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513 results for “molecular characters”
FIGURE 11 in Capreolucanus yanxui Qi & Zhou, new species, the third species of the genus from Yunnan (China) based on morphological and molecular characters (Coleoptera: Lucanidae: Lucaninae)
FIGURE 11. Habitus of Capreolucanus species in dorsal view. A–C, C. yanxui Qi & Zhou, new species (paratypes); A, male, 17.4 mm, Pingbian, Yunnan; B, male, 16.1 mm, Pingbian, Yunnan; C, female, 17.6 mm, Pingbian, Yunnan; D–H, C. sicardi Didier, 1928; D, male, 20.1 mm, Longchuan, Yunnan; E, male, 14.6 mm, Yingjiang, Yunnan; F, female, 16.6 mm, Yingjiang, Yunnan; G, female, 17.7 mm, Yingjiang, Yunnan; H, female, 17.8 mm, Lushui, Yunnan. Scale bar = 10.0 mm.
FIGURE 10 in Capreolucanus yanxui Qi & Zhou, new species, the third species of the genus from Yunnan (China) based on morphological and molecular characters (Coleoptera: Lucanidae: Lucaninae)
FIGURE 10. The different life stages of Capreolucanus yanxui Qi & Zhou, new species. A, the egg (photo by Xu Yan); B, the second instar larva (photo by Xu Yan); C, the third instar larva (photo by Xu Yan); D, the pupa (photo by Yun-Chuan Xu); E, the male large-sized adult after eclosion (photo by Xu Yan); F, the unexpectedly death male large-sized adult after eclosion (photo by Yun-Chuan Xu).
FIGURE 6 in Capreolucanus yanxui Qi & Zhou, new species, the third species of the genus from Yunnan (China) based on morphological and molecular characters (Coleoptera: Lucanidae: Lucaninae)
FIGURE 6. Aedeagus details of Capreolucanus species. A–I, S, C. yanxui Qi & Zhou, new species. A–C, S, holotype; D–I, paratypes; J–R, T, C. sicardi Didier, 1928; A–R, aedeagus (flagellum not included); S–T, apex of flagellum. B, E, H, K, N, Q, dorsal view; C, F, I, L, O, R, lateral view; A, D, G, J, M, P, ventral view. Scale bar for A–R = 1.0 mm, for S–T = 0.2 mm.
FIGURE 8 in Capreolucanus yanxui Qi & Zhou, new species, the third species of the genus from Yunnan (China) based on morphological and molecular characters (Coleoptera: Lucanidae: Lucaninae)
FIGURE 8. Female canthus (A–F), clypeolabrum (G–L), and mentum (M–R) of Capreolucanus species. A–B, G–H, M–N, C. yanxui Qi & Zhou, new species (paratypes); C–F, I–L, O–R, C. sicardi Didier, 1928. A–L, dorsal view; M–R, ventral view. Scale bar = 0.2 mm.
FIGURE 5 in Capreolucanus yanxui Qi & Zhou, new species, the third species of the genus from Yunnan (China) based on morphological and molecular characters (Coleoptera: Lucanidae: Lucaninae)
FIGURE 5. Aedeagus of Capreolucanus species in ventral view. A–C, C. yanxui Qi & Zhou, new species. A, holotype; B–C, paratypes; D–F, C. sicardi Didier, 1928. Scale bar = 1.0 mm.
FIGURE 13 in Capreolucanus yanxui Qi & Zhou, new species, the third species of the genus from Yunnan (China) based on morphological and molecular characters (Coleoptera: Lucanidae: Lucaninae)
FIGURE 13. Phylogenetic analysis and mitochondrial genome traits of Capreolucanus yanxui Qi & Zhou, new species. A, Summary of pairwise distances based on COX1 fragment between stag beetles C. yanxui Qi & Zhou, new species (Cya samples) and C. sicardi (Csi samples). Outgroup: Prismognathus davidis (Pda). Phylogenetic trees were constructed using ML and BI. Topology came from BI analysis, with numbers on each branch indicating Bayesian posterior probabilities (BBP)/ML bootstrap values. B, Mitochondrial genome traits of C. yanxui Qi & Zhou, new species.
FIGURE 3 in Capreolucanus yanxui Qi & Zhou, new species, the third species of the genus from Yunnan (China) based on morphological and molecular characters (Coleoptera: Lucanidae: Lucaninae)
FIGURE 3. Male canthus (A–F), clypeolabrum (G–L) and mentum (M–R) of Capreolucanus species. A–C, G–I, M–O, C. yanxui Qi & Zhou, new species; A, G, M, holotype; B–C, H–I, N–O, paratypes; D–F, J–L, P–R, C. sicardi Didier, 1928. A–L, dorsal view; M–R, ventral view. Scale bar = 0.2 mm.
FIGURE 7 in Capreolucanus yanxui Qi & Zhou, new species, the third species of the genus from Yunnan (China) based on morphological and molecular characters (Coleoptera: Lucanidae: Lucaninae)
FIGURE 7. Female habitus of Capreolucanus species. A–C, C. yanxui Qi & Zhou, new species (paratype, 19.4 mm, Pingbian, Yunnan, China); D–F, C. sicardi Didier, 1928 (19.0 mm, Yingjiang, Yunnan, China); G–I, C. zhuchuangi Wang, 2020 (16.8 mm, Bo Kluea, Nan, Thailand, photo by Wuttipon Pathomwattananurak). A, D, G, dorsal view; B, E, H, lateral view; C, F, I, ventral view. Scale bar = 10.0 mm.
FIGURE 2 in Capreolucanus yanxui Qi & Zhou, new species, the third species of the genus from Yunnan (China) based on morphological and molecular characters (Coleoptera: Lucanidae: Lucaninae)
FIGURE 2. Male head details of Capreolucanus species in dorsolateral view. A–B, C. yanxui Qi & Zhou, new species; A, holotype; B, paratype; C–D, C. sicardi Didier, 1928; A, C, large sized; B, D, small sized.
FIGURE 12 in Capreolucanus yanxui Qi & Zhou, new species, the third species of the genus from Yunnan (China) based on morphological and molecular characters (Coleoptera: Lucanidae: Lucaninae)
FIGURE 12. The living individuals of Capreolucanus species. A–B, C. yanxui Qi & Zhou, new species (paratypes); A, male, Pingbian, Yunnan (photo by Ming-Fei Hou); B, female, Pingbian, Yunnan (photo by Ming-Fei Hou); C–D, C. sicardi Didier, 1928; C, male, Longchuan, Yunnan; D, female, Longchuan, Yunnan. A–C, dorsolateral view; D, dorsal view.
FIGURE 1 in Capreolucanus yanxui Qi & Zhou, new species, the third species of the genus from Yunnan (China) based on morphological and molecular characters (Coleoptera: Lucanidae: Lucaninae)
FIGURE 1. Male habitus of Capreolucanus species. A–C, C. yanxui Qi & Zhou, new species (holotype, 18.6 mm, Pingbian, Yunnan, China); D–F, C. sicardi Didier, 1928 (18.9 mm, Lushui, Yunnan, China); G–I, C. zhuchuangi Wang, 2020 (15.0 mm, Bo Kluea, Nan, Thailand, Photo by Wuttipon Pathomwattananurak). A, D, G, dorsal view; B, E, H, lateral view; C, F, I, ventral view. Scale bar = 10.0 mm.
FIGURE 15 in Capreolucanus yanxui Qi & Zhou, new species, the third species of the genus from Yunnan (China) based on morphological and molecular characters (Coleoptera: Lucanidae: Lucaninae)
FIGURE 15. Adults of Capreolucanus sicardi Didier, 1928 mating on standing decaying wood while the female biting the bark in broad-leaved forests of Gaoligongshan, Yunnan at an altitude of 1800 m at night in August (photo by Yan-Dong Chen).
FIGURE 4 in Capreolucanus yanxui Qi & Zhou, new species, the third species of the genus from Yunnan (China) based on morphological and molecular characters (Coleoptera: Lucanidae: Lucaninae)
FIGURE 4. Male abdominal tergite VIII (A, E, I, M, Q, U), abdominal ventrite VIII (B, F, J, N, R, V) and abdominal segment IX (C–D, G–H, K–L, O–P, S–T, W–X) of Capreolucanus species. A–L, C. yanxui Qi & Zhou, new species; A–D, holotype; E–L, paratypes; M–X, C. sicardi Didier, 1928. A, D–E, H–I, L–M, P–Q, T–U, X, dorsal view; B–C, F–G, J–K, N–O, R–S, V–W, ventral view. Scale bar = 1.0 mm.
FIGURE 9 in Capreolucanus yanxui Qi & Zhou, new species, the third species of the genus from Yunnan (China) based on morphological and molecular characters (Coleoptera: Lucanidae: Lucaninae)
FIGURE 9. Female abdominal tergite VIII (A, F, K, P), abdominal ventrite VIII (B, G, L, Q) and genitalia (C, H, M, R) including details of hemisternite (D, I, N, S), spermatheca and spermathecal gland (E, J, O, T) of Capreolucanus species. A–J, C. yanxui Qi & Zhou, new species (paratypes); K–T, C. sicardi Didier, 1928. A, F, K, P, dorsal view; B–E, G–J, L–O, Q–T, ventral view. Scale bar for E, J, O, T = 0.2 mm, for the others = 1.0 mm.
Figure 3 in Osteological characters of birds and reptiles are more congruent with molecular phylogenies than soft characters are
Figure 3. Differences in pooled average character transition ages in millions of years between morphological partitions in all bird and squamate datasets. Dashed lines indicate mean ages of osteological (older) and non-osteological (younger) characters. Data is coloured by partition, with osteological data in purple and non-osteological data in green.
Figure 2 in Osteological characters of birds and reptiles are more congruent with molecular phylogenies than soft characters are
Figure 2. Ensemble retention index between cranial and postcranial partitions for birds and squamates. Cranial partitions have relatively greater higher molecular consistency in datasets falling below the x = y line. Colour corresponds to clade and dot size is proportional to dataset size (in number of total osteological characters).
Figure 1 in Osteological characters of birds and reptiles are more congruent with molecular phylogenies than soft characters are
Figure 1. Ensemble retention index between osteological and non-osteological partitions for birds and squamates. Osteological partitions have relatively higher molecular consistency in datasets falling below the x = y line. Colour corresponds to clade and dot size is proportional to dataset size (in number of total characters).
FIGURE 5. Morphological characters for Sorocea species. A in Molecular phylogenetics of Sorocea (Moraceae)
FIGURE 5. Morphological characters for Sorocea species. A. Leaves of S. bonplandii (Santos 140). B. Leaf of S. uaupensis (Pederneiras 698). C. Abaxial surface of the leaf of S. pubivena (Pederneiras 736). D. Pistillate flower of S. muriculata (Medeiros 684). E. Pistillate flower of S. uaupensis (Pederneiras 697). F. Pistillate flower of S. klotzschiana (Pederneiras 744). G. Pistillate flower of S. guilleminiana (Santos 128). H. Fruit of S. muriculata (Medeiros 684). I. Fruit of S. uaupensis (Pederneiras 697). Photos: L. Mattos.
FIGURE 1. Morphological characters for Sorocea. A in Molecular phylogenetics of Sorocea (Moraceae)
FIGURE 1. Morphological characters for Sorocea. A. Presence of the milky latex in S. bonplandii (Santos 140, SP). B. Leaves of S. bonplandii (Santos 140, SP). C. Staminate inflorescence of S. bonplandii (Santos 140, SP). D. Pistillate inflorescences of S. guilleminiana (Santos 128, SP). E. Development of pistillate inflorescences of S. hilarii (Borges 294, SP). F. Fruits of S. bonplandii (Santos 140, SP). Photos: L.C. Pederneiras, S. Romaniuc-Neto and A. Santos.
Lophuromys stanley: is member of the L. flavopunctatus species complex and was named during partial revision of the L. aguilus species complex. It is characterized by craniometric and genetic character-istics; its skull proportions are similar to L. laticeps, and molecularly, it is similar to L. margarettae and L. zena (cytochrome-b). Lophuromys stanleyi is one of four endemic species in the Rwenzori Mountains diversity hotspot. Monotypic. Distribution. Rwenzori Mts, E DR Congo and SW Uganda. Descriptive notes. Head-body 113-126 mm, tail 40-80 mm, ear 16-19 mm, hindfoot 22-24 mm; weight 36-55 g. The Rwenzori Brush-furred Rat has a speckled pelage similar to other speciesin the L. flavopunctatus species complex. Tail is short, 50-60% of head-body length. Habitat. Poorly known, but type specimen was collected at an elevation of 3700 m. Food and Feeding. No information. Breeding. No information. Activity patterns. No information. in Muridae
Lophuromys stanley: is member of the L. flavopunctatus species complex and was named during partial revision of the L. aguilus species complex. It is characterized by craniometric and genetic character-istics; its skull proportions are similar to L. laticeps, and molecularly, it is similar to L. margarettae and L. zena (cytochrome-b). Lophuromys stanleyi is one of four endemic species in the Rwenzori Mountains diversity hotspot. Monotypic. Distribution. Rwenzori Mts, E DR Congo and SW Uganda. Descriptive notes. Head-body 113-126 mm, tail 40-80 mm, ear 16-19 mm, hindfoot 22-24 mm; weight 36-55 g. The Rwenzori Brush-furred Rat has a speckled pelage similar to other speciesin the L. flavopunctatus species complex. Tail is short, 50-60% of head-body length. Habitat. Poorly known, but type specimen was collected at an elevation of 3700 m. Food and Feeding. No information. Breeding. No information. Activity patterns. No information.
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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)
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DANDI Archive for NWB datasets
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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
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.