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Figures 86-93 from: Elsayed AK, Yukawa J, Tokuda M (2018) A taxonomic revision and molecular phylogeny of the eastern Palearctic species of the genera Schizomyia Kieffer and Asteralobia Kovalev (Diptera, Cecidomyiidae, Asphondyliini), with descriptions of five new species of Schizomyia from Japan. ZooKeys 808: 123-160. https://doi.org/10.3897/zookeys.808.29679
Figures 86-93 Schizomyiaasteris. 86 Lateral view of female flagellomere V 87 Lateral view of male flagellomere V 88 Tarsomere V and acromere 89 Ovipositor apex 90 Male terminalia 91 Larval spatula 92 Terminal larval segments dorsally 93 Larval anus. Scale bar: 50 µm.
Figures 63-67 from: Elsayed AK, Yukawa J, Tokuda M (2018) A taxonomic revision and molecular phylogeny of the eastern Palearctic species of the genera Schizomyia Kieffer and Asteralobia Kovalev (Diptera, Cecidomyiidae, Asphondyliini), with descriptions of five new species of Schizomyia from Japan. ZooKeys 808: 123-160. https://doi.org/10.3897/zookeys.808.29679
Figures 63-67 Schizomyiapaederiae. 63 Male terminalia 64 Larval spatula 65 Terminal larval segments dorsally 66 Ventral view of pupal head 67 Pupal prothoracic spiracle. Scale bars: 50 µm (63–65), 100 µm (66, 67).
Figure 74-76 from: Elsayed AK, Yukawa J, Tokuda M (2018) A taxonomic revision and molecular phylogeny of the eastern Palearctic species of the genera Schizomyia Kieffer and Asteralobia Kovalev (Diptera, Cecidomyiidae, Asphondyliini), with descriptions of five new species of Schizomyia from Japan. ZooKeys 808: 123-160. https://doi.org/10.3897/zookeys.808.29679
Figure 74-76 Schizomyiagaliorum. 74 Male terminalia 75 Ventral view of pupal head 76 Pupal prothoracic spiracle. Scale bars: 50 µm (74), 100 µm (75, 76).
Figures 1-4 from: Elsayed AK, Yukawa J, Tokuda M (2018) A taxonomic revision and molecular phylogeny of the eastern Palearctic species of the genera Schizomyia Kieffer and Asteralobia Kovalev (Diptera, Cecidomyiidae, Asphondyliini), with descriptions of five new species of Schizomyia from Japan. ZooKeys 808: 123-160. https://doi.org/10.3897/zookeys.808.29679
Figures 1-4 Galls of Schizomyia spp. 1 Fruit gall induced by S.achyranthesae on Achyranthesbidentata (Amaranthaceae) 2 Inflorescence galls induced by S.castanopsisae on Castanopsissieboldii (Fagaceae) 3 Fruit galls (arrows) induced by S.usubai on Trachelospermumasiaticum (Apocynaceae) 4 A flower bud gall (white arrow) induced by S.paederiae on Paederiafoetida (Rubiaceae) [red arrows indicate normal flower buds].
Figure 50-55 from: Elsayed AK, Yukawa J, Tokuda M (2018) A taxonomic revision and molecular phylogeny of the eastern Palearctic species of the genera Schizomyia Kieffer and Asteralobia Kovalev (Diptera, Cecidomyiidae, Asphondyliini), with descriptions of five new species of Schizomyia from Japan. ZooKeys 808: 123-160. https://doi.org/10.3897/zookeys.808.29679
Figure 50-55 Schizomyiausubai. 50 Male terminalia 51 Larval spatula 52 Larval anus 53 Terminal larval segments dorsally 54 Ventral view of pupal head 55 Pupal prothoracic spiracle. Scale bars: 50 µm (50–53), 100 µm (54, 55).
Figures 12-17 from: Elsayed AK, Yukawa J, Tokuda M (2018) A taxonomic revision and molecular phylogeny of the eastern Palearctic species of the genera Schizomyia Kieffer and Asteralobia Kovalev (Diptera, Cecidomyiidae, Asphondyliini), with descriptions of five new species of Schizomyia from Japan. ZooKeys 808: 123-160. https://doi.org/10.3897/zookeys.808.29679
Figures 12-17 Schizomyiaachyranthesae. 12 Male terminalia 13 Larval spatula 14 Larval anus 15 Terminal larval segment dorsally 16 Ventral view of pupal head 17 Pupal prothoracic spiracle. Scale bars: 50 µm (12–15), 100 µm (16, 17).
