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Figure 1 in Report of new invasive scale insects (Hemiptera: Coccoidea), Crypticerya multicicatrices Kondo and Unruh (Monophlebidae) and Maconellicoccus hirsutus (Green) (Pseudococcidae), on the islands of San Andres and Providencia, Colombia, with an updated taxonomic key to iceryine scale insects of South America
Figure 1. Adult females (center) and nymphs (on each side) of Crypticerya multicicatrices on coconut leaf. Notice empty egg chorions on median slit (arrowed) on ovisac from where first-instar nymphs exit ovisac.
Figure 4 in Report of new invasive scale insects (Hemiptera: Coccoidea), Crypticerya multicicatrices Kondo and Unruh (Monophlebidae) and Maconellicoccus hirsutus (Green) (Pseudococcidae), on the islands of San Andres and Providencia, Colombia, with an updated taxonomic key to iceryine scale insects of South America
Figure 4. Natural enemies of C. multicicatrices. A. Encyrtid sp. 1. B. Encyrtid sp. 2. C. Left. Diomus? sp. Center and Right. Delphastus? sp. D. Delphastus? sp. on ovisac of C. multicicatrices preying upon eggs (see arrow). Photos A‒C by TK; D by R. L. Bermúdez.
Figure 3. Crypticerya multicicatrices. A in Report of new invasive scale insects (Hemiptera: Coccoidea), Crypticerya multicicatrices Kondo and Unruh (Monophlebidae) and Maconellicoccus hirsutus (Green) (Pseudococcidae), on the islands of San Andres and Providencia, Colombia, with an updated taxonomic key to iceryine scale insects of South America
Figure 3. Crypticerya multicicatrices. A. On Cajanus cajan. B. On Spondias purpurea. C. On Tectona grandis. D. On Citrus latifolia. E. On Delonix regia. F. On a palm. G. On Carica papaya. H. On Artocarpus altilis. Notice sooty mold on leaves. I. Dieback of Erythrina variegata street trees.
Figures 1–2. Drapetes chiricahua, new species. 1 in A new species of Drapetes Megerle (Coleoptera: Elateridae), with taxonomic summaries and a key to the species of northern North America
Figures 1–2. Drapetes chiricahua, new species. 1) Adult male, dorsal habitus. 2) Aedeagus, dorsal aspect.
Figures 9–10. Drapetes clarki. 9 in A new species of Drapetes Megerle (Coleoptera: Elateridae), with taxonomic summaries and a key to the species of northern North America
Figures 9–10. Drapetes clarki. 9) Drapetes clarki drawing from Bonvouloir (1861). 10) Original labels from syntype at MNHN.
Figures 3–8. Drapetes species, dorsal habitus. 3 in A new species of Drapetes Megerle (Coleoptera: Elateridae), with taxonomic summaries and a key to the species of northern North America
Figures 3–8. Drapetes species, dorsal habitus. 3) Drapetes cylindricus, holotype (image courtesy of the Museum of Comparative Zoology, Harvard University, with permission). 4) Drapetes exstriatus. 5) Drapetes niger. 6) Drapetes plagiatus. 7) Drapetes quadripustulatus. 8) Drapetes rubricollis.
Figs 146–151 in Taxonomic review of the plant bug genera Amapacylapus and Cylapus with descriptions of two new species and a key to the genera of Cylapini (Hemiptera: Heteroptera: Miridae)
Figs 146–151. Scanning electron micrographs of Cylapus tucuruiensis Carvalho, 1989 (146, 147), Peltidocylapus scutellaris (Poppius, 1909) (148, 149), and Valdasus sp. (150, 151): 146, 149, 151 – thoracic pleura; 147 – pretarsal structure; 148, 150 – lateral view. Abbreviations: ea = evaporative areas; msp = metathoracic spiracle; pc = posterior carina; per = peritreme.
Figs 110–119 in Taxonomic review of the plant bug genera Amapacylapus and Cylapus with descriptions of two new species and a key to the genera of Cylapini (Hemiptera: Heteroptera: Miridae)
Figs 110–119. Male genitalia of Cylapus stellatus (Distant, 1883) (110–114) and C. striatus Reuter, 1907 (115–119): 110, 115 – endosoma; 111, 116 – left paramere (dorsal view); 112, 117 – left paramere (right lateral view); 113, 118 – apical process of left paramere; 114, 119 – right paramere (left lateral view). Abbreviations: bpr = basal process; dss = sclerotized portion of ductus seminis inside endosoma; es1–4 = endosomal sclerites 1–4; pb = paramere body; sg = secondary gonopore; sl = sensory lobe. Scale bars: 0.1 mm.
