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FIGURE 9 in A review of Chiromantes obtusifrons (Dana, 1851) (Decapoda: Brachyura: Sesarmidae), with descriptions of four new sibling-species from Christmas Island (Indian Ocean), Guam and Taiwan
FIGURE 9. Ventral views of thoracic sternum and anterior parts of male abdomens. A, Chiromantes obtusifrons (Dana, 1851), UFUF-14837, male (17.7×13.2 mm), Hawaiian Is.; B, C. obtusifrons (Dana, 1851), ZRC 2002.0220, male (19.7×14.7 mm), Hawaiian Is.; C, C. silus sp. nov., ZRC 2012.0787, holotype male (16.3×12.8 mm), Guam; D, C. leptomerus sp. nov., NMNS 7028-001, holotype male (16.8×12.7 mm), Taiwan; E, C. eurymerus sp. nov., NMNS-7028-002, holotype male (18.7×14.8 mm), Taiwan; F, C. garfunkel sp. nov., QM-W29172, holotype male (17.0×13.0 mm), Christmas I.
FIGURE 5 in A review of Chiromantes obtusifrons (Dana, 1851) (Decapoda: Brachyura: Sesarmidae), with descriptions of four new sibling-species from Christmas Island (Indian Ocean), Guam and Taiwan
FIGURE 5. Outer views of chelae. A, Chiromantes obtusifrons (Dana, 1851), UFUF-14837, male (17.7×13.2 mm), Hawaiian Is.; B, C. obtusifrons (Dana, 1851), ZRC-2002.0220, male (19.7×14.7 mm), Hawaiian Is.; C, C. silus sp. nov., ZRC 2012.0787, holotype male (16.3×12.8 mm), Guam; D, C. leptomerus sp. nov., NMNS 7028-001, holotype male (16.8×12.7 mm), Taiwan; E, C. eurymerus sp. nov., NMNS-7028-002, holotype male (18.7×14.8 mm), Taiwan; F, C. garfunkel sp. nov., QM-W29172, holotype male (17.0×13.0 mm), Christmas I.
FIGURE 8 in A review of Chiromantes obtusifrons (Dana, 1851) (Decapoda: Brachyura: Sesarmidae), with descriptions of four new sibling-species from Christmas Island (Indian Ocean), Guam and Taiwan
FIGURE 8. Frontal margins (ventral views). A, Chiromantes obtusifrons (Dana, 1851), ZRC 2002.0220, male (19.7×14.7 mm), Hawaiian Is.; B, C. silus sp. nov., ZRC 2012.0787, holotype male (16.3×12.8 mm), Guam; C, C. leptomerus sp. nov., NMNS 7028-001, holotype male (16.8×12.7 mm), Taiwan; D, C. garfunkel sp. nov., QM-W29172, holotype male (17.0×13.0 mm), Christmas I.
FIGURE 2 in A review of Chiromantes obtusifrons (Dana, 1851) (Decapoda: Brachyura: Sesarmidae), with descriptions of four new sibling-species from Christmas Island (Indian Ocean), Guam and Taiwan
FIGURE 2. Colours in life. Chiromantes garfunkel sp. nov. A, ZRC 2012.0782, paratype female (11.1×8.3 mm), Flying Fish Cove; B–D, QM-W29172, holotype male (17.0×13.0 mm), Greta Beach; E, ZRC 2012.0783, paratype ovig. female (11.4×8.6 mm), Flying Fish Cove; F, ZRC 2012.0786, paratype female (11.6×8.6 mm), Lily Beach. All from Christmas I.. Photographs by H. H. Tan.
FIGURE 4. Overall dorsal views. A in A review of Chiromantes obtusifrons (Dana, 1851) (Decapoda: Brachyura: Sesarmidae), with descriptions of four new sibling-species from Christmas Island (Indian Ocean), Guam and Taiwan
FIGURE 4. Overall dorsal views. A, Chiromantes obtusifrons (Dana, 1851), UFUF-14837, male (17.7×13.2 mm), Hawaiian Is.; B, C. silus sp. nov., ZRC 2012.0787, holotype male (16.3×12.8 mm), Guam; C, C. leptomerus sp. nov., NMNS 7028-001, holotype male (16.8×12.7 mm), Taiwan; D, C. eurymerus sp. nov., NMNS-7028-002, holotype male (18.7×14.8 mm), Taiwan; E, C. garfunkel sp. nov., QM-W29172, holotype male (17.0×13.0 mm), Christmas I.
FIGURE 7. Last walking legs. A in A review of Chiromantes obtusifrons (Dana, 1851) (Decapoda: Brachyura: Sesarmidae), with descriptions of four new sibling-species from Christmas Island (Indian Ocean), Guam and Taiwan
FIGURE 7. Last walking legs. A, Chiromantes obtusifrons (Dana, 1851), UFUF-14837, male (17.7×13.2 mm), Hawaiian Is.; B, C. obtusifrons (Dana, 1851), ZRC 2002.0220, male (19.7×14.7 mm), Hawaiian Is.; C, C. silus sp. nov., ZRC 2012.0787, holotype male (16.3×12.8 mm), Guam; D, C. leptomerus sp. nov., NMNS 7028-001, holotype male (16.8×12.7 mm), Taiwan; E, C. eurymerus sp. nov., NMNS-7028-002, holotype male (18.7×14.8 mm), Taiwan; F, C. garfunkel sp. nov., QM-W29172, holotype male (17.0×13.0 mm), Christmas I.. A, B, E, right legs; C, D, F, left legs.
FIGURE 1 in A review of Chiromantes obtusifrons (Dana, 1851) (Decapoda: Brachyura: Sesarmidae), with descriptions of four new sibling-species from Christmas Island (Indian Ocean), Guam and Taiwan
FIGURE 1. Colours in life. Chiromantes obtusifrons (Dana, 1851). A–C, UFUF-14837, male (17.7×13.2 mm), Hawaiian Is.; D, UFUF-14837, female (15.7×11.6 mm), Hawaiian Is. Photographs by G. Paulay.
FIGURE 6 in A review of Chiromantes obtusifrons (Dana, 1851) (Decapoda: Brachyura: Sesarmidae), with descriptions of four new sibling-species from Christmas Island (Indian Ocean), Guam and Taiwan
FIGURE 6. Inner views of chelae. A, Chiromantes obtusifrons (Dana, 1851), UFUF-14837, male (17.7×13.2 mm), Hawaiian Is.; B, C. obtusifrons (Dana, 1851), ZRC 2002.0220, male (19.7×14.7 mm), Hawaiian Is.; C, C. silus sp. nov., ZRC 2012.0787, holotype male (16.3×12.8 mm), Guam; D, C. leptomerus sp. nov., NMNS 7028-001, holotype male (16.8×12.7 mm), Taiwan; E, C. eurymerus sp. nov., NMNS-7028-002, holotype male (18.7×14.8 mm), Taiwan; F, C. garfunkel sp. nov., QM-W29172, holotype male (17.0×13.0 mm), Christmas I.
FIGURE 3 in A review of Chiromantes obtusifrons (Dana, 1851) (Decapoda: Brachyura: Sesarmidae), with descriptions of four new sibling-species from Christmas Island (Indian Ocean), Guam and Taiwan
FIGURE 3. Colours in life. A–C, Chiromantes silus sp. nov., Guam; A, ZRC 2000.0573, female (15.2×11.2 mm); B, C, ZRC 2001.0742, male (15.7×11.7 mm). D–H, Chiromantes leptomerus sp. nov., D, RUMF-ZC-2104, male (17.5×13.7 mm), Muigah, Miyako Island, Ryukyu Islands, Japan; E, RUMF-ZC-2076, male (19.7×14.6 mm), Honba Coast, Minamidaito Island, Japan; F, male, southern Taiwan, specimen not kept; H, NMNS, male (17.1×13.0 mm), Siatanzai, Kenting, Pingtung County, Taiwan. I –J, Chiromantes eurymerus sp. nov., I, NMNS, male (17.5×13.4 mm); J, NMNS, male (16.7×12.3 mm), Siatanzai, Kenting, Taiwan. Photographs: B, C by H.-C. Liu; D–E by Y. Fujita; F–J by H.-T. Shih.