Figures 84-85 from: Elsayed AK, Yukawa J, Tokuda M (2018) A taxonomic revision and molecular phylogeny of the eastern Palearctic species of the genera Schizomyia Kieffer and Asteralobia Kovalev (Diptera, Cecidomyiidae, Asphondyliini), with descriptions of five new species of Schizomyia from Japan. ZooKeys 808: 123-160. https://doi.org/10.3897/zookeys.808.29679
Figures 84-85 Schizomyiapaederiae. 84 Male terminalia 85 Ventral view of pupal head and prothorax. Scale bars: 50 µm (84), 200 µm (85).
Figures 30-36 from: Elsayed AK, Yukawa J, Tokuda M (2018) A taxonomic revision and molecular phylogeny of the eastern Palearctic species of the genera Schizomyia Kieffer and Asteralobia Kovalev (Diptera, Cecidomyiidae, Asphondyliini), with descriptions of five new species of Schizomyia from Japan. ZooKeys 808: 123-160. https://doi.org/10.3897/zookeys.808.29679
Figures 30-36 Schizomyiacastanopsisae. 30 Head 31 Ventral view of female flagellomere V 32 Ventral view of male flagellomere V 33 Wing 34 Tarsomere V and acromere 35 Terminal part of female abdomen 36 Ovipositor apex. Scale bars: 50 µm (31, 32, 34–36), 100 µm (30, 33).
Figures 5-11 from: Elsayed AK, Yukawa J, Tokuda M (2018) A taxonomic revision and molecular phylogeny of the eastern Palearctic species of the genera Schizomyia Kieffer and Asteralobia Kovalev (Diptera, Cecidomyiidae, Asphondyliini), with descriptions of five new species of Schizomyia from Japan. ZooKeys 808: 123-160. https://doi.org/10.3897/zookeys.808.29679
Figures 5-11 Schizomyiaachyranthesae. 5 Head 6 Ventral view of female antennal flagellomere V 7 Ventral view of male flagellomere V 8 Wing 9 Tarsomere V and acromere 10 Terminal part of female abdomen 11 Ovipositor apex. Scale bars: 50 µm (6, 7, 9–11), 200 µm (5, 8).
Figure 5 from: Ribera I, Reboleira ASPS (2019) The first stygobiont species of Coleoptera from Portugal, with a molecular phylogeny of the Siettitia group of genera (Dytiscidae, Hydroporinae, Hydroporini, Siettitiina). ZooKeys 813: 21-38. https://doi.org/10.3897/zookeys.813.29765
Figure 5 Habitus of the species of Iberoporus. aI.cermenius (modified from Millán et al. 2014) bI.agnus comb. n. cI.argaensis comb. n. (both modified from Fery 2016).
Figure 6 from: Ribera I, Reboleira ASPS (2019) The first stygobiont species of Coleoptera from Portugal, with a molecular phylogeny of the Siettitia group of genera (Dytiscidae, Hydroporinae, Hydroporini, Siettitiina). ZooKeys 813: 21-38. https://doi.org/10.3897/zookeys.813.29765
Figure 6 Distribution map of the Iberian species of Rhithrodytes and Iberoporus. Key: red star, I.pluto sp. n.; blue diamond, I.cermenius; filled purple circle, I.argaensis comb. n.; empty purple circle, I.agnus comb. n.; black circles, R.bimaculatus (data from Millán et al. 2014).
Figure 3 from: Ribera I, Reboleira ASPS (2019) The first stygobiont species of Coleoptera from Portugal, with a molecular phylogeny of the Siettitia group of genera (Dytiscidae, Hydroporinae, Hydroporini, Siettitiina). ZooKeys 813: 21-38. https://doi.org/10.3897/zookeys.813.29765
Figure 3 Iberoporuspluto sp. n., holotype. a Lateral view (scale bar, 1 mm) b Detail of the sensory setae of pronotum and elytra (both previous to DNA extraction).
Figure 2 from: Ribera I, Reboleira ASPS (2019) The first stygobiont species of Coleoptera from Portugal, with a molecular phylogeny of the Siettitia group of genera (Dytiscidae, Hydroporinae, Hydroporini, Siettitiina). ZooKeys 813: 21-38. https://doi.org/10.3897/zookeys.813.29765
Figure 2 Habitus of Iberoporuspluto sp. n., dorsal view (holotype, after DNA extraction). Scale bar: 1 mm.
