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FIGURE 37 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family
FIGURE 37. Lower part of the Maximum Likelihood inference phylogram, upper part of which is depicted on Fig. 36. HT: holotype.
FIGURES 25 – 34 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family
FIGURES 25 – 34. Syncosmetus stheno sp. nov., male holotype from Jizu Shan (Figs. 25 – 27): (25) dorsal view; (26) lateral view; (27) ventral view. Pregenital segment and aedeagus of a paratype from Jizu Shan (Figs. 28 – 30): (28) sternite VIII; (29) tegmen; (30) penis. Male paratype from Gaoligong Shan (Figs. 31 – 34): (31) dorsal view; (32) sternite VIII; (33) tegmen (left) still joined with basal piece (= phallobase; right) through membranes; (34) penis. The apices of sclerites of male abdominal terminalia are oriented to the left. Scale bars: 0.5 mm (Figs. 25 – 27, 31); 0.1 mm (Figs. 28 – 30, 32 – 34).
FIGURES 15 – 21 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family
FIGURES 15 – 21. Syncosmetus medusa sp. nov., male holotype from Emei Shan (Figs. 15 – 17): (15) dorsal view; (16) lateral view, with arrow showing first two elytral keels diverging close to elytral base; (17) ventral view. Pregenital segment and aedeagus of a paratype from the type locality (Figs. 18 – 21): (18) sternite VIII; (19) tegmen; (20) basal piece (= phallobase); (21) penis. The apices of sclerites of male abdominal terminalia are oriented to the left. Scale bars: 0.5 mm (Figs. 15 – 17); 0.1 mm (Figs. 18 – 21).
FIGURES 7 – 14 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family
FIGURES 7 – 14. Syncosmetus euryale sp. nov., male holotype (Figs. 7 – 8) from Gaoligong Shan: (7) dorsal view; (8) lateral view, with large arrow showing the first longitudinal elytral keel extending to about the middle of elytral edge, and small numbered arrows referring to the counting system of elytral keels used in the present work; (9) ventral view; (10) female paratype from Haba Shan. Pregenital segment and aedeagus of a paratype from the type locality (Figs. 11 – 14): (11) sternite VIII; (12) tegmen; (13) basal piece (= phallobase); (14) penis. The apices of sclerites of male abdominal terminalia are oriented to the left. Scale bars: 0.5 mm (Figs. 7 – 10); 0.1 mm (Figs. 11 – 14).
FIGURE 36 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family
FIGURE 36. Upper part of the Maximum Likelihood inference phylogram obtained by using the Maximum Likelihood method based on the General Time Reversible model and using 185 DNA barcodes. The tree with the highest log likelihood is shown. The percentage of trees in which the associated taxa clustered together (= bootstrap) is shown next to the branches.
FIGURES 22 – 24 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family
FIGURES 22 – 24. Syncosmetus perseus sp. nov., female holotype from Gongga Shan: (22) dorsal view; (23) lateral view, with arrow showing united apices of second and third elytral keels; (24) ventral view. Scale bar: 0.5 mm (Figs. 22 – 24).
FIGURES 1 – 6 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family
FIGURES 1 – 6. Scolytocis danae sp. nov., male holotype from Gaoligong Shan: (1) dorsal view; (2) lateral view; (3) ventral view. Aedeagus of the holotype (Figs. 4 – 6): (4) tegmen; (5) basal piece (= phallobase); (6) penis. The apices of sclerites of male abdominal terminalia are oriented to the left. Scale bars: 0.5 mm (Figs. 1 – 3); 0.1 mm (Figs. 4 – 6).
FIGURE 35 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family
FIGURE 35. Known distribution of Xylographellini beetles in the Palaearctic Region outside of Japan.
FIGURE 3 in Description of two final stadium platystictid larvae from Borneo, including that of Drepanosticta? attala Lieftinck, identified using DNA barcoding (Odonata: Zygoptera: Platystictidae)
FIGURE 3. Details of Drepanosticta?attala: (a) mask, dorsal view; (c) dorsal detail of crown-like setae on margin of ligula; (d) ventral detail of caudal appendages; (e)Ight maxilla, ventral view; (g) mandibles ventral view; (i) right antenna, and Platystictidae sp.: (b) mask, dorsal view; (f) right maxilla, ventral view; (h) mandibles ventral view.
FIGURE 1. Neighbour joining COI gene tree using uncorrected p in Description of two final stadium platystictid larvae from Borneo, including that of Drepanosticta? attala Lieftinck, identified using DNA barcoding (Odonata: Zygoptera: Platystictidae)
FIGURE 1. Neighbour joining COI gene tree using uncorrected p–distance for Drepanosticta attala and D. barbatula adults and larva plus related platystictid taxa with Sinosticta hainanense as outgroup. All voucher specimens except that of D. barbatula have a six digit collection number with an RMNH.INS. prefix; this prefix is omitted in the figure for clarity.
FIGURE 4 in Description of the final stadium larvae of Onychargia atrocyana Selys, 1865 from Sarawak, identified using DNA barcoding (Odonata: Zygoptera: Platycnemididae), with an overview of larval characters in the Platycnemididae
FIGURE 4. Posterior details of Onychargia atrocyana: (a) median caudal lamella; (b) right caudal lamella; (c) ventral view of terminal abdominal segments showing female gonapophyses.
FIGURE 3 in Description of the final stadium larvae of Onychargia atrocyana Selys, 1865 from Sarawak, identified using DNA barcoding (Odonata: Zygoptera: Platycnemididae), with an overview of larval characters in the Platycnemididae
FIGURE 3. Anterior details of Onychargia atrocyana: (a) dorsal detail head; (b) ventral detail head and anterior thoracic segments; (c) ventral detail posterior margin of head and supracoxal spurs; (d) detail of antenna; (e) mandibles ventral view; (f) right maxilla ventral view; (g) labial mask dorsal view; (h) detail labial palp in dorsolateral view.
