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220 results for “replacement name”
Figure 1 from: Liao M, Zeng S-J, Zeng L-Y, Yin H-J, Yan M-L, Zhang C-F, Tang G-D (2024) A new species and a replacement name in Cynanchum (Apocynaceae, Asclepiadeae) from China. PhytoKeys 241: 49-63. https://doi.org/10.3897/phytokeys.241.111499
Figure 1 Simplified maximum likelihood tree of Cynanchum based on two nuclear regions (nrETS and nrITS) and three plastid markers (rps16 and trnL introns, and trnL-F spacer). Bootstrap support values are given for each node. See Suppl. material 3 for maximum likelihood tree. Clade designations follow those of Khanum et al. (2016) and names in parentheses are the corresponding names that were used in Khanum et al. (2016).
FIGURE 2 in Two new replacement names for Dracaena serrulata Baker and D. robusta Ridley (Asparagaceae, Nolinoideae)
FIGURE 2. Holotype of Dracaena robusta Ridley (K000292067).
FIGURE 1 in Two new replacement names for Dracaena serrulata Baker and D. robusta Ridley (Asparagaceae, Nolinoideae)
FIGURE 1. Holotype of Dracaena serrulata Baker (K000401100).
FIGURE 58 in Taxonomic and nomenclatorial revision within the Neotropical genera of the subtribe Odontocheilina W. Horn in a new sense-19. Odontocheila microptera nom. nov., a new replacement name for O. euryoides W. Horn, 1922, and lectotype designation of O. nitidicollis (Dejean, 1825) (Coleoptera: Cicindelidae)
FIGURE 58. One of the habitats of O. microptera nom. nov. near Tacuarembo, Uruguay.
Figure 1 in A new species of Scaphisoma Leach, 1815 from New Guinea and a new replacement name (Coleoptera: Staphylinidae: Scaphidiinae)
Figure 1. Scaphisoma telnovi sp. nov.: Antennomeres 3 to 11 [scale bar 0.1 mm].
Figure 6 from: Bannikova AA, Jenkins PD, Solovyeva EN, Pavlova SV, Demidova TB, Simanovsky SA, Sheftel BI, Lebedev VS, Fang Y, Dalen L, Abramov AV (2019) Who are you, Griselda? A replacement name for a new genus of the Asiatic short-tailed shrews (Mammalia, Eulipotyphla, Soricidae): molecular and morphological analyses with the discussion of tribal affinities. ZooKeys 888: 133-158. https://doi.org/10.3897/zookeys.888.37982
Figure 6 Comparison of lingual view of posterior region of right mandible to show variation in mandibular and ramal foramina. Mandibular foramen: horizontal arrow; ramal foramen: vertical arrow. From left to right: holotype of Parablarinella griseldaNHMUK 1912.8.5.23; Blarinella quadraticaudaNHMUK 1911.2.1.59; holotype of Blarinella wardiNHMUK 1915.2.3. Scale bar: 1 mm.
Figure 7 from: Bannikova AA, Jenkins PD, Solovyeva EN, Pavlova SV, Demidova TB, Simanovsky SA, Sheftel BI, Lebedev VS, Fang Y, Dalen L, Abramov AV (2019) Who are you, Griselda? A replacement name for a new genus of the Asiatic short-tailed shrews (Mammalia, Eulipotyphla, Soricidae): molecular and morphological analyses with the discussion of tribal affinities. ZooKeys 888: 133-158. https://doi.org/10.3897/zookeys.888.37982
Figure 7 The female karyotype of Blarinella quadraticauda (G17-12) with 2n = 49, NFa = 62: routine Giemsa staining (A) and CBG-banding (B).
Figure 5 from: Bannikova AA, Jenkins PD, Solovyeva EN, Pavlova SV, Demidova TB, Simanovsky SA, Sheftel BI, Lebedev VS, Fang Y, Dalen L, Abramov AV (2019) Who are you, Griselda? A replacement name for a new genus of the Asiatic short-tailed shrews (Mammalia, Eulipotyphla, Soricidae): molecular and morphological analyses with the discussion of tribal affinities. ZooKeys 888: 133-158. https://doi.org/10.3897/zookeys.888.37982
Figure 5 Variation in morphology of the talonid of the lower molars A lingual view of left mandibular ramus of Parablarinella griseldaZMMU G18-252 B lingual view of left mandibular ramus of Blarinella quadraticaudaZMMU G17-12 C lingual view of right mandibular ramus of holotype of Blarinella wardiNHMUK 1915.2.1.3 D comparison of right lower molars to show variation in development of the entoconid and entoconid crest on m1 and m2 and the talonid of m3. Above holotype of Parablarinella griseldaNHMUK 1912.8.5.23, middle Blarinella quadraticaudaNHMUK 1911.2.1.57, below holotype of Blarinella wardiNHMUK 1915.2.1.3. The arrows indicate the entoconid and entoconid crest on m2. Scale bar: 1 mm.
Figure 4 from: Bannikova AA, Jenkins PD, Solovyeva EN, Pavlova SV, Demidova TB, Simanovsky SA, Sheftel BI, Lebedev VS, Fang Y, Dalen L, Abramov AV (2019) Who are you, Griselda? A replacement name for a new genus of the Asiatic short-tailed shrews (Mammalia, Eulipotyphla, Soricidae): molecular and morphological analyses with the discussion of tribal affinities. ZooKeys 888: 133-158. https://doi.org/10.3897/zookeys.888.37982
Figure 4 Skulls from left to right of the holotype of Parablarinella griseldaNHMUK 1912.8.5.23; Blarinella quadraticaudaNHMUK 1911.2.1.59; the holotype of Blarinella wardiNHMUK 1915.2.1.3 (please note that the number written incorrectly as 12.2.1.3 on the skull of this species should read 15.2.1.3). Top row: dorsal view; middle row: ventral view; lower row: left lateral view.
Figure 1 from: Bannikova AA, Jenkins PD, Solovyeva EN, Pavlova SV, Demidova TB, Simanovsky SA, Sheftel BI, Lebedev VS, Fang Y, Dalen L, Abramov AV (2019) Who are you, Griselda? A replacement name for a new genus of the Asiatic short-tailed shrews (Mammalia, Eulipotyphla, Soricidae): molecular and morphological analyses with the discussion of tribal affinities. ZooKeys 888: 133-158. https://doi.org/10.3897/zookeys.888.37982
Figure 1 Sample localities of specimens used for molecular analyses 1 China, Gansu, Lingtan County (NHMUK 12.8.5.23, holotype of Blarinella griselda Thomas, 1912) 2 China, Gansu, Taizishan NR (ZMMU S-195179) 3 China, Sichuan, Ruoergai (Zoige) (ZMMU G17-87) 4 China, Sichuan, Songpan (ZMMU G18-252) 5 China, Shaanxi, Mt.Qinling (after He et al. 2018) 6 China, Gansu, Huixian (ZMMU G17-12) 7 China, Sichuan, Baoxing (type locality of Blarinella quadraticauda (Milne-Edwards, 1872)). Unnumbered localities based on the GenBank data.
Figure 2 from: Bannikova AA, Jenkins PD, Solovyeva EN, Pavlova SV, Demidova TB, Simanovsky SA, Sheftel BI, Lebedev VS, Fang Y, