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146 results for “Wet Tropics”
Figure 2 from: Tan MK, Yeo H, Hwang WS (2017) Ground dwelling pygmy grasshoppers (Orthoptera: Tetrigidae) in Southeast Asian tropical freshwater swamp forest prefer wet microhabitats. Journal of Orthoptera Research 26: 73-80. https://doi.org/10.3897/jor.26.14551
Figure 2 - A non-metric multidimensional scaling (NMDS) using Bray-Curtis distance to summarize microhabitat condition data, showing two hulls representing belt transects (1, circle) close to and (2, triangular) far from the main stream. Stress value for first two axes = 0.17.
Figure 1 from: Tan MK, Yeo H, Hwang WS (2017) Ground dwelling pygmy grasshoppers (Orthoptera: Tetrigidae) in Southeast Asian tropical freshwater swamp forest prefer wet microhabitats. Journal of Orthoptera Research 26: 73-80. https://doi.org/10.3897/jor.26.14551
Figure 1 - A non-metric multidimensional scaling (NMDS) using Bray-Curtis distance to summarize microhabitat condition data, indicating the different microhabitat conditions. Stress value for first two axes = 0.17.
Figure 4 from: Tan MK, Yeo H, Hwang WS (2017) Ground dwelling pygmy grasshoppers (Orthoptera: Tetrigidae) in Southeast Asian tropical freshwater swamp forest prefer wet microhabitats. Journal of Orthoptera Research 26: 73-80. https://doi.org/10.3897/jor.26.14551
Figure 4 - A canonical analysis of principal coordinates (CAP) with Euclidean distance to show association of adult assemblage with NMDS1 and NMDS2 representing microhabitat conditions. The circle represents belt transects and cross represents morpho-species.
Figure 1 from: Tan MK, Yeo H, Hwang WS (2017) Ground dwelling pygmy grasshoppers (Orthoptera: Tetrigidae) in Southeast Asian tropical freshwater swamp forest prefer wet microhabitats. Journal of Orthoptera Research 26: 73-80. https://doi.org/10.3897/jor.26.14551
Figure 1 - A non-metric multidimensional scaling (NMDS) using Bray-Curtis distance to summarize microhabitat condition data, indicating the different microhabitat conditions. Stress value for first two axes = 0.17.
Figure 3 from: Tan MK, Yeo H, Hwang WS (2017) Ground dwelling pygmy grasshoppers (Orthoptera: Tetrigidae) in Southeast Asian tropical freshwater swamp forest prefer wet microhabitats. Journal of Orthoptera Research 26: 73-80. https://doi.org/10.3897/jor.26.14551
Figure 3 - Correlation between total abundance of pygmy grasshoppers and dry dicot leaf litter. The model was fitted using generalized linear mixed-effects model using Poisson error structure.
Figure 2 from: Tan MK, Yeo H, Hwang WS (2017) Ground dwelling pygmy grasshoppers (Orthoptera: Tetrigidae) in Southeast Asian tropical freshwater swamp forest prefer wet microhabitats. Journal of Orthoptera Research 26: 73-80. https://doi.org/10.3897/jor.26.14551
Figure 2 - A non-metric multidimensional scaling (NMDS) using Bray-Curtis distance to summarize microhabitat condition data, showing two hulls representing belt transects (1, circle) close to and (2, triangular) far from the main stream. Stress value for first two axes = 0.17.
