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FIGURE 1 in Bryozoans from RV Sonne deep-sea cruises SO 167 ' Louisville' and SO 205 ' Mangan'
FIGURE 1. Station localities in the Tonga Arc region. Modified from Stoffers et al. (2003).
FIGURE 167 in The Caucasus as a major hotspot of biodiversity: Evidence from the millipede family Anthroleucosomatidae (Diplopoda, Chordeumatida)
FIGURE 167. Distribution of the Caucasian Anthroleucosomatidae: the Caucaseuma complex.
FIGURES 167–168 in New species of the damselfly genus Argia from Mexico, Central America and Ecuador with an emphasis on Costa Rica (Insecta: Odonata: Coenagrionidae)
FIGURES 167–168. Distribution of extranea-group species.
Supplementary material 1 from: Prendergast KS (2022) Leioproctus zephyr Prendergast (Hymenoptera, Colletidae, Leioproctus), an oligoletic new bee species with a distinctive clypeus. Journal of Hymenoptera Research 93: 167-188. https://doi.org/10.3897/jhr.93.85685
Details of specimens of Leioproctus zephyrus
Supplementary material 2 from: Prendergast KS (2022) Leioproctus zephyr Prendergast (Hymenoptera, Colletidae, Leioproctus), an oligoletic new bee species with a distinctive clypeus. Journal of Hymenoptera Research 93: 167-188. https://doi.org/10.3897/jhr.93.85685
Morphological measurements
Figure 8 from: Zhu Y, Huang J, Sluys R, Liu Y, Sun T, Wang A-T, Zhang Y (2024) Integrative description of a new species of Dugesia (Platyhelminthes, Tricladida, Dugesiidae) from southern China, with its complete mitogenome and a biogeographic evaluation. Zoosystematics and Evolution 100(1): 167-182. https://doi.org/10.3897/zse.100.114016
Figure 8 Dugesia ancoraria, paratype RMNH.VER.21525.1, sagittal sections. A. Photomicrograph showing ejaculatory duct, penis papilla, and seminal vesicle; B. Photomicrograph showing copulatory bursa, common atrium, and gonopore; C. Photomicrograph showing copulatory bursa, and bursal canal. Scale bars: 100 μm.
Figure 6 from: Zhu Y, Huang J, Sluys R, Liu Y, Sun T, Wang A-T, Zhang Y (2024) Integrative description of a new species of Dugesia (Platyhelminthes, Tricladida, Dugesiidae) from southern China, with its complete mitogenome and a biogeographic evaluation. Zoosystematics and Evolution 100(1): 167-182. https://doi.org/10.3897/zse.100.114016
Figure 6 Dugesia ancoraria, holotype PLA-0101, sagittal sections, anterior to the right. A. Photomicrograph showing copulatory bursa, ejaculatory duct, penis papilla, and seminal vesicle; B. Photomicrograph showing copulatory bursa, bursal canal, and gonopore; C. Photomicrograph showing copulatory bursa, and bursal canal. Scale bars: 100 μm.
Figure 5 from: Zhu Y, Huang J, Sluys R, Liu Y, Sun T, Wang A-T, Zhang Y (2024) Integrative description of a new species of Dugesia (Platyhelminthes, Tricladida, Dugesiidae) from southern China, with its complete mitogenome and a biogeographic evaluation. Zoosystematics and Evolution 100(1): 167-182. https://doi.org/10.3897/zse.100.114016
Figure 5 External morphology of Dugesia ancoraria. A. Living sexual animal in dorsal view; B. Living sexual animal in ventral view; C. Anterior end, dorsal view; D. Ventral view of rear end, showing pharynx, mouth and gonopore. Scale bars: 500 μm.
Figure 4 from: Zhu Y, Huang J, Sluys R, Liu Y, Sun T, Wang A-T, Zhang Y (2024) Integrative description of a new species of Dugesia (Platyhelminthes, Tricladida, Dugesiidae) from southern China, with its complete mitogenome and a biogeographic evaluation. Zoosystematics and Evolution 100(1): 167-182. https://doi.org/10.3897/zse.100.114016
Figure 4 Possible mechanisms of mitochondrial gene rearrangement in Continenticola estimated using CREx, with reference to phylogenetic relationships. On the left-hand side, phylogenetic tree obtained from Maximum likelihood and Bayesian analysis of the concatenated dataset for the protein-coding and rRNA genes within mitochondrial genomes; numbers at nodes indicate support values (pp/bs); Asterisks (*) indicate that bootstrap is not applicable to these nodes because of different topologies of trees generated by BI and ML methods. Pink lines connect species that share the same gene order. On the right-hand side, changes of gene order in mitochondrial genomes in several species of triclad; protein-coding genes in blue, tRNA genes in white, rRNA genes in grey; lines with different colours indicate transpositions of different genes; red lines indicate tandem duplication random loss (TDRL) events between species, while the orange colour indicates where TDRL events occurred.