Figure 1 from: Ribera I, Reboleira ASPS (2019) The first stygobiont species of Coleoptera from Portugal, with a molecular phylogeny of the Siettitia group of genera (Dytiscidae, Hydroporinae, Hydroporini, Siettitiina). ZooKeys 813: 21-38. https://doi.org/10.3897/zookeys.813.29765
Figure 1 Phylogeny of the Siettitia group of genera, obtained with Bayesian methods. Numbers in nodes, Bayesian posterior probabilities/maximum likelihood bootstrap support (obtained in RAxML); c.n., constrained node in the Bayesian analysis. See Table 1 for details on the specimens.
Supplementary material 1 from: Ottoni FP, Mattos JLO, Katz AM, Bragança PHN (2019) Phylogeny and species delimitation based on molecular approaches on the species of the Australoheros autrani group (Teleostei, Cichlidae), with biogeographic comments. Zoosystematics and Evolution 95(1): 49-64. https://doi.org/10.3897/zse.95.31658
: Data type: Adobe PDF file
Figure 4 from: Ottoni FP, Mattos JLO, Katz AM, Bragança PHN (2019) Phylogeny and species delimitation based on molecular approaches on the species of the Australoheros autrani group (Teleostei, Cichlidae), with biogeographic comments. Zoosystematics and Evolution 95(1): 49-64. https://doi.org/10.3897/zse.95.31658
Figure 4 Time-scaled phylogeny obtained from the Bayesian analysis in BEAST. Values above nodes are mean average ages of the nodes, followed below blue bars representing the 95% highest posterior densities intervals for estimated ages; numbers indicated by arrows are the posterior probability obtained from the Bayesian analysis in MrBayes followed by the node number, corresponding to the node numbers of the Figure 2 and Box 1. PP means posterior probability.
Figure 3 from: Ottoni FP, Mattos JLO, Katz AM, Bragança PHN (2019) Phylogeny and species delimitation based on molecular approaches on the species of the Australoheros autrani group (Teleostei, Cichlidae), with biogeographic comments. Zoosystematics and Evolution 95(1): 49-64. https://doi.org/10.3897/zse.95.31658
Figure 3 Species delimitation tree generated by the Bayesian Poisson Tree Processes (bPTP) model, using a fragment of the mitochondrial gene CYTB. Black lines indicate branching processes among species, red lines indicate branching processes within species. Species of the A.autrani species group delimited through bPTP are indicated with grey bars.
Figure 2 from: Ottoni FP, Mattos JLO, Katz AM, Bragança PHN (2019) Phylogeny and species delimitation based on molecular approaches on the species of the Australoheros autrani group (Teleostei, Cichlidae), with biogeographic comments. Zoosystematics and Evolution 95(1): 49-64. https://doi.org/10.3897/zse.95.31658
Figure 2 Phylogenetic haplotype tree based on Bayesian Inference (BI). Numbers above branches are posterior probability values, and below branches are numbered nodes which represent the combination of nucleotide substitution which define the species (in CBB) or clades. The nucleotide substitutions (CBB) can be checked in box1. Posterior probability value supporting the Australoherosautrani group is indicated in blue, as well as, the three clades herein proposed within this species group are indicated in green. Species of the in-group delimited though the tree based method (WP) are indicated with red bars, as well as, the species of the in-group delimited by nucleotide substitution method (CBB) have their nodes marked in red.
Figure 1 from: Ottoni FP, Mattos JLO, Katz AM, Bragança PHN (2019) Phylogeny and species delimitation based on molecular approaches on the species of the Australoheros autrani group (Teleostei, Cichlidae), with biogeographic comments. Zoosystematics and Evolution 95(1): 49-64. https://doi.org/10.3897/zse.95.31658
Figure 1 Map of the samples obtained for the present work. Circles = Australoherosautrani species group; Red circles = Southern Mata Atlântica clade; Yellow circles = Upper/middle Paraíba do Sul river basin and adjacent drainages clade; Green circles – Northern Mata Atlântica clade; and Square = A. sp. Timbé do Sul. Localities: A.autrani = 1 and 18, A.barbosae = 2, 3, 10, 11 and 19, A.ipatinguensis = 4, A.macacuensis = 5, A.macaensis = 6, A.muriae = 9, A.perdi = 12, A.ribeirae = 14, A.robustus = 7, 8, 15, 16 and 20, A.sanguineus = 17, A.cf.capixaba = 13, and A. sp. Timbé do Sul = 21.
FIGURE 346 in Filling the gaps: descriptions of unnamed species included in the latest molecular phylogeny of Pholcidae (Araneae)
FIGURE 346. Known distribution of Chibchea in Brazil.
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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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