TABLE 2 in Caridina malanda, a new species of freshwater shrimp (Crustacea: Decapoda Atyidae) from the Wet Tropics World Heritage area, north-eastern Queensland Australia
<p><b>TABLE 2.</b> Morphometric ratios (range) of pereiopods of <i>Caridina malanda</i> <b>sp. nov.</b> Abbreviations: CL = postorbital carapace length, RL = rostrum length, AtL = antennular peduncle length, 2AbD = 2 nd abdominal segment depth, 6AbL = 6 th abdominal segment length, TL = telson length, Dt = dactylus, P = propodus, Cp = carpus, M = merus, D = depth, L = length, W = width. 1, 2, 3, and 5 refer to the corresponding pereiopods.</p><table><tbody><tr><th><b>Attribute</b></th><th><b>Value</b></th></tr></tbody><tbody><tr><th>CD/CL</th><td>0.65–0.85</td></tr><tr><th>RL/CL</th><td>0.27–0.42</td></tr><tr><th>AtL/CL</th><td>0.48–0.68</td></tr><tr><th>2AbD/CL</th><td>0.72–1.13</td></tr><tr><th>6AbL/CL</th><td>0.41–0.53</td></tr><tr><th>6AbL/D</th><td>1.36–1.65</td></tr><tr><th>TL/CL</th><td>0.55–0.70</td></tr><tr><th>Dt1L/Dt1W</th><td>3.0–4.0</td></tr><tr><th>P1L/P1W</th><td>2.0–2.5</td></tr><tr><th>Cp1L/Cp1W</th><td>1.9–2.5</td></tr><tr><th>M1L/M1W</th><td>1.7–2.7</td></tr><tr><th>Dt1L/P1L</th><td>0.5–0.6</td></tr><tr><th>Cp1L/P1L</th><td>0.6–0.9</td></tr><tr><th>M1L/P1L</th><td>0.8–1.1</td></tr><tr><th>Dt2L/Dt2W</th><td>4.5–5.1</td></tr><tr><th>P2L/P2W</th><td>2.6–3.2</td></tr><tr><th>Cp2L/Cp2W</th><td>5.0–6.0</td></tr><tr><th>M2L/M2W</th><td>4.7–5.7</td></tr><tr><th>Dt2L/P2L</th><td>0.6–0.7</td></tr><tr><th>Cp2L/P2L</th><td>1.1–1.5</td></tr><tr><th>M2L/P2L</th><td>0.7–1.4</td></tr><tr><th>P3L/P3/W</th><td>8.5–9.1</td></tr><tr><th>Cp3L/Cp3W</th><td>3.8–4.2</td></tr><tr><th>M3L/M3W</th><td>4.7–6.9</td></tr><tr><th>Cp3L/P3L</th><td>0.5–0.7</td></tr><tr><th>M3L/P3L</th><td>0.9–1.2</td></tr><tr><th>P5L/P5W</th><td>9.5–13.2</td></tr><tr><th>Cp5L/Cp5W</th><td>4.7–5.6</td></tr><tr><th>M5L/M5W</th><td>6.3–6.6</td></tr><tr><th>Cp5L/P5L</th><td>0.5–0.7</td></tr><tr><th>M5L/P5L</th><td>0.7–1.0</td></tr></tbody></table><p><b>TABLE 2.</b> Morphometric ratios (range) of pereiopods of <i>Caridina malanda</i> <b>sp. nov.</b> Abbreviations: CL = postorbital carapace length, RL = rostrum length, AtL = antennular peduncle length, 2AbD = 2 <sup>nd</sup> abdominal segment depth, 6AbL = 6 <sup>th</sup> abdominal segment length, TL = telson length, Dt = dactylus, P = propodus, Cp = carpus, M = merus, D = depth, L = length, W = width. 1, 2, 3, and 5 refer to the corresponding pereiopods.</p>
Figure 9 from: Jay KR, Popkin-Hall ZR, Coblens MJ, Oberski JT, Sharma PP, Boyer SL (2016) New species of Austropurcellia, cryptic short-range endemic mite harvestmen (Arachnida, Opiliones, Cyphophthalmi) from Australia's Wet Tropics biodiversity hotspot. ZooKeys 586: 37-93. https://doi.org/10.3897/zookeys.586.6774
Figure 9 - Austropurcellia finniganensis sp. n., males. A spiracle, QM 102447, paratype B ozophore, QM berlesate 981. Scale bar: 20 μm (A); 50 μm (B).