Figure 2 from: Zhu Y, Huang J, Sluys R, Liu Y, Sun T, Wang A-T, Zhang Y (2024) Integrative description of a new species of Dugesia (Platyhelminthes, Tricladida, Dugesiidae) from southern China, with its complete mitogenome and a biogeographic evaluation. Zoosystematics and Evolution 100(1): 167-182. https://doi.org/10.3897/zse.100.114016
Figure 2 Maximum likelihood phylogenetic tree topology inferred from the concatenated dataset (18S rDNA, ITS-1, 28S rDNA and COI). Numbers at nodes indicate support values (bootstrap/ posterior probability). Asterisks (*) indicate support values lower than 50% bs/0.50 pp, or posterior probability not applicable to this node, because of different topologies of trees generated by BI and ML methods. Scale bar: substitutions per site.
Figure 3 from: Zhu Y, Huang J, Sluys R, Liu Y, Sun T, Wang A-T, Zhang Y (2024) Integrative description of a new species of Dugesia (Platyhelminthes, Tricladida, Dugesiidae) from southern China, with its complete mitogenome and a biogeographic evaluation. Zoosystematics and Evolution 100(1): 167-182. https://doi.org/10.3897/zse.100.114016
Figure 3 Arrangement of the mitochondrial genome of Dugesia ancoraria. Outer circle: annotation of genes, with protein-coding genes, ribosomal RNAs and transfer RNAs represented by cyan, orange, and red, respectively. Intermediate circle: sequencing coverage, with green colour indicating coverage greater than 95% average coverage. Inner circle, with the blue colour indicating GC content and the thin orange circle indicating 50% of GC content. The picture in the middle represents an individual of D. ancoraria.
Figure 1 from: Zhu Y, Huang J, Sluys R, Liu Y, Sun T, Wang A-T, Zhang Y (2024) Integrative description of a new species of Dugesia (Platyhelminthes, Tricladida, Dugesiidae) from southern China, with its complete mitogenome and a biogeographic evaluation. Zoosystematics and Evolution 100(1): 167-182. https://doi.org/10.3897/zse.100.114016
Figure 1 Locality and habitat of Dugesia ancoraria. A. Sampling locality in Guangdong Province, China; B, C. Habitat at sampling locality.
Figure 7 from: Zhu Y, Huang J, Sluys R, Liu Y, Sun T, Wang A-T, Zhang Y (2024) Integrative description of a new species of Dugesia (Platyhelminthes, Tricladida, Dugesiidae) from southern China, with its complete mitogenome and a biogeographic evaluation. Zoosystematics and Evolution 100(1): 167-182. https://doi.org/10.3897/zse.100.114016
Figure 7 Dugesia ancoraria, paratype PLA-0102, sagittal sections. A. Photomicrograph showing ejaculatory duct, penis papilla, and seminal vesicle; B. Photomicrograph showing copulatory bursa, bursal canal, and gonopore. Scale bars: 100 μm.
Supplementary material 1 from: Zhu Y, Huang J, Sluys R, Liu Y, Sun T, Wang A-T, Zhang Y (2024) Integrative description of a new species of Dugesia (Platyhelminthes, Tricladida, Dugesiidae) from southern China, with its complete mitogenome and a biogeographic evaluation. Zoosystematics and Evolution 100(1): 167-182. https://doi.org/10.3897/zse.100.114016
Bayesian inference phylogenetic tree topology
Figure 9 from: Zhu Y, Huang J, Sluys R, Liu Y, Sun T, Wang A-T, Zhang Y (2024) Integrative description of a new species of Dugesia (Platyhelminthes, Tricladida, Dugesiidae) from southern China, with its complete mitogenome and a biogeographic evaluation. Zoosystematics and Evolution 100(1): 167-182. https://doi.org/10.3897/zse.100.114016
Figure 9 Dugesia ancoraria, Sagittal reconstruction of the copulatory apparatus of the holotype. A. Male copulatory apparatus; B. Female copulatory apparatus. Scale bars: 100 μm.
Figure 167 from: Bruneau A, Queiroz LP, Ringelberg JJ, Borges LM, Bortoluzzi RLC, Brown GK, Cardoso DBOS, Clark RP, Conceição AS, Cota MMT, Demeulenaere E, Duno de Stefano R, Ebinger JE, Ferm J, Fonseca-Cortés A, Gagnon E, Grether R, Guerra E, Haston E, Herendeen PS, Hernández HM, Hopkins HCF, Huamantupa-Chuquimaco I, Hughes CE, Ickert-Bond SM, Iganci J, Koenen EJM, Lewis GP, Lima HC, Lima AG, Luckow M, Marazzi B, Maslin BR, Morales M, Morim MP, Murphy DJ, O'Donnell SA, Oliveira FG, Oliveira ACS, Rando JG, Ribeiro PG, Ribeiro CL, Santos FS, Seigler DS, Silva GS, Simon MF, Soares MVB, Terra V (2024) Advances in Legume Systematics 14. Classification of Caesalpinioideae. Part 2: Higher-level classification. PhytoKeys 240: 1-552. https://doi.org/10.3897/phytokeys.240.101716
Figure 167 Distribution of Parkia based on quality-controlled digitised herbarium records. The presence of the West African P. biglobosa (Jacq.) R. Br. ex G. Don in Haiti, where it is naturalised, is not shown. See Suppl. material 1 for the source of occurrence data.
Figure 5 from: Bermúdez-Cova MA, Hofmann TA, Yorou NS, Piepenbring M (2024) Systematic revision of species of Atractilina and Spiropes hyperparasitic on Meliolales (Ascomycota) in the tropics. MycoKeys 103: 167-213. https://doi.org/10.3897/mycokeys.103.115799
Figure 5 Spiropes caribensis (PRM 8311531) a conidia shown in optical section b, c as seen by SEMb conidium c basis of a conidium with a flat scar. Scale bars: 10 μm (a); 9 μm (b); 4 μm (c).
Figure 7 from: Bermúdez-Cova MA, Hofmann TA, Yorou NS, Piepenbring M (2024) Systematic revision of species of Atractilina and Spiropes hyperparasitic on Meliolales (Ascomycota) in the tropics. MycoKeys 103: 167-213. https://doi.org/10.3897/mycokeys.103.115799
Figure 7 Spiropes clavatus (IMI 102772) a conidiophores with scars b conidia shown in optical section c, d as seen by SEMc conidiophore with scars d conidium. Scale bars: 5 μm (a); 2.5 μm (b); 1 μm (c); 5 μm (d).
Figure 9 from: Bermúdez-Cova MA, Hofmann TA, Yorou NS, Piepenbring M (2024) Systematic revision of species of Atractilina and Spiropes hyperparasitic on Meliolales (Ascomycota) in the tropics. MycoKeys 103: 167-213. https://doi.org/10.3897/mycokeys.103.115799
Figure 9 Spiropes deightonii (IMI48956a) a conidiophores b conidia, as seen by LM (two upper spores; the thickness of the wall is indicated only in the drawing on the left-hand side) and by SEM (bottom spore) c, d as seen by SEMc conidiophore d conidia. Scale bars: 5 μm (a, b); 8 μm (c); 5 μm (d).
Figure 8 from: Bermúdez-Cova MA, Hofmann TA, Yorou NS, Piepenbring M (2024) Systematic revision of species of Atractilina and Spiropes hyperparasitic on Meliolales (Ascomycota) in the tropics. MycoKeys 103: 167-213. https://doi.org/10.3897/mycokeys.103.115799
Figure 8 Spiropes croissantiformis (MB 110) a synnemata (indicated by white arrows) growing on colonies of Meliola cf. xylopiaeb synnema (indicated by a black arrow) c conidiophores with scars and young conidia, shown in optical section d conidia shown in optical section. The thickness of the wall is only shown for the first spore from the left e, f as seen by SEMe part of a conidiophore with scars f conidia. Scale bars: 160 μm (a); 400 μm (b); 5 μm (c, d); 5 μm (e); 10 μm (f).
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.