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2,196 results for “water mite”
Figures 25–29. Hydryphantes prolongatus Thon, 1899 in On the systematic of the water mite Hydryphantes prolongatus Thon, 1899 (Acari, Hydrachnidia, Hydryphantidae)
Figures 25–29. Hydryphantes prolongatus Thon, 1899, adults: 25 – frontal plate; 26 – coxal plates; 27 – genital field; 28 –capitulum; 29 – pedipalp. Scale bars: 25–26, 28 = 200µm, 27, 29 = 100µm.
Figures 11–12 in A new water mite species of the genus Hydryphantes Koch (Acari, Hydrachnidia, Hydryphantidae) from the Yaroslavl Province of Russia
Figures 11–12. Hydryphantes ildensis sp. n., larva: 11 – dorsal view; 22 – ventral view. Scale bar: 50 μm.
Figures 13–22 in A new water mite species of the genus Hydryphantes Koch (Acari, Hydrachnidia, Hydryphantidae) from the Yaroslavl Province of Russia
Figures 13–22. Hydryphantes ildensis sp. n., larva: 13–14 – excretory pore plate; 15 – basal segment of chelicera, dorsal view, 16 – chela, lateral view; 17 – pedipalp, lateral view; 18 – I–Leg-4–6; 19 – II–Leg–4–6; 20 – III–Leg–4–6; 21 – claws of leg I; 22 – claws of leg III. Simple setae on I–III–Leg-4–6 are not shown. Scale bars: 13–14, 16–17, 18– 22 = 20 μm, 15 = 50 μm.
Figure 3 in New records of water mites from the Balkans revealed by DNA barcoding (Acari, Hydrachnidia)
Figure 3. Prespa Lake at Oteševo, North Macedonia - sampling site of Torrenticola meridionalis (inset). Photo by V. Pešić.
Figure 1 in New records of water mites from the Balkans revealed by DNA barcoding (Acari, Hydrachnidia)
Figure 1. Distribution of Wettina lacustris and Hygrobates mediterraneus. (MNE: Montenegro; BiH: Bosnia and Herzegovina).
Figure 2 in A new species of the water mite genus Austraturus K.O. Viets, 1978 from Victoria, Australia (Acari: Aturidae: Notoaturinae)
Figure 2. Photographs of Austraturus carewae sp. nov, ♂ holotype: A, idiosoma, dorsal view; B, idiosoma, ventral view.
Figure 1 in A new species of the water mite genus Austraturus K.O. Viets, 1978 from Victoria, Australia (Acari: Aturidae: Notoaturinae)
Figure 1. Austraturus carewae sp. nov, ♂ holotype: A, idiosoma, dorsal view; B, idiosoma, ventral view; C, palp; D, right IV-leg (inset: IV-L-4, 2x enlarged); E, left IV-L-3-6 (inset: IV-L-4, 2x enlarged). Scale bars = 100 μm.
Figure 3 in New records of water mite (Acari, Hydrachnidia, Torrenticolidae) species for the Turkish fauna
Figure 3. Torrenticola (Megapalpis) persica (male). A. Idiosoma, dorsal view, B. Idiosoma, ventral view, C. Gnatosoma, D. I-L-5-6 (scale bars = 100).
Figure 2 in New records of water mite (Acari, Hydrachnidia, Torrenticolidae) species for the Turkish fauna
Figure 2. Torrenticola (s.str.) laskai (female). A. Idiosoma, dorsal view, B. Idiosoma, ventral view, C. Gnatosoma, D. Palp, medial view (scale bars = 100).
Figure 1 in New records of water mite (Acari, Hydrachnidia, Torrenticolidae) species for the Turkish fauna
Figure 1. Torrenticola (s.str.) laskai (male). A. Dorsal shield, B. Idiosoma, ventral view, C. Palp, medial view (scale bars = 100).
Figure 5 in Contribution to the water mite (Acari, Hydrachnidia) fauna of Turkey
Figure 5. Nilotonia (Dartonia) rizeensis, deutonymph: A. Idiosoma, dorsal view, B. Idiosoma, ventral view, C. Palp medial view, D. Palp, lateral view, E. IV-L-6; Female: F. Palp, medial view, G. IV-L-6 (Scale bars = 100 µm).
