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530 results for “species introduction”
Figure 48 from: Shaverdo H, Sagata K, Balke M (2018) Introduction of the Exocelina casuarina-group, with a key to its representatives and descriptions of 19 new species from New Guinea (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 803: 7-70. https://doi.org/10.3897/zookeys.803.28903
Figure 48 Exocelinamendiensis sp. n. A Median lobe in ventral view B Median lobe in lateral view C Paramere in external view D Male protarsomeres 4–5 in ventral view.
Figures 40-41 from: Shaverdo H, Sagata K, Balke M (2018) Introduction of the Exocelina casuarina-group, with a key to its representatives and descriptions of 19 new species from New Guinea (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 803: 7-70. https://doi.org/10.3897/zookeys.803.28903
Figures 40-41 40Exocelinaheidiae (Balke, 1998) 41E.simbaijimi sp. n. A Median lobe in ventral view B Median lobe in lateral view C Paramere in external view D Male protarsomeres 4–5 in ventral view.
Figures 33-34 from: Shaverdo H, Sagata K, Balke M (2018) Introduction of the Exocelina casuarina-group, with a key to its representatives and descriptions of 19 new species from New Guinea (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 803: 7-70. https://doi.org/10.3897/zookeys.803.28903
Figures 33-34 33Exocelinapiusi sp. n. 34E.sumokedi sp. n. A Median lobe in ventral view B Median lobe in lateral view C Paramere in external view D Male protarsomeres 4–5 in ventral view.
Figures 18-21 from: Shaverdo H, Sagata K, Balke M (2018) Introduction of the Exocelina casuarina-group, with a key to its representatives and descriptions of 19 new species from New Guinea (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 803: 7-70. https://doi.org/10.3897/zookeys.803.28903
Figures 18-21 Habitus and coloration 18Exocelinapseudopusilla sp. n. 19E.simbaiensis sp. n. 20E.menyamya sp. n. 21E.ambua sp. n.
Figure 39 from: Shaverdo H, Sagata K, Balke M (2018) Introduction of the Exocelina casuarina-group, with a key to its representatives and descriptions of 19 new species from New Guinea (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 803: 7-70. https://doi.org/10.3897/zookeys.803.28903
Figure 39 Exocelinadesii (Balke, 1999) A Median lobe in ventral view B Median lobe in lateral view C Paramere in external view D Male protarsomeres 4–5 in ventral view.
Figure 1 from: Shaverdo H, Sagata K, Balke M (2018) Introduction of the Exocelina casuarina-group, with a key to its representatives and descriptions of 19 new species from New Guinea (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 803: 7-70. https://doi.org/10.3897/zookeys.803.28903
Figure 1 Phylogenetic relationships of the Exocelinacasuarina-group based on the MrBayes phylogenetic tree in figure S1 of Toussaint et al. (2015).
Figure 26 from: Shaverdo H, Sagata K, Balke M (2018) Introduction of the Exocelina casuarina-group, with a key to its representatives and descriptions of 19 new species from New Guinea (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 803: 7-70. https://doi.org/10.3897/zookeys.803.28903
Figure 26 Exocelinacasuarina (Balke, 1998) A Median lobe in ventral view B Median lobe in lateral view C Paramere in external view D Male protarsomeres 4–5 in ventral view.
Figure 49 from: Shaverdo H, Sagata K, Balke M (2018) Introduction of the Exocelina casuarina-group, with a key to its representatives and descriptions of 19 new species from New Guinea (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 803: 7-70. https://doi.org/10.3897/zookeys.803.28903
Figure 49 Exocelinakumulensis sp. n. A Median lobe in ventral view B Median lobe in lateral view C Paramere in external view D Male protarsomeres 4–5 in ventral view.
Figures 37-38 from: Shaverdo H, Sagata K, Balke M (2018) Introduction of the Exocelina casuarina-group, with a key to its representatives and descriptions of 19 new species from New Guinea (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 803: 7-70. https://doi.org/10.3897/zookeys.803.28903
Figures 37-38 37Exocelinabewani sp. n. 38E.adelbertensis sp. n. A Median lobe in ventral view B Median lobe in lateral view C Paramere in external view D Male protarsomeres 4–5 in ventral view.