GPS data set used in the paper "Anelastic response of the Earth's crust underneath the Canary Islands revealed from ocean tide loading observations"
<p>Data set of continuous GPS observations at CVAN site in Gran Canaria (Canary Islands, Spain). The period of observation spans from July 3, 2013 to November 30, 2015. Data was acquired during the execution of the research project GCL2011-25494 of the Spanish Research Agency. </p> <p>This data set belongs to the Research Group ‘Geodesia’ of the University Complutense of Madrid, Spain, and has been used in the paper "Anelastic response of the Earth's crust underneath the Canary Islands revealed from ocean tide loading observations", by Jose Arnoso, Machiel S. Bos, Maite Benavent, Nigel T. Penna, Sergio Sainz-Maza, submitted to Geophysical Journal International, 2022.</p>
FIGURE 8 in The family Hydroptilidae Curtis (Trichoptera) in the Ogasawara Islands, northwestern Pacific, with particular reference to adaptive radiation in the oceanic islands
FIGURE 8. Habitat and habitus views of adult, larva, and case of Hydroptila ishiura sp. nov. 8A, adult habitus on leaf of riparian tree; 8B, larva and case in hygropetric habitat, left lateral; 8C, same, enlargement of small section of case showing piece of bryophyte (a) and diatom (b); 8D, larvae with cases on rock, dorsal; 8E, hygropetric habitat at type locality; 8F, stony stream habitat at Takinoura-gawa, Ani-jima.
FIGURE 2 in The family Hydroptilidae Curtis (Trichoptera) in the Ogasawara Islands, northwestern Pacific, with particular reference to adaptive radiation in the oceanic islands
FIGURE 2. Phylogenetic trees of six species of Hydroptila endemic to the Ogasawara Islands (H. demersa sp. nov., H. ishiura sp. nov., H. tokoyo sp. nov., H. hahajima sp. nov., H. nagahama sp. nov., and H. ogasawaraensis Ito 2011, in Ito et al. 2011) and the outgroup H. pulchricornis Species Group from mainland Japan (H. phenianica Botosaneanu 1970, H. chinensis Xue & Yang 1990, H. oguranis Kobayashi 1974 and/or H. dampfi Ulmer 1929), based on (2A) 429-bp mitochondrial COI and (2B) 306-bp nuclear 28S sequences. See Table 1 and Fig. 1 for locality of each specimen. The topology is the same between the trees drawn by the neighbor-joining method (NJ) and the maximum likelihood (ML). The numerals at nodes show % bootstrap probabilities in ML (NJ).
FIGURE 5 in The family Hydroptilidae Curtis (Trichoptera) in the Ogasawara Islands, northwestern Pacific, with particular reference to adaptive radiation in the oceanic islands
FIGURE 5. Larva, case, and habitat of Hydroptila demersa sp. nov. in type locality. 5A & 5B, larvae in cases: 5A, dorsal, in field; 5B, left lateral, in alcohol. 5C & 5D, habitat.