Figure 8 from: Jay KR, Popkin-Hall ZR, Coblens MJ, Oberski JT, Sharma PP, Boyer SL (2016) New species of Austropurcellia, cryptic short-range endemic mite harvestmen (Arachnida, Opiliones, Cyphophthalmi) from Australia's Wet Tropics biodiversity hotspot. ZooKeys 586: 37-93. https://doi.org/10.3897/zookeys.586.6774
Figure 8 - Austropurcellia finniganensis sp. n., paratype male, QM 102447. A dorsal view of posterior tergites B anal plate. Scale bars: 100 μm.
Figure 7 from: Jay KR, Popkin-Hall ZR, Coblens MJ, Oberski JT, Sharma PP, Boyer SL (2016) New species of Austropurcellia, cryptic short-range endemic mite harvestmen (Arachnida, Opiliones, Cyphophthalmi) from Australia's Wet Tropics biodiversity hotspot. ZooKeys 586: 37-93. https://doi.org/10.3897/zookeys.586.6774
Figure 7 - Austropurcellia finniganensis sp. n., males. A dorsal view, QM berlesate 981 B ventral view, QM 102447, paratype. Scale bar: 0.5 μm (A); 200 μm (B).
Figure 38 from: Jay KR, Popkin-Hall ZR, Coblens MJ, Oberski JT, Sharma PP, Boyer SL (2016) New species of Austropurcellia, cryptic short-range endemic mite harvestmen (Arachnida, Opiliones, Cyphophthalmi) from Australia's Wet Tropics biodiversity hotspot. ZooKeys 586: 37-93. https://doi.org/10.3897/zookeys.586.6774
Figure 38 - Austropurcellia riedeli sp. n., male, MCZ IZ 69026. A dorsal view of posterior tergites B anal plate. Scale bars: 100 μm.
Figure 37 from: Jay KR, Popkin-Hall ZR, Coblens MJ, Oberski JT, Sharma PP, Boyer SL (2016) New species of Austropurcellia, cryptic short-range endemic mite harvestmen (Arachnida, Opiliones, Cyphophthalmi) from Australia's Wet Tropics biodiversity hotspot. ZooKeys 586: 37-93. https://doi.org/10.3897/zookeys.586.6774
Figure 37 - Austropurcellia riedeli sp. n., male, MCZ IZ 69026. A dorsal view B ventral view. Scale bar: 200 μm (A); 500 μm (B).
Figure 5 from: Jay KR, Popkin-Hall ZR, Coblens MJ, Oberski JT, Sharma PP, Boyer SL (2016) New species of Austropurcellia, cryptic short-range endemic mite harvestmen (Arachnida, Opiliones, Cyphophthalmi) from Australia's Wet Tropics biodiversity hotspot. ZooKeys 586: 37-93. https://doi.org/10.3897/zookeys.586.6774
Figure 5 - Austropurcellia megatanka sp. n., tarsus and metatarsus IV with diagnostic features labeled. A male tarsus and metatarsus IV, lateral view, showing adenostyle pore and setae B male tarsus and metatarsus IV, medial view, showing adenostyle and long seta. Scale bars: 100 μm.
Figure 40 from: Jay KR, Popkin-Hall ZR, Coblens MJ, Oberski JT, Sharma PP, Boyer SL (2016) New species of Austropurcellia, cryptic short-range endemic mite harvestmen (Arachnida, Opiliones, Cyphophthalmi) from Australia's Wet Tropics biodiversity hotspot. ZooKeys 586: 37-93. https://doi.org/10.3897/zookeys.586.6774
Figure 40 - Austropurcellia riedeli sp. n., male, MCZ IZ 69026. A chelicera B palp. Scale bars: 100 μm.
