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FIGURE 3 in The invasive land flatworm Obama nungara in La Réunion, a French island in the Indian Ocean, the first report of the species for Africa
FIGURE 3. Haplotype network. The network was obtained by using a matrix made public (Justine et al., 2020b) and adding a single sequence, from the specimen MNHN JL449 from Petite France, Saint Paul, La Réunion.
FIGURE 8 in Description of the snail-eating flatworm in marine aquaria, Pericelis tectivorum sp. nov. (Polycladida, Platyhelminthes)
FIGURE 8. Schematic drawings of eye spot clusters in comparison. Anterior directed upwards. Not drawn to scale.
FIGURE 9 in New genus, new species and new records of marine acotylean flatworms (Platyhelminthes: Polycladida: Acotylea) from Oaxaca, southern Mexican Pacific
FIGURE 9. Bivesiculoplana lamothei; A, E, F (UMAR-PLAT 011C-E), B–D, G–I (UMAR-PLAT 011A-B); A, E, F. male and female reproductive system, frontal view and B–D, G–I. sagittal view. Structures: cg=cement gland, fg= female gonopore, lv= Lang´s vesicle, ma= male antrum, mg= male gonopore, ovi= oviducts, p= pharynx, pp= penis papilla, pv= prostatic vesicle, sd= spermiducal ducts, st= stylet, sv= seminal vesicle, spv= spermiducal vesicle, va= vagina.
FIGURE 7. Bivesiculoplana lamothei. A, D-F, H-K in New genus, new species and new records of marine acotylean flatworms (Platyhelminthes: Polycladida: Acotylea) from Oaxaca, southern Mexican Pacific
FIGURE 7. Bivesiculoplana lamothei. A, D-F, H-K (UMAR-PLAT 008); G (UMAR-PLAT 009); B-C (UMAR-PLAT 011); A. specimen in vivo associate a Fissurella gemmata; B-C. Specimen preserved in alcohol associate a Lottia sp.; D. specimen stained in Mayer's carmalum and cleared in methyl salicylate associate a F. gemmata; E-F, H. anterior region of the body; G. region subepidermal; I. pharynx; J. Lang´s vesicle, ventral view; K. male and female reproductive system, ventral view. Structures: b= brain, ce= cerebral eyes, fg= female gonopore, gcm= globuli cell masses, lv= Lang´s vesicle, m= mouth, mg= male gonopore, nt= nuchal tentacle; p= pharynx, st= stylet, spv= spermiducal vesicle, te= tentacular eyes. Scaling bar of the figure A-D = 1 mm.
Fig. 6 in Tracking the diversity of the flatworm genus Imbira (Platyhelminthes) in the Atlantic Forest
Fig. 6 Imbira flavonigra Amaral & Leal-Zanchet, sp. nov.: a sagittal composite reconstruction of the copulatory apparatus of the holotype and b diagrammatic horizontal composite reconstruction of the copulatory apparatus of paratype MZU PL.00215. The arrows indicate the openings of sperm ducts into the prostatic vesicle. Anterior tip to the left
Fig. 1 a Maximum likelihood phylogenetic tree inferred from the 550 in Tracking the diversity of the flatworm genus Imbira (Platyhelminthes) in the Atlantic Forest
Fig. 1 a Maximum likelihood phylogenetic tree inferred from the 550 bp of cytochrome c oxidase subunit I gene. b ABGD analysis and c GMYC analysis. Values indicate support for each node according to the bootstrap support values> 80 and maximum posterior probabilities> 0.95,
Fig. 4 in Tracking the diversity of the flatworm genus Imbira (Platyhelminthes) in the Atlantic Forest
Fig. 4 Imbira flavonigra Amaral & Leal-Zanchet, sp. nov., holotype, microphotographs of transverse sections: a anterior region of the body, b prepharyngeal region, c detail of body margin of the prepharyngeal region, d detail of the dorsal surface of the prepharyngeal region in transverse section and e detail of the ventral surface of the pre-pharyngeal region
Figs. 34–35 in Focus on the details: morphological evidence supports new cryptic land flatworm (Platyhelminthes) species revealed with molecules
Figs. 34–35 Obama decidualis Amaral & Leal-Zanchet, sp. nov., holotype: (34) sagittal composite reconstruction of the copulatory apparatus; (35) copulatory apparatus in sagittal section
Fig. 27 in Focus on the details: morphological evidence supports new cryptic land flatworm (Platyhelminthes) species revealed with molecules