Figures 44-45 from: Shaverdo H, Sagata K, Balke M (2018) Introduction of the Exocelina casuarina-group, with a key to its representatives and descriptions of 19 new species from New Guinea (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 803: 7-70. https://doi.org/10.3897/zookeys.803.28903
Figures 44-45 44Exocelinamenyamya sp. n. 45E.ambua sp. n. A Median lobe in ventral view B Median lobe in lateral view C Paramere in external view D Male protarsomeres 4–5 in ventral view.
Figures 9-14 from: Shaverdo H, Sagata K, Balke M (2018) Introduction of the Exocelina casuarina-group, with a key to its representatives and descriptions of 19 new species from New Guinea (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 803: 7-70. https://doi.org/10.3897/zookeys.803.28903
Figures 9-14 Habitus and coloration 9Exocelinapiusi sp. n. 10E.pusilla sp. n. 11E.sumokedi sp. n. 12E.cyclops sp. n. 13E.bewani sp. n. 14E.adelbertensis sp. n.
Supplementary material 2 from: Egawa C, Koyama A (2023) Temporal trends in the accumulation of alien vascular plant species through intentional and unintentional introductions in Japan. NeoBiota 83: 179-196. https://doi.org/10.3897/neobiota.83.101416
Definitions of subcategories used for escape from confinement
Supplementary material 4 from: Egawa C, Koyama A (2023) Temporal trends in the accumulation of alien vascular plant species through intentional and unintentional introductions in Japan. NeoBiota 83: 179-196. https://doi.org/10.3897/neobiota.83.101416
Temporal trends in first record rates from 1845 to 2000 by subcategory of introduction pathway
Supplementary material 1 from: Egawa C, Koyama A (2023) Temporal trends in the accumulation of alien vascular plant species through intentional and unintentional introductions in Japan. NeoBiota 83: 179-196. https://doi.org/10.3897/neobiota.83.101416
Association between the first record rate and import value
Supplementary material 3 from: Egawa C, Koyama A (2023) Temporal trends in the accumulation of alien vascular plant species through intentional and unintentional introductions in Japan. NeoBiota 83: 179-196. https://doi.org/10.3897/neobiota.83.101416
Generalised additive model (GAM) results
Figure 1 in EVIDENCE OF PARTHENOGENETIC POPULATIONS FROM THE PARATANYTARSUS LACCOPHILUS SPECIES GROUP (DIPTERA: CHIRONOMIDAE) IN THE ALASKAN ARCTIC Abstract Introduction
Figure 1. Map of the field site at Utqiaġvik, Alaska. Individuals of the Paratanytarsus laccophilus species group were taken from the fifteen tundra ponds labeled (red dots). Scale bars = 500 km (inset), and 1 km.
Figure 3. a in EVIDENCE OF PARTHENOGENETIC POPULATIONS FROM THE PARATANYTARSUS LACCOPHILUS SPECIES GROUP (DIPTERA: CHIRONOMIDAE) IN THE ALASKAN ARCTIC Abstract Introduction
Figure 3. a) A freshly emerged, virgin individual of the Paratanytarsus laccophilus species group (arrow) clinging to the mesh lid of the new rearing cup to which it was transferred. The isolated female was then monitored daily for signs of oviposition. b) The pupal exuviae (PE) collected from the larval rearing cup, used to confirm species-group identification. Note the diagnostic patterning on abdominal tergites III and IV (Wiederholm 1986). Scale bar in (b) = 0.5 mm.
Data from: Retracing the routes of introduction of invasive species: the case of the Sirex noctilio woodwasp.
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Hull fouling marine invasive species pose a very low, but plausible, risk of introduction to East Antarctica in climate change scenarios
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Data from: Species introduction promotes hybridization and introgression in Coregonus: is there sign of selection against hybrids?
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Allen Brain Atlas
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
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