FIGURE 1. Neighbour-joining COI gene tree using uncorrected p in Description of the final stadium larvae of Onychargia atrocyana Selys, 1865 from Sarawak, identified using DNA barcoding (Odonata: Zygoptera: Platycnemididae), with an overview of larval characters in the Platycnemididae
FIGURE 1. Neighbour-joining COI gene tree using uncorrected p-distance for Onychargia atrocyana using Paracnemis alluaudi and Podolestes harrissoni as outgroups. All voucher specimens have a six-digit collection number with an RMNH.INS. prefix; this prefix is omitted in the figure for clarity.
FIGURE 6 in DNA barcoding and regional diversity of understudied Micropeplinae (Coleoptera: Staphylinidae) in Southwest China: phylogenetic implications and a new Micropeplus from Mount Emei
FIGURE 6. Five species of Micropeplinae from China and Vietnam. A–F: three Micropeplus species most closely related to M. jason sp. n., forming the sculptus species-group and inhabiting the Chang Shan Mountain Range (A–B), Mount Gongga (C–D) and the Tam Dao Mountain Range (E–F); G–H: Cerapeplus spp., C. sinensis from the Qin Ling Mountain Range (G) and Cerapeplus sp. from the Tam Dao Mountain Range (H). Phylogenetic position of respective specimens can be found by tracing unique specimen numbers in Fig. 2, except for Micropeplus #0882 from the Cang Shan Mountain Range (A–B), which did not amplify and was not represented in the DNA analysis.
FIGURE 3 in DNA barcoding and regional diversity of understudied Micropeplinae (Coleoptera: Staphylinidae) in Southwest China: phylogenetic implications and a new Micropeplus from Mount Emei
FIGURE 3. Micropeplus jason sp. n. from Mount Emei, Sichuan. A–D: holotype, female, #0907, habitus; E–H: paratype, female, #0906, tergite and sternite 8 with enclosed hemisternites (E), hemisternites (F), tergite (G) and ventrite (H) 8; I–M: paratype, male, #0911, tergite and sternite 8 with enclosed aedeagus (I), aedeagus (J, K), tergite (L) and sternite (M) 8.
FIGURE 7 in DNA barcoding and regional diversity of understudied Micropeplinae (Coleoptera: Staphylinidae) in Southwest China: phylogenetic implications and a new Micropeplus from Mount Emei
FIGURE 7. Adult habitus of representatives of three consecutive sister groups of Micropeplinae, as hypothesised by Newton & Thayer (1995). Body length of Empelus 2.7 mm, Proteinus 2.0 mm and Microsilpha 2.9 mm.
FIGURE 2 in DNA barcoding and regional diversity of understudied Micropeplinae (Coleoptera: Staphylinidae) in Southwest China: phylogenetic implications and a new Micropeplus from Mount Emei
FIGURE 2. Maximum Likelihood inference phylogram of 85 Micropeplinae ingroup specimens from Southwest China and two neighbouring localities using the 658 nt of the mtDNA barcoding CO1 gene fragment. The outgroup clades and terminals are in grey. The nine red terminal clades are those from hyperdiverse Mount Emei. Clades A–G are discussed in the text. The digits at branches separated by a slash (/) are ML and MP bootstrap values, respectively; a dash (-) after a slash denotes five ML clades not recovered in MP analysis. BIN, GDTC and OUT are interim taxonomic clusters explained in Methods. Seven grey boxes indicate mismatches between GDTC and BINs. Insert in the upper left corner shows different backbone tree arrangement recovered in alternative MP analysis.
FIGURE 1 in DNA barcoding and regional diversity of understudied Micropeplinae (Coleoptera: Staphylinidae) in Southwest China: phylogenetic implications and a new Micropeplus from Mount Emei
FIGURE 1. Geographical origin of the ingroup Micropeplinae specimens. Eight sampled localities in Southwest China are in the oval. The red frame denotes hyperdiverse mount Emei with at least ten species of Micropeplinae, including Micropeplus jason sp. n. The number in brackets after the regional names indicates the amount of sifted litter in kilograms, followed by Micropeplinae species diversity of Micropeplus (M) and Cerapeplus (C). We failed to amplify DNA of the single Micropeplus specimen #0882 detected from the Cang Mountain Range and, therefore, the entire locality is not included in the DNA analysis.
FIGURE 5 in DNA barcoding and regional diversity of understudied Micropeplinae (Coleoptera: Staphylinidae) in Southwest China: phylogenetic implications and a new Micropeplus from Mount Emei
FIGURE 5. Ten species of Micropeplinae detected on Mount Emei, Sichuan. A–H: Micropeplus spp.; I: Micropeplus jason sp. n., J: Cerapeplus sp. Phylogenetic position of respective specimens can be found by tracing unique specimen numbers in Fig. 2, except for Cerapeplus #2874, which did not amplify and was not represented in the DNA analysis.
FIGURE 8 in DNA barcoding and regional diversity of understudied Micropeplinae (Coleoptera: Staphylinidae) in Southwest China: phylogenetic implications and a new Micropeplus from Mount Emei
FIGURE 8. Habitus of Micropeplus spp. A–D: M. tesserula ("Ünökö, Ost-Karpat" [= Rodna mountains, Romania], collector and date unknown, CNC); E–H: M. dokuchaevi (#3996, Russia, Magadan region, 26.vi.1990, A.S. Rjabukhin, CNC); I–L: M. porcatus (#2396, "Feistr. Styr." [= unknown locality], Diener, 9.viii.1904, CNC). Numbers indicate elytral striae. Scale bars: 1 mm.
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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.