FIGURE 3 in The family Hydroptilidae Curtis (Trichoptera) in the Ogasawara Islands, northwestern Pacific, with particular reference to adaptive radiation in the oceanic islands
FIGURE 3. Male of Hydroptila demersa sp. nov. 3A, habitus, dorsal; 3B, head and thorax, dorsal; 3C, head, right lateral; 3D, abdominal segments I–X, left lateral, with enlargement figures of anterolateral process (paired) of sternite V and posteroventral process of sternite VII; 3E, genitalia, left lateral; 3F, same, dorsal; 3G, same, ventral; 3H, phallic apparatus, left lateral. Abbreviations: IX = abdominal segment IX; dh = dorsolateral hump; dp = dorsal plate; ia = inferior appendage (paired); lap = labial palpus (paired); map = maxillary palpus (paired); pa = phallic apparatus; sp = subgenital plate.
FIGURE 10 in The family Hydroptilidae Curtis (Trichoptera) in the Ogasawara Islands, northwestern Pacific, with particular reference to adaptive radiation in the oceanic islands
FIGURE 10. Habitats (type localities) and immature stages of Hydroptila spp. H. ogasawaraensis Ito 2011 (in Ito et al. 2011, 10A–10D): 10A, habitat, larvae found on rock in region enclosed by dashed oval; 10B, other part of habitat; 10C, habitus of larva in case in field, dorsal; 10D, habitus of larva in case in alcohol, right lateral. H. spp., possibly H. ogasawaraensis or H. tokoyo n. sp., Tokoyo-no-taki (type locality of H. tokoyo) (10E, 10F): 10E, habitat; 10F, habitus of larva in case in alcohol, left lateral. Scale bars, 1 mm.
FIGURE 7 in The family Hydroptilidae Curtis (Trichoptera) in the Ogasawara Islands, northwestern Pacific, with particular reference to adaptive radiation in the oceanic islands
FIGURE 7. Larva of Hydroptila ishiura sp. nov. 7A, habitus, right lateral; 7B, habitus, dorsal; 7C, head, ventral; 7D, right antenna, right lateral; 7E, right foretrochantin and foreleg, right lateral; 7F1–7F3, abdominal segment I, dorsal, variations; 7G, anal claw, right lateral (paired). 8, 9 = primary setae 8 and 9 (Wiggins 1996).
FIGURE 11 in The family Hydroptilidae Curtis (Trichoptera) in the Ogasawara Islands, northwestern Pacific, with particular reference to adaptive radiation in the oceanic islands
FIGURE 11. Adults of Hydroptila hahajima sp. nov. and H. nagahama sp. nov. Adults of H. hahajima (11A–11G): 11A, male abdominal segments I–X, left lateral; 11B, male genitalia, left lateral; 11C, same, dorsal; 11D, same, ventral; 11E, phallic apparatus, left lateral; 11F, female abdominal segments VIII–X, ventral; 11G, vaginal apparatus, ventral. Adults of H. nagahama (11H–11N): 11H, male abdominal segments I–X, left lateral; 11I, male genitalia, left lateral; 11J, same, dorsal; 11K, same, ventral; 11L, phallic apparatus, left lateral; 11M, female abdominal segments VIII–X, ventral; 11N, vaginal apparatus, ventral. Abbreviations: VIII–X = abdominal segments VIII–X; ch = curled hook (paired); dp = dorsal plate; dsp IX = dark and setose plate of segment IX; ia = inferior appendage (paired); pa = phallic apparatus; lp = lateral process; sp = subgenital plate.
FIGURE 6 in The family Hydroptilidae Curtis (Trichoptera) in the Ogasawara Islands, northwestern Pacific, with particular reference to adaptive radiation in the oceanic islands
FIGURE 6. Adults of Hydroptila ishiura sp. nov. Male (6A–6E): 6A, abdominal segments I–X, left lateral; 6B, genitalia, left lateral; 6C, same, dorsal; 6D, same, ventral; 6E, phallic apparatus, left lateral. Female (6F, 6G): 6F, abdominal segments VIII–X, ventral; 6G, vaginal apparatus, ventral. Abbreviations: VIII–X = abdominal segments VIII–X; dp = dorsal plate; dsp IX = dark and setose plate of segment IX; ia = inferior appendage (paired); lp = lateral process (paired); pa = phallic apparatus; sp = subgenital plate.