Figure 4. Parathyas colligera, A in Contribution to the water mite (Acari, Hydrachnidia) fauna of Turkey
Figure 4. Parathyas colligera, A. Frontal area of male, B-C. Frontal area of female (arrows indicate prefrontale variability in females).
Figure 2 in Contribution to the water mite (Acari, Hydrachnidia) fauna of Turkey
Figure 2. Parathyas colligera, male: A. Idiosoma, dorsal view, B. Genital field, C. Excretory pore (Scale bars = 100 µm).
Figure 4 in New records of the water mite genus Arrenurus Dugès, 1834 from South America (Acari: Hydrachnidia: Arrenuridae), with the description of five new species and one new subspecies
Figure 4 Arrenurus deltensis Rosso de Ferradas, male. A – dorsum; B – venter. Scale bars = 100 µm.
Figure 1 Arrenurus parviscutatus K in New records of the water mite genus Arrenurus Dugès, 1834 from South America (Acari: Hydrachnidia: Arrenuridae), with the description of five new species and one new subspecies
Figure 1 Arrenurus parviscutatus K. Viets, male, dorsum. Scale bar = 100 µm.
The effects of water-stress, temperature, and plant traits on the outbreak potential of a specialist and generalist spider mite species (Acari: Tetranychidae)
<p>The host-generalist two-spotted spider mite [<em>Tetranychus</em> <em>urticae</em> (Acari: Tetranychidae); TSM] and host-specialist Banks grass mite [<em>Oligonychus</em> <em>pratensis</em> (Acari: Tetranychidae); BGM] are common pests of corn (<em>Zea</em> <em>mays</em> L.) in the arid western United States. Climate warming and decreased precipitation may promote conditions favored by these spider mites. However, rapid evolution of spider mite resistance to commercially available acaricides is driving the need for alternative solutions for managing outbreaks. Planting of drought-tolerant corn hybrids has been proposed to be a dual-purpose strategy for mitigating water deficits for irrigation and reducing leaf conditions favorable for BGM outbreaks. However, understanding of the mechanisms responsible for reducing the BGM in the field is lacking, and determining whether outbreaks of the TSM can also be averted using drought-tolerant corn is a pressing concern. We conducted a two-year field study testing a drought-tolerant corn hybrid and an analogous drought-susceptible hybrid under water-stress with artificially-infested spider mite populations. Drought-tolerant corn had larger stem diameter, more massive cobs, and greater leaf water mass compared to the drought-susceptible corn under water stress. We also found that the BGM populations were reduced on drought-tolerant plants under water-stress, as expected, but we found an opposite trend in the TSM. Lastly, water-stressed leaves were warmer, transpired less, and had higher carbon concentration, which contributed to larger investment in eggs and growth in the BGM. We anticipate that further evaluation of irrigation and crop drought-tolerance in management of agriculture systems for multiple pest species will be increasingly impactful in arid regions.</p>
Fig. 1 in New Water Mite Species Of The Genus Kongsbergia (Acari, Hydrachnidia, Aturidae) From Turkey
Fig. 1. Habitat of Kongsbergia ermani sp. n. Fig. 2. Habitat of Kongsbergia largaiollii
Fig. 4 in New Water Mite Species Of The Genus Kongsbergia (Acari, Hydrachnidia, Aturidae) From Turkey
Fig. 4. Kongsbergia ermani sp. n., male a) gnathosoma b) IV-L outside view c) IV-L inside view
Fig. 3 in New Water Mite Species Of The Genus Kongsbergia (Acari, Hydrachnidia, Aturidae) From Turkey
Fig. 3. Kongsbergia ermani sp. n., male a) idiosoma, ventral view b) idiosoma, dorsal view
Fig. 2 in New Water Mite Species Of The Genus Kongsbergia (Acari, Hydrachnidia, Aturidae) From Turkey
Fig. 2. Habitat of Kongsbergia largaiollii
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.