Figure 43 from: Jay KR, Popkin-Hall ZR, Coblens MJ, Oberski JT, Sharma PP, Boyer SL (2016) New species of Austropurcellia, cryptic short-range endemic mite harvestmen (Arachnida, Opiliones, Cyphophthalmi) from Australia's Wet Tropics biodiversity hotspot. ZooKeys 586: 37-93. https://doi.org/10.3897/zookeys.586.6774
Figure 43 - Ventral posterior morphology and anal plate of all five species from the north-central WT and one species from the southern WT (Austropurcellia clousei). Two new species are shown on top row, with four previously described species below. A Austropurcellia monteithi, from Kahlpahlim Rock (Lambs Head) Trail trailhead, QM 102443 (paratype) B Austropurcellia culminis from Bellenden Ker Summit, MHNG C Austropurcellia vicina from Crystal Cascades, ANIC berlesate 679 D Austropurcellia nuda, from Black Mountain, QM berlesate 38118 E Austropurcellia scoparia from Mt Spurgeon, QM S35834 F Austropurcellia clousei from Paluma Range National Park, MCZ IZ 132339 (paratype). Scale bars: 100 μm.
Figure 30 from: Jay KR, Popkin-Hall ZR, Coblens MJ, Oberski JT, Sharma PP, Boyer SL (2016) New species of Austropurcellia, cryptic short-range endemic mite harvestmen (Arachnida, Opiliones, Cyphophthalmi) from Australia's Wet Tropics biodiversity hotspot. ZooKeys 586: 37-93. https://doi.org/10.3897/zookeys.586.6774
Figure 30 - Austropurcellia nuda sp. n., holotype male, QM 102444. A dorsal view B ventral view C lateral view. Scale bars: 0.5 mm.
Figure 29 from: Jay KR, Popkin-Hall ZR, Coblens MJ, Oberski JT, Sharma PP, Boyer SL (2016) New species of Austropurcellia, cryptic short-range endemic mite harvestmen (Arachnida, Opiliones, Cyphophthalmi) from Australia's Wet Tropics biodiversity hotspot. ZooKeys 586: 37-93. https://doi.org/10.3897/zookeys.586.6774
Figure 29 - Austropurcellia monteithi sp. n., paratype male and female, QM 102443. A male tarsus and metatarsus I B male tarsus and metatarsus II C male tarsus and metatarsus III D male tarsus and metatarsus IV, lateral view E male tarsus and metatarsus IV, medial view F female tarsus and metatarsus IV. Scale bars: 100 μm.
Figure 28 from: Jay KR, Popkin-Hall ZR, Coblens MJ, Oberski JT, Sharma PP, Boyer SL (2016) New species of Austropurcellia, cryptic short-range endemic mite harvestmen (Arachnida, Opiliones, Cyphophthalmi) from Australia's Wet Tropics biodiversity hotspot. ZooKeys 586: 37-93. https://doi.org/10.3897/zookeys.586.6774
Figure 28 - Austropurcellia monteithi sp. n., paratype male, QM 102443. A chelicera B palp. Scale bar: 200 μm (A); 200 μm (B).
Figure 24 from: Jay KR, Popkin-Hall ZR, Coblens MJ, Oberski JT, Sharma PP, Boyer SL (2016) New species of Austropurcellia, cryptic short-range endemic mite harvestmen (Arachnida, Opiliones, Cyphophthalmi) from Australia's Wet Tropics biodiversity hotspot. ZooKeys 586: 37-93. https://doi.org/10.3897/zookeys.586.6774
Figure 24 - Austropurcellia monteithi sp. n., holotype male, QM 102442. A dorsal view B ventral view C lateral view. Scale bars: 0.5 mm.
Figure 25 from: Jay KR, Popkin-Hall ZR, Coblens MJ, Oberski JT, Sharma PP, Boyer SL (2016) New species of Austropurcellia, cryptic short-range endemic mite harvestmen (Arachnida, Opiliones, Cyphophthalmi) from Australia's Wet Tropics biodiversity hotspot. ZooKeys 586: 37-93. https://doi.org/10.3897/zookeys.586.6774
Figure 25 - Austropurcellia monteithi sp. n., paratype male, QM 102443. A dorsal view B ventral view. Scale bar: 200 μm (A); 500 μm (B).
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