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FIGURE 8 in A new coccoid family (Hemiptera: Coccomorpha) for an unusual species of scale insect on Podocarpus macrophyllus (Podocarpaceae) from southern China
FIGURE 8. Third-instar nymph of male Qinococcus podocarpus Wu, sp. n. Notes: A: antenna; B: dorsum of scape and pedicel of antenna; C: thoracic spiracle; D: abdominal spiracle; E: leg; F: claw; G: U-shaped sclerotization; H: anus; I: simple pore; J: multilocular pore with 3 central loculi in a triangle; K: multilocular pore with 2 central loculi; L: hair at distal end of tibia; M: spine.
FIGURE 6 in A new coccoid family (Hemiptera: Coccomorpha) for an unusual species of scale insect on Podocarpus macrophyllus (Podocarpaceae) from southern China
FIGURE 6. Second-instar nymph (cyst) of male Qinococcus podocarpus Wu, sp. n. (left: dorsum; right: venter). Notes: A: antenna; B: thoracic spiracle; C: abdominal spiracle; D: flagellate seta; E: simple pore; F: multilocular pores each with 4–7 central loculi; G: spine; H: anal ring.
FIGURE 5 in A new coccoid family (Hemiptera: Coccomorpha) for an unusual species of scale insect on Podocarpus macrophyllus (Podocarpaceae) from southern China
FIGURE 5. Second-instar nymph (cyst) of female Qinococcus podocarpus Wu, sp. n. (left: dorsum; right: venter). Notes: A: antenna; B: thoracic spiracle; C: abdominal spiracle; D: flagellate seta; E: simple pore; F: multilocular pores each with 4‒7 central loculi; G: spine; H: anal ring.
FIGURE 2 in A new coccoid family (Hemiptera: Coccomorpha) for an unusual species of scale insect on Podocarpus macrophyllus (Podocarpaceae) from southern China
FIGURE 2. Adult female of Qinococcus podocarpus Wu, sp. n. (left: dorsum; right: venter). Notes: A: setae group at position of fore leg; B: thoracic spiracle; C: abdominal spiracle; D: simple pore; E: multilocular pore with 3 central loculi in a triangle; F: multilocular pores with 4–7 central loculi; G: multilocular pore with 2 central loculi; H: spine; I: flagellate seta; J: antenna; K: anal ring; L: vulva and 3 adjacent apodemes
FIGURE 3 in A new coccoid family (Hemiptera: Coccomorpha) for an unusual species of scale insect on Podocarpus macrophyllus (Podocarpaceae) from southern China
FIGURE 3. Adult male of Qinococcus podocarpus Wu, sp. n. Notes: A: leg; B: claw; C: thoracic spiracle; D: hind wing; E: circular sensorium; F: cuticular reticulum on fore wing; G: disc pore; H: simple pore; I: tubular duct; J: dorsal view of penis sheath; K: ventral view of penis sheath and penis; L: lateral view of penis sheath and penis; M: spine; N: venter of head; O: dorsum of prothorax, showing an inverted "π"-like post tergite; P: scutellum.
FIGURE 7 in A new coccoid family (Hemiptera: Coccomorpha) for an unusual species of scale insect on Podocarpus macrophyllus (Podocarpaceae) from southern China
FIGURE 7. Third-instar nymph (cyst) of female Qinococcus podocarpus Wu, sp. n. (left: dorsum; right: venter). Notes: A: antenna; B: thoracic spiracle; C: abdominal spiracle; D: flagellate seta; E: simple pore; F: multilocular pores each with 4–7 central loculi; G: spine; H: anal ring.
FIGURE 4 in A new coccoid family (Hemiptera: Coccomorpha) for an unusual species of scale insect on Podocarpus macrophyllus (Podocarpaceae) from southern China
FIGURE 4. First-instar nymph of Qinococcus podocarpus Wu, sp. n. Notes: A: antenna; B: coeloconic sensilla; C: labium; D: leg; E: claw; F: thoracic spiracle; G: abdominal spiracle; H: anus; I: cicatrice; J: multilocular pore with 3 central and outer loculi; K: multilocular pore with 1 central and 7 outer loculi; L: bilocular pore with 2 loculi; M: simple pore; N: sieve-like multilocular pore.
Distribution. Known only by a few specimens from Java. Claimed records from India and Sri Lanka are based on misidentified Hypsugo affinis. A record from Yingjiang, Yunnan, southern China, is also considered to be H. affinis. in Vespertilionidae
Distribution. Known only by a few specimens from Java. Claimed records from India and Sri Lanka are based on misidentified Hypsugo affinis. A record from Yingjiang, Yunnan, southern China, is also considered to be H. affinis.
FIGURE 3 in Two new Pseudopestalotiopsis species isolated from Celtis sinensis and Indocalamus tessellatus plants in southern China
FIGURE 3. Pseudopestalotiopsis indocalami (GUCC 21600). a, b, c. Leaf spots on Indocalamus tessellatus. d, e. Culture on PDA (dabove, e-reverse). f. Colony sporulating on PDA. g–h. Conidia and conidiophores. i–m. Conidia. Scale bars: f = 1000 µm, g–m = 20 µm
FIGURE 2 in Two new Pseudopestalotiopsis species isolated from Celtis sinensis and Indocalamus tessellatus plants in southern China
FIGURE 2. Pseudopestalotiopsis celtidis (GUCC 21599). a, b. Leaf spots on Celtis sinensis. c, d. Culture on PDA (d-above, e-reverse). e. Colony sporulating on PDA. f–g. Conidia and conidiophores. h–l. Conidia. Scale bars: e = 1000 µm, f–l = 20 µm.
