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datasets available to search
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Dataset results
32 results for “potential pollinators”
FIGURES 5–25 in Microlia cayaponia, a new pollen-feeder species from Brazil (Staphylinidae: Aleocharinae: Hoplandriini) and its potential competition in pollinator activity in Cayaponia plants (Cucurbitaceae)
FIGURES 5–25. Microlia cayaponia sp. nov., paratypes, 5, left mandible (dorsal), 6, left mandible (ventral), 7, mandible, ventrolateral view, with arrow indicating the medial tooth; 8, prementum; 9, labrum; 10, maxilla; tergite VIII (11, up, male;12, bottom, female); sternite VIII (13, up, male;14, bottom, female); 15, sternite X (male); 16, sternite IX (male); 17, sternites X and IX (female, arrow indicating SIX); 18, tergite X (male); 19, tergite X, female; 20, aedeagus; 21, medium lobe of aedeagus; 22, lateral lobe of aedeagus; 23, sponge-like structure of lateral lobe of aedeagus; 24, apex of lateral lobe of aedeagus; 25, spermatheca. Scale bars: 5–7, 11–25, 0.005 mm; 8, 0.0006 mm; 9, 0.002 mm; 10, 0.01 mm.
FIGURES 34–42 in Microlia cayaponia, a new pollen-feeder species from Brazil (Staphylinidae: Aleocharinae: Hoplandriini) and its potential competition in pollinator activity in Cayaponia plants (Cucurbitaceae)
FIGURES 34–42. Microlia cayaponia sp. nov., 34, dorsal habitus (male); 35, sternite VIII (male, rows of three bristles colored purple); 36, sternite VIII (female, rows of two bristles colored purple); 37, tergite VII; 38, tergite VII, detail of bristles at apical margin; 39, sternite IX (male); 40, sternite IX, apex (male); 41, tergite IX (male, one long bristle broken); 42, tergite X (male). Scale bars: 34, 0.1 mm; 35–37, 0.01 mm; 38, 0.001 mm; 39, 41–42, 0.02 mm; 40, 0.003.
FIGURES 3–4 in Microlia cayaponia, a new pollen-feeder species from Brazil (Staphylinidae: Aleocharinae: Hoplandriini) and its potential competition in pollinator activity in Cayaponia plants (Cucurbitaceae)
FIGURES 3–4. Microlia cayaponia sp. nov., paratype, female. 3, lateral habitus; 4, dorsal habitus. About 1.6 mm, from tip of the head to abdominal apex.
FIGURES 51–53 in Microlia cayaponia, a new pollen-feeder species from Brazil (Staphylinidae: Aleocharinae: Hoplandriini) and its potential competition in pollinator activity in Cayaponia plants (Cucurbitaceae)
FIGURES 51–53. Microlia cayaponia sp. nov. on flowers of Cayaponia spp. 51, female flower of C. pilosa; 52, male flower of C. pilosa; 53, female flower of C. cabocla, close to the momentum the peduncle breaks.
FIGURES 29–33 in Microlia cayaponia, a new pollen-feeder species from Brazil (Staphylinidae: Aleocharinae: Hoplandriini) and its potential competition in pollinator activity in Cayaponia plants (Cucurbitaceae)
FIGURES 29–33. Microlia cayaponia sp. nov., head. 29, dorsal; 30, ventral; 31, mentum-submentum; 32, right mandible, front-dorsal view; 33, right mandible, apex, with medial tooth colored purple. Scale bars: 29, 0.03 mm; 30, 0.02 mm; 31–32, 0.01 mm; 32, 0.003 mm.
Data from: Annual flower strips support pollinators and potentially enhance red clover seed yield
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Data from: Direct and pollinator-mediated effects of herbivory on strawberry and the potential for improved resistance
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Data from: Sensitivity of commercial pumpkin yield to potential decline among different groups of pollinating bees
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Data from: Climate warming and the potential extinction of fig wasps, the obligate pollinators of figs
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Data from: A critical analysis of the potential for EU Common Agricultural Policy measures to support wild pollinators on farmland
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Adjacent crop type impacts potential pollinator communities and their pollination services in remnants of natural vegetation.
<p><em><span>Aim:</span></em><span> Pollination plays a crucial role in the conservation of many plant species persisting in fragmented, human-dominated landscapes. Pollinators are known to be instrumental in maintaining genetic diversity and metapopulation dynamics for many plant species and are important for providing ecological services that are essential in agricultural landscapes where populations of native plants are highly isolated. Numerous studies have explored the value of remnant native vegetation for supporting pollination services to crop species; yet the effect of mass-flowering crops on the pollinator communities and the pollination services they provide to native plant communities persisting in fragmented landscapes are less well-understood. Here, we</span><span> assess the influence of the presence and phenology of a mass-flowering crop to pollinator community structure, abundance and pollen load composition in remnant vegetation in complex agricultural landscapes. </span></p> <p><em><span>Location:</span></em><span> South-west Western Australia, Australia.</span></p> <p><em><span>Methods:</span></em><span> </span>We recorded the composition and abundance of insect flower visitors and their pollen loads in isolated remnants of York gum-Jam woodlands adjacent to canola (insect-attracting) or wheat (non-insect-attracting) fields over two years. </p> <p><em>Results:</em> All bees were much more sensitive to adjacent crop type (neighbouring canola or wheat) than non-bee pollinators. Honeybees were the most abundant pollinators in canola fields during peak flowering. Honeybee abundance increased in canola-adjacent reserves post-canola bloom, potentially indicating a movement into reserves as crop flowering waned. Native bees were the most diverse in remnant vegetation. Pollen loads of native bees were more mixed (increased pollen richness and evenness) when sampled next to canola fields compared to wheat fields. </p> <p><em>Main conclusion:</em> The availability of potential insect pollinators to remnant wildflower communities in agricultural landscapes is context dependent. Whether sampled communities were adjacent to wheat or canola in a landscape significantly impacted the abundance of potential pollinators in certain landscape elements, but not others, and the composition of pollen loads carried by these insects. Results offer novel insights about the influence of landscape context on <span>pollinator communities and the potential pollination services available for the conservation of native plant species in highly fragmented agricultural landscapes.</span></p>
Adjacent crop type impacts potential pollinator communities and their pollination services in remnants of natural vegetation.
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