Fig. 27 Obama decidualis Amaral & Leal-Zanchet, sp. nov., holotype. Detail of eye pattern in dorsal view
Fig. 26 in Focus on the details: morphological evidence supports new cryptic land flatworm (Platyhelminthes) species revealed with molecules
Fig. 26 Obama decidualis Amaral & Leal-Zanchet, sp. nov., holotype. Photograph of live specimen in dorsal view
Fig. 36 in Focus on the details: morphological evidence supports new cryptic land flatworm (Platyhelminthes) species revealed with molecules
Fig. 36 Obama decidualis Amaral & Leal-Zanchet, sp. nov.: sagittal composite reconstruction of the copulatory apparatus in sagittal section of paratype MZUSP PL.1210
Figs. 16–20 in Focus on the details: morphological evidence supports new cryptic land flatworm (Platyhelminthes) species revealed with molecules
Figs. 16–20 Obama anthropophila Amaral, Leal-Zanchet & Carbayo, sp. nov., holotype: (16) anterior region of the body in transverse section; (17) detail of the anterior region of the body in transverse section; (18)
Figs. 10–12 Obama ladislavii, specimen ZMH V5270-A in Focus on the details: morphological evidence supports new cryptic land flatworm (Platyhelminthes) species revealed with molecules
Figs. 10–12 Obama ladislavii, specimen ZMH V5270-A (10– 11) and MZUSP PL 769 (12) in sagittal sections: (10) copulatory apparatus; (11) copulatory apparatus in the right side of the body; (12) common glandular, female genital duct and part of female atrium
Figs. 13–14 in Focus on the details: morphological evidence supports new cryptic land flatworm (Platyhelminthes) species revealed with molecules
Figs. 13–14 Obama anthropophila Amaral, Leal-Zanchet & Carbayo, sp. nov. Photographs of living specimens in dorsal view. (13) Holotype. (14) Paratype MZU PL.00170
Fig. 9 Obama ladislavii, specimen NHM 2737-B2-a in Focus on the details: morphological evidence supports new cryptic land flatworm (Platyhelminthes) species revealed with molecules
Fig. 9 Obama ladislavii, specimen NHM 2737-B2-a. Diagrammatic reconstruction of copulatory apparatus from sagittal sections
Figs. 7–8 Obama ladislavii, specimens ZMH V5270-A in Focus on the details: morphological evidence supports new cryptic land flatworm (Platyhelminthes) species revealed with molecules
Figs. 7–8 Obama ladislavii, specimens ZMH V5270-A (7) and NHM 2737-B2-b (8). (7) Diagrammatic representation of the pharynx from sagittal sections; (8) diagrammatic reconstruction of pharynx and copulatory apparatus from sagittal sections; not scaled
Fig. 3 in Focus on the details: morphological evidence supports new cryptic land flatworm (Platyhelminthes) species revealed with molecules
Fig. 3 BPP results represented on the species tree inferred with *BEAST using five datasets, the nuclear 18S, 28S, ITS-1, EF and the mitochondrial Cox1 genes. Numbers at nodes indicate the posterior probability of that split corresponding to a speciation event
FIGURE 3 in Biodiversity of intertidal marine flatworms (Polycladida, Platyhelminthes) in southeastern Australia
FIGURE 3. Bayesian inference (BI) phylogenetic tree from sequences of five genes (18S, 28S, 16S, COI, Cytb) (concatenated length 3812 bp). Node support (PP) is shown for values greater than 0.80. Species from this study are highlighted in blue.
FIGURE 11 in Biodiversity of intertidal marine flatworms (Polycladida, Platyhelminthes) in southeastern Australia
FIGURE 11. Parabolia megae gen. et sp. nov. A. Dorsal view of live specimen. B. Dorsal view of a fixed specimen, treated with a clearing agent. C, D. Details of the pharynx and reproductive systems. E, F. Arrangement ofthe eyes. G. Sagittal reconstruction of the reproductive system. H–K. Histological sections of the reproductive system.
RNA Seq analysis in flatworm following 6, 12, or 18 day treatment with RNAi against Pax5, Sox8, or Zfp1, relative to unc22 to identify transcriptional targets.
GEO Series GSE80543. Schmidtea mediterranea. 48 samples. Type: Expression profiling by high throughput sequencing.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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