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FIGURE 3 in Larval morphology and diagnosis of the Giant Microcaddisfly species, Ugandatrichia spp. (Hydroptilidae: Trichoptera) in Thailand
FIGURE 3. Larval features of Ugandatrichia hairanga. 3A—larva; 3B—dorsal aspect of head and nota; 3C— larval case; 3D—sclerites on abdominal sterna III, IV and V; 3E—pupal case.
FIGURE 2 in Larval morphology and diagnosis of the Giant Microcaddisfly species, Ugandatrichia spp. (Hydroptilidae: Trichoptera) in Thailand
FIGURE 2. Larval features of Ugandatrichia maliwan. 2A—larva; 2B—dorsal aspect of head and nota; 2C—sclerites on abdominal sterna IV and V; 2D—pupal case; 2E—larval case.
FIGURES 11–16 in Larval morphology and diagnosis of the Giant Microcaddisfly species, Ugandatrichia spp. (Hydroptilidae: Trichoptera) in Thailand
FIGURES 11–16. Ultrastructure of Ugandatrichia spp. 11—maxillary palp and maxillary lobe; 12—integumental surface of pronotum, mesonotum, and metanotum; 13 & 14—integumental surfaces of membrane between nota; 15 & 16— legs, claw, and tibial spurs.
FIGURES 5–10 in Larval morphology and diagnosis of the Giant Microcaddisfly species, Ugandatrichia spp. (Hydroptilidae: Trichoptera) in Thailand
FIGURES 5–10. Head of Ugandatrichia spp. 5—head; 6—integument surface of head; 7—labrum; 8—palpiger; 9— silk gland opening; 10—dense bristles.
FIGURE 1 in Larval morphology and diagnosis of the Giant Microcaddisfly species, Ugandatrichia spp. (Hydroptilidae: Trichoptera) in Thailand
FIGURE 1. Larval features of Ugandatrichia kerdmuang. 1A—larva; 1B—dorsal aspect of head and nota; 1C—sclerites on abdominal sterna IV and V; 1D—pupal case; 1E— larval case.
FIGURE 4 in Larval morphology and diagnosis of the Giant Microcaddisfly species, Ugandatrichia spp. (Hydroptilidae: Trichoptera) in Thailand
FIGURE 4. Larval features of Ugandatrichia honga. 4A—larva; 4B—dorsal aspect of head and nota; 4C—sclerites on abdominal sterna IV and V; 4D—larval case; 4E—pupa case.
FIGURE 4 in Morphological diagnosis of a new species in Myrcia sensu lato (Myrtaceae) from Bahia, Brazil, with molecular highlights
FIGURE 4. Morphological comparison among Myrcia marianae (I–III), Marlierea sucrei (IV–VI) and Marlierea glabra (VII–IX). Bracts and bracteoles in M. mariane (II–III) and M. sucrei (V–VI) and not apparent in M. glabra (VIII–IX). Longer hairs in M. marianae (II) than in M. sucrei (V) and bracts glabrous and glandular in M. marianae (III) while densely pubescent in M. sucrei (VI).
FIGURE 3 in Morphological diagnosis of a new species in Myrcia sensu lato (Myrtaceae) from Bahia, Brazil, with molecular highlights
FIGURE 3. Myrcia marianae in the beginning of fruit development (I), showing tomentous simple hairs (I, III, V), glandular bracteoles (II, IV), and the irregularly splitting sepals (III, V, VIII). Immature fruits completely developed (V, VIII). Glabrous and lustrous leaves in both faces (VI, VII).
FIGURE 5. Maximum credibility tree for a in Morphological diagnosis of a new species in Myrcia sensu lato (Myrtaceae) from Bahia, Brazil, with molecular highlights
FIGURE 5. Maximum credibility tree for a reduced dataset consisting of 22 accessions of Myrteae based on combined plastid and nuclear sequences (4225bp) for the full tree including 93 taxa (Staggemeier et al. 2014). Clades are marked in different colours, and numbers above branches refer to Bayesian posterior probability/Maximum likelihood bootstrap support. Clades A-G are discussed in detail in Staggemeier et al. (2014).