FIGURE 9 in The family Hydroptilidae Curtis (Trichoptera) in the Ogasawara Islands, northwestern Pacific, with particular reference to adaptive radiation in the oceanic islands
FIGURE 9. Adults of Hydroptila ogasawaraensis Ito 2011 (in Ito et al. 2011) and H. tokoyo sp. nov. Hydroptila ogasawaraensis (type specimens) (9A–9G): 9A, male abdominal segments I–X, left lateral; 9B, male genitalia, left lateral, with enlarged figure of apex of subgenital plate; 9C, same, dorsal; 9D, same, ventral; 9E, phallic apparatus, left lateral; 9F, female abdominal segments VIII–X, ventral; 9G, vaginal apparatus, ventral. Male of H. tokoyo sp. nov. (9H–9L): 9H, abdominal segments I–X, left lateral; 9I, genitalia, left lateral, with enlarged figure of apex of subgenital plate; 9J, same, dorsal; 9K, same, ventral; 9L, phallic apparatus, left lateral, with enlargement of apical 1/3. Abbreviations: VIII–X = abdominal segments VIII–X; dp = dorsal plate; dsp IX = dark and setose plate of segment IX; ia = inferior appendage (paired); lh = lateral hump; lp = lateral plate; pa = phallic apparatus; sp = subgenital plate.
Data from: Distinctive microbial community and genome structure in coastal seawater from a human-made port and nearby offshore island in northern Taiwan facing the Northwestern Pacific Ocean
<p><span>Pollution in human-made fishing ports caused by petroleum </span><span>from</span><span> boats, dead fish, toxic </span><span>chemicals</span><span>, and effluent </span><span>poses</span><span> a challenge to the organisms in seawater. To decipher the impact of pollution on the microbiome, we collected surface water </span><span>from</span><span> a fishing port and a nearby offshore island in northern Taiwan facing the </span><span>Northwestern Pacific Ocean. By employing 16S </span><span>rRNA gene</span><span> amplicon sequencing and whole-genome shotgun sequencing, we discovered that </span><span>Rhodobacteraceae, Vibrionaceae, and Oceanospirillaceae emerged as the dominant species in the fishing port</span><span>,</span><span> where we found many genes harboring the functions of </span><span>antibiotic</span><span> resistance (</span><span>ansamycin, nitroimidazole, and aminocoumarin), metal tolerance (copper, chromium, iron and multimetal), virulence factors (chemotaxis, flagella, T3SS1), carbohydrate metabolism (biofilm formation and remodeling of bacterial cell </span><span>walls</span><span>), nitrogen metabolism (denitrification, N<sub>2</sub> fixation, and ammonium assimilation), and ABC transporters (phosphate, lipopolysaccharide, and branched-chain amino </span><span>acids</span><span>). The dominant bacteria at the nearby offshore island (</span><span>Alteromonadaceae, Cryomorphaceae, Flavobacteriaceae, Litoricolaceae, and Rhodobacteraceae) were partly similar to those in the South China Sea and the East China Sea. Furthermore, we inferred</span><span> that</span><span> the microbial community network of </span><span>the cooccurrence</span><span> of dominant bacteria </span><span>on the</span><span> offshore island was connected to dominant bacteria in </span><span>the </span><span>fishing port by mutual</span> <span>exclusion. By examining the assembled microbial genomes collected from the coastal seawater of the fishing port, we revealed four genomic islands containing large gene-containing sequences</span><span>,</span><span> including phage integrase, DNA</span> <span>invertase, restriction enzyme, DNA gyrase inhibitor, and antitoxin HigA-1.</span><span> In this study, </span><span>we provided </span><span>clues </span><span>for the possibility of genomic islands as the units of horizontal transfer and as the tools of microbes for facilitating adaptation in a human-made port environment.</span></p>
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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.