Figs 97–106 in Taxonomic review of the plant bug genera Amapacylapus and Cylapus with descriptions of two new species and a key to the genera of Cylapini (Hemiptera: Heteroptera: Miridae)
Figs 97–106. Male genitalia of Cylapus marginicollis (Distant, 1883) (97–101) and C. ruficeps Bergroth, 1922 (102–106): 97, 102 – endosoma; 98, 103 – left paramere (dorsal view); 99, 104 – left paramere (right lateral view); 100, 105 – apical process of left paramere; 101, 106 – right paramere (left lateral view). Abbreviations: bpr = basal process; dss = sclerotized portion of ductus seminis inside endosoma; es1–4 = endosomal sclerites 1–4; pb = paramere body; sg = secondary gonopore; sl = sensory lobe. Scale bars: 0.1 mm.
Figs 76–79 in Taxonomic review of the plant bug genera Amapacylapus and Cylapus with descriptions of two new species and a key to the genera of Cylapini (Hemiptera: Heteroptera: Miridae)
Figs 76–79. Scanning electron micrographs of Cylapus antennatus Carvalho & Fontes, 1968 (76–77) and C. citus Bergroth, 1922 (78–79): 76–77 – antennal segment II; 78 – metafemur; 79 – pretarsal structure.
Figs 107–109 in Taxonomic review of the plant bug genera Amapacylapus and Cylapus with descriptions of two new species and a key to the genera of Cylapini (Hemiptera: Heteroptera: Miridae)
Figs 107–109. Scanning electron micrographs of Cylapus striatus Reuter, 1907. 107 – dorsal habitus (♀); 108 – lateral view (♀); 109 – pretarsal structure. Abbreviations: ea = evaporative areas; msp = metathoracic spiracle; pc = posterior carina; per = peritreme.
Figs 56–65 in Taxonomic review of the plant bug genera Amapacylapus and Cylapus with descriptions of two new species and a key to the genera of Cylapini (Hemiptera: Heteroptera: Miridae)
Figs 56–65. Lateral view of Cylapus species: 56 – C. amazonicus Carvalho, 1989 (J); 57 – C. antennatus Carvalho & Fontes, 1968 (J); 58 – C. citus Bergroth, 1922 (♀); 59 – C. luridus sp. nov. (J); 60 – C. marginicollis (Distant, 1883) (J); 61 – C. ruficeps Bergroth, 1922 (♀); 62 – C. stellatus (Distant, 1883) (♀); 63 – C. striatus Reuter, 1907 (♀); 64 – C. tenuicornis (Say, 1832) (J); 65 – C. tucuruiensis Carvalho, 1989 (J).
Figs 36–40 in Taxonomic review of the plant bug genera Amapacylapus and Cylapus with descriptions of two new species and a key to the genera of Cylapini (Hemiptera: Heteroptera: Miridae)
Figs 36–40. Dorsal habitus photographs of Cylapus species: 36 – C. amazonicus Carvalho, 1989 (J); 37–39 – C. antennatus Carvalho & Fontes, 1968 (37 – J holotype, 38 – J, 39 – ♀); 40 – C. citus Bergroth, 1922 (J).
Figs 135–144 in Taxonomic review of the plant bug genera Amapacylapus and Cylapus with descriptions of two new species and a key to the genera of Cylapini (Hemiptera: Heteroptera: Miridae)
Figs 135–144. Male genitalia of Cylapus tenuicornis (Say, 1832) (135–139) and C. tucuruiensis Carvalho, 1989 (140–144): 135, 140 – endosoma; 136, 141 – left paramere (dorsal view); 137, 142 – left paramere (right lateral view); 138, 143 – apical process of left paramere; 139, 144 – right paramere (left lateral view). Abbreviations: bpr = basal process; dss = sclerotized portion of ductus seminis inside endosoma; es1–4 = endosomal sclerites 1–4; pb = paramere body; sg = secondary gonopore; sl = sensory lobe. Scale bars: 0.1 mm.