FIGURE 1 in Two new Pseudopestalotiopsis species isolated from Celtis sinensis and Indocalamus tessellatus plants in southern China
FIGURE 1. Maximum parsimony (MP) tree of Pseudopestalotiopsis based on combined datasets of ITS, tub2 and tef1 sequences. MP and maximum likelihood bootstrap values ≥50%, Bayesian posterior probabilities ≥0.90 (MPBS/MLBS/PPBY) are given below and above the nodes. Our strains in this study are in red. Ex-type strains are marked by T.
FIGURE 2 in Diaporthe orixae sp. nov., an endophytic species isolated from Orixa japonica in southern China
FIGURE 2. Diaporthe orixae (HKAS 121465, holotype) a Host. b Stem of Orixa japonica. c, d Colonies on MEA. e Conidiomata. f, g Section through conidiomata. h, i Peridium. j–m Conidiogenous cells and conidia. n Alpha conidia. Scale bars: f = 50 µm, g = 100 µm, h–n = 10 µm.
FIGURE 1 in Diaporthe orixae sp. nov., an endophytic species isolated from Orixa japonica in southern China
FIGURE 1. Maximum likelihood tree generated by RAxML based on the combined ITS, tef1-α, β-tub, cal, and his3. Bootstrap support values for ML and MP equal to or greater than 70% and Bayesian posterior probabilities equal to or greater than 0.95 are given near nodes as ML/PP/MP, respectively. The tree was rooted with Diaporthella corylina (CBS 121124) and Diaporthella cryptica (CBS 140348). The newly generated strains are shown in red and the ex-type strains are in bold.
FIGURE 3 in Diaporthe orixae sp. nov., an endophytic species isolated from Orixa japonica in southern China
FIGURE 3. Diaporthe caryae (GZAAS 21–0393, new host record) a, b Colonies on MEA. c Immersed conidiomata. d Peridium. e Alpha and beta conidia f–i Conidiogenous cells. j, k Alpha conidia. l–n Beta conidia. Scale bars: d, e, l–n = 10 µm, f–k = 5 µm.
FIGURE 5–8. Collecting sites. 5 in A new species and additional records of Lobrathium Mulsant & Rey (Coleoptera Staphylinidae: Paederinae) from southern China
FIGURE 5–8. Collecting sites. 5 habitats of Lobrathium anatinum in Guangxi 6 habitats of Lobrathium biaculeatum in Xizang 7 type locality of Lobrathium chengzhifeii 8 habitats of Lobrathium excisissimum in Xizang.
FIGURE 1 in A new species and additional records of Lobrathium Mulsant & Rey (Coleoptera Staphylinidae: Paederinae) from southern China
FIGURE 1. Lobrathium anatinum (A–C) and L. excisissimum (D–G). A female tergite VIII B female sternite VIII C female tergites IX–X. D male sternite VII E male sternite VIII F aedeagus in ventral view G aedeagus in lateral view. Scale bars: 0.5 mm. FIGURE 2. Male habitus of Lobrathium spp. A L. biaculeatum B L. chengzhifeii C L. excisissimum. Scales: 1.0 mm.
FIGURE 3. Lobrathium biaculeatum. A female tergite VIII B female sternite VIII C female tergites IX–X. D male sternite VII E male sternite VIII F in A new species and additional records of Lobrathium Mulsant & Rey (Coleoptera Staphylinidae: Paederinae) from southern China
FIGURE 3. Lobrathium biaculeatum. A female tergite VIII B female sternite VIII C female tergites IX–X. D male sternite VII E male sternite VIII F aedeagus in ventral view G aedeagus in lateral view. Scales: 0.5 mm. FIGURE 4. Lobrathium chengzhifeii. A male sternite VII B male sternite VIII C aedeagus in ventral view D aedeagus in lateral view. Scales: 0.5 mm.
FIGURE 7 in Neodontobutis lani, a new sleeper fish of the family Odontobutidae (Teleostei: Gobiiformes) from Guangxi, southern China
FIGURE 7. Maximum likelihood tree of Neodontobutis lani, and comparative species of the Odontobutidae, based on partial sequence (~ 1500 bp) of cytochrome c oxidase subunit I (COI) gene. *SOU1801007-1 is the Holotype, SOU1801007-3 and SOU1801007-5 are the paratypes.
FIGURE 6 in Neodontobutis lani, a new sleeper fish of the family Odontobutidae (Teleostei: Gobiiformes) from Guangxi, southern China
FIGURE 6. Concatenated maximum likelihood tree of Neodontobutis lani, and species representing all genus of the Odontobutidae, except for Terateleotris, based on 2,076 single-copy nuclear loci. *SOU1801007-3 is a paratype.
FIGURE 4 in Neodontobutis lani, a new sleeper fish of the family Odontobutidae (Teleostei: Gobiiformes) from Guangxi, southern China
FIGURE 4. Patterns of main cephalic sensory papilla lines (row of spots) of Neodontobutis lani sp. nov. (SOU1801007-1, holotype) from lateral (a), dorsal (b) and ventral (c) view.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.