group evenness. Interestingly, we did not find any direct link between visitation rates and reproductive success for any of the study plant species. Instead, several landscape variables directly affected species seed production, although the effects of landscape on seed production were highly species-specific. Patch complexity, had a negative effect on seed production in two of the four focal species, while other components of the landscape had species-specific effects. Increasing fragmentation of agricultural landscapes affects pollination interactions at the community level and the reproduction of wild plants. However, understanding the effects of fragmentation on seed production requires going beyond estimating visitation rates, since landscape effects on plant reproduction are not always related to overall interaction frequencies.</p>
Pollinator visitation to Na-enriched plants
<p>Plants have evolved a variety of approaches to attract pollinators, including enriching their nectar with essential nutrients. Because sodium is an essential nutrient for pollinators, and sodium concentration in nectar can vary both within and among species, we explored whether experimentally enriching floral nectar with sodium in five plant species would influence pollinator visitation and diversity. We found that the number of visits by pollinators increased on plants with sodium-enriched nectar, regardless of plant species, relative to plants receiving control nectar. Similarly, the number of species visiting plants with sodium-enriched nectar was twice that of controls. Our findings suggest that sodium in floral nectar may play an important but unappreciated role in the ecology and evolution of plant-pollinator mutualisms.</p>
Reduced visitation to buzz-pollinated Cyanella hyacinthoides in the presence of other pollen sources in the hyperdiverse Cape Floristic Region
<p>Many plant species have floral morphologies that restrict access to floral resources, such as pollen or nectar, and only a subset of floral visitors can perform the handling behaviours required to extract restricted resources. Due to the time and energy required to extract resources from morphologically complex flowers, these plant species potentially compete for pollinators with co-flowering plants that have more easily accessible resources. A widespread floral mechanism restricting access to pollen is the presence of tubular anthers that open through small pores or slits (poricidal anthers). Some bees have evolved the capacity to remove pollen from poricidal anthers using vibrations, giving rise to the phenomenon of buzz-pollination. These bee vibrations that are produced for pollen extraction are presumably energetically costly, and to date, few studies have investigated whether buzz-pollinated flowers may be at a disadvantage when competing for pollinators' attention with plant species that present unrestricted pollen resources. Here, we studied Cyanella hyacinthoides (Tecophilaeaceae), a geophyte with poricidal anthers in the hyperdiverse Cape Floristic Region of South Africa, to assess how the composition and relative abundance of flowers with easily accessible pollen affect bee visitation to a buzz-pollinated plant. We found that the number of pollinator species was not influenced by community composition. However, visitation rates to C. hyacinthoides were reduced when the relative abundances of flowers with more accessible resources were high. Visitation rates were strongly associated with petal colour, showing that flower colour is important in mediating these interactions. We conclude that buzz-pollinated plants might be at a competitive disadvantage when many easily accessible pollen sources are available, particularly when competitor species share its floral signals.</p>
Pollinator asynchrony drives the temporal stability of flower visitation rates, but not of plant reproductive success
<p>Data and code of the article titled " Pollinator asynchrony drives the temporal stability of flower visitation rates, but not of plant reproductive success" by Estefanía Tobajas, Virginia Domínguez-García, Francisco P. Molina and Ignasi Bartomeus</p>
Data from: Constructing more informative plant-pollinator networks: visitation and pollen deposition networks in a heathland plant community
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