Figs 66–75 in Taxonomic review of the plant bug genera Amapacylapus and Cylapus with descriptions of two new species and a key to the genera of Cylapini (Hemiptera: Heteroptera: Miridae)
Figs 66–75. Male genitalia of Cylapus amazonicus Carvalho, 1989 (66–70) and Cylapus antennatus Carvalho & Fontes, 1968 (71–75): 66, 71 – endosoma; 67, 72 – left paramere (dorsal view); 68, 73 – left paramere (right lateral view); 69, 74 – apical process of left paramere; 70, 75 – right paramere (left lateral view). Abbreviations: bpr = basal process; dss = sclerotized portion of ductus seminis inside endosoma; es1–4 = endosomal sclerites 1–4; pb = paramere body; sg = secondary gonopore; sl = sensory lobe. Scale bars: 0.1 mm.
Figs 23–26 in Taxonomic review of the plant bug genera Amapacylapus and Cylapus with descriptions of two new species and a key to the genera of Cylapini (Hemiptera: Heteroptera: Miridae)
Figs 23–26. Hemelytron of the species of Amapacylapus Carvalho & Fontes, 1968. 23 – A. amapariensis Carvalho & Fontes, 1968; 24 – A. englemani Carvalho, 1991; 25 – A. labeculosus Bergroth, 1922; 26 – A. unicolor sp. nov. Abbreviations: p1–p7 = yellowish patches; pc = posterior carina; per = peritreme.
Figs 80–89 in Taxonomic review of the plant bug genera Amapacylapus and Cylapus with descriptions of two new species and a key to the genera of Cylapini (Hemiptera: Heteroptera: Miridae)
Figs 80–89. Male genitalia of Cylapus citus Bergroth, 1922 (80–84) and C. luridus sp. nov. (85–89): 80, 85 – endosoma; 81, 86 – left paramere (dorsal view); 82, 87 – left paramere (right lateral view); 83, 88 – apical process of left paramere; 84, 89 – right paramere (left lateral view). Abbreviations: bpr = basal process; dss = sclerotized portion of ductus seminis inside endosoma; es1–4 = endosomal sclerites 1–4; pb = paramere body; sg = secondary gonopore; sl = sensory lobe. Scale bars: 0.1 mm.
Figs 8–11 in Taxonomic review of the plant bug genera Amapacylapus and Cylapus with descriptions of two new species and a key to the genera of Cylapini (Hemiptera: Heteroptera: Miridae)
Figs 8–11. Scanning electron micrographs of Amapacylapus amapariensis Carvalho & Fontes, 1968: 8 – dorsal habitus; 9 – lateral view; 10 – thoracic pleura; 11 – protarsus. Abbreviations: ea = evaporative areas; msp = metathoracic spiracle; pc = posterior carina; per = peritreme.
Figs 12–22 in Taxonomic review of the plant bug genera Amapacylapus and Cylapus with descriptions of two new species and a key to the genera of Cylapini (Hemiptera: Heteroptera: Miridae)
Figs 12–22. Male genitalia of Amapacylapus amapariensis Carvalho & Fontes, 1968 (12–16) and A. unicolor sp. nov. (17–22): 12, 18 – endosoma; 13, 19 – left paramere (dorsal view); 14, 20 – left paramere (right lateral view); 15, 21 – apical process of left paramere; 16, 22 – right paramere (left lateral view); 17 – genital capsule. Abbreviations: bpr = basal process; es = endosomal sclerite; pb = paramere body; pr = proctiger; ps = paramere socket; sl = sensory lobe. Scale bars: 0.1 mm.
Fig. 8 in Morphological trait evolution in Solanum (Solanaceae): Evolutionary lability of key taxonomic characters
Fig. 8. Evolution of the most conserved morphological traits in Solanum with <10 transitions based on species-level analysis using stochastic character mapping. A, Pseudostipules; B, Enlarged anther connectives; C, Anther modifications; D, Pedicel insertion. Results from the best model are shown for each character (see Table 1 and suppl. Table S4 for details) based on 200 simulations. The topology used for mapping was derived from a supermatrix phylogeny with nine loci (two nuclear and seven plastid loci; Gagnon & al., 2022) with 725 species sampled and coded for each trait (58% of all species). All minor clades are labelled; tips reflect the crown nodes of each minor clade. Piecharts indicate likelihood of modelled ancestral states along the nodes, and frequency bars (tips) reflect proportion of species sampled within each clade with each state.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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
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.