FIGURE 9 in Clarification of the diagnosis of the genus Loxosoma s.l. (Entoprocta; Loxosomatidae) based on morphological and molecular data
FIGURE 9. RaxML maximum likelihood phylogeny based on 28S rRNA partial gene sequences. Bootstrap support indicated above branches, values below 95% were removed. Rectangles highlight subgenera. Asterisks indicate the position of Loxosoma aripes n. comb..
FIGURE 6 in Clarification of the diagnosis of the genus Loxosoma s.l. (Entoprocta; Loxosomatidae) based on morphological and molecular data
FIGURE 6. Stalk structure of Loxosoma aripes n. comb. (light microscopy). A. Frontal view of the specimen 7 which was used for histological investigations of the stalk. B. Abfrontal view of the specimen 8 which was used for histological investigations of the stalk. C–K. A series of oblique-transverse sections of the stalk of the specimen 7 with a step of about 20 mµ starting from level 1, which is marked in Fig. 6a. L–N. Longitudinal sections of the specimen 8 on levels that is marked in Fig. 6b. L.—level 1. M.—level 2. N.—level 3. Abbreviations: b—bud, bk—'beak'-like attachment organ, e—embryo, es—esophagus, gl—glandular cell, i—intestine, l—larva, m—muscle, re—rectum, s—stomach, st—stalk, stb—stalk base, sw—swelling.
FIGURE 3. Loxosoma aripes n. comb. A in Clarification of the diagnosis of the genus Loxosoma s.l. (Entoprocta; Loxosomatidae) based on morphological and molecular data
FIGURE 3. Loxosoma aripes n. comb. A. Latero-abfrontal view (SEM). B. Drawing of specimen 5, abfrontal view. C. Drawing of specimen 6 in lateral, abfrontal and fronto-lateral views. Abbreviations: b—bud, bk—'beak'-like attachment organ, e— embryo, es—esophagus, in—intestine, re—rectum, s—stomach, st—stalk, t—tentacle.
FIGURE 1 in Clarification of the diagnosis of the genus Loxosoma s.l. (Entoprocta; Loxosomatidae) based on morphological and molecular data
FIGURE 1. Holotype of Loxosoma aripes n. comb. from Bergen museum (Museum number 46395). Abbreviations: bk— 'beak'-like attachment organ, e—embryo, in—intestine, re—rectum, s—stomach, st—stalk, t—tentacle.
FIGURE 8 in Clarification of the diagnosis of the genus Loxosoma s.l. (Entoprocta; Loxosomatidae) based on morphological and molecular data
FIGURE 8. Embryos and larvae of Loxosoma aripes n. comb. (light microscopy). A–C. Series of parasagittal sections through the calyx with a larva, three large embryos, and several young embryos. A. The most distal section showing a larva in the brood chamber and three large embryos. B. More proximal section showing a larva in the brood chamber, three large embryos and one young embryo. C. The most proximal section showing a larva in the brood chamber and three young embryos. D–F. A series of oblique-transverse section of the larva. D. The section on the level of the apical organ and the frontal organ. E. The section on the level of the esophagus. F. The section on the level of the foot. Abbreviations: ap—apical organ, bc—brood chamber, es—esophagus, f—foot, fo—frontal organ, l—larva, pg—pedal gland, pr—prototroch, s—stomach. Embryos are numbered in Arabic numerals.
FIGURE 2. Loxosoma aripes n. comb. A–C. Specimen 1 with two buds and embryos. A. Frontal view. B. Lateral view. C in Clarification of the diagnosis of the genus Loxosoma s.l. (Entoprocta; Loxosomatidae) based on morphological and molecular data
FIGURE 2. Loxosoma aripes n. comb. A–C. Specimen 1 with two buds and embryos. A. Frontal view. B. Lateral view. C. Abfrontal view. В–F. Specimen 2 with two buds and without embryos. D. Frontal view. E. Lateral view. F. Abfrontal view. G. Frontal view of the specimen 3. H. Abfrontal view of the specimen 4. I. Abfrontal view of the specimen 5. Abbreviations: b—bud, e—embryo, es—esophagus, in—intestine, re—rectum, s—stomach.
FIGURE 5 in Clarification of the diagnosis of the genus Loxosoma s.l. (Entoprocta; Loxosomatidae) based on morphological and molecular data
FIGURE 5. Digestive system of Loxosoma aripes n. comb. (light microscopy). A. Oblique-sagittal section of the calyx. B. Transverse section of the calyx on the level of the stomach. C. Transverse section through the intestine. D. Longitudinal section through the rectum. Abbreviations: b—bud, cc—cuboidal cell, es—esophagus, gc—glandular cell, in—intestine, li—liver cell, ll—lateral lobe of stomach, re—rectum, s—stomach, t—tentacle.
FIGURE 4 in Clarification of the diagnosis of the genus Loxosoma s.l. (Entoprocta; Loxosomatidae) based on morphological and molecular data
FIGURE 4. Tentacles of Loxosoma aripes n. comb. A. Transverse section of the tentacle (light microscopy). B. Transverse section of the tentacle (TEM). C. Apical part of the frontal cells and latero-frontal cells. D. Apical part of the latero-frontal cell and the lateral cell. E. Apical parts of two lateral cells. Abbreviations: asc—abfrontal cell, ds—desmosoma, fc—frontal cell, fg—frontal groove, k—kinetosoma, lc—lateral cell, lfc—laterofrontal cell, m—muscle, n—nucleus, str—striated roots, t—tentacle, tc—tentacle cavity.
FIGURE 7 in Clarification of the diagnosis of the genus Loxosoma s.l. (Entoprocta; Loxosomatidae) based on morphological and molecular data
FIGURE 7. Buds of Loxosoma aripes n. comb. A. Calyx of the specimen 9 with four buds. B. Calyx of the specimen 10 with seven buds. C. Attachment of the fully developed bud to the calyx of the specimen 10 by the posterior edge of the muscular disc. D. Frontal view of the amputated bud of the specimen 10. E. Lateral view of the amputated bud of the specimen 10. F. Drawing of the amputated bud of the specimen 10. Abbreviations: at—atrium, b—bud, g—gonads, pd—pedal disc, s—stomach. Asterisks indicate buds.
FIGURE 6. A, D, G, Parasesarma rahayuae n in Phylogenetic evidence and morphological diagnosis for a new species of Parasesarma De Man, 1895 (Decapoda, Brachyura, Sesarmidae) from Sulawesi, Indonesia
FIGURE 6. A, D, G, Parasesarma rahayuae n. sp., paratype, male (11.32 mm × 9.6 mm) ZRC 2019.1055, Manado; B, E, H, P. anambas Yeo, Rahayu & Ng, 2004, paratype male (7.9 mm × 6.3 mm) ZRC 2003.0726, Pulau Siantan; C, F, I, P. gemmatum Li, Shih & Ng, 2019, male (11.9 mm × 10.1 mm) ZRC 2023.0256, Cebu. A‒C, dorsal view; B‒F, apical corneous part, upper view; G‒I, apical corneous part, front view.
FIGURE 4. Parasesarma rahayuae n in Phylogenetic evidence and morphological diagnosis for a new species of Parasesarma De Man, 1895 (Decapoda, Brachyura, Sesarmidae) from Sulawesi, Indonesia
FIGURE 4. Parasesarma rahayuae n. sp., paratype, ovig. female (11.9 mm × 9.77 mm) ZRC 2019.1055, Manado. A, dorsal habitus; B, pleon, ventral view, C, vulvae, ventral view; D, left chela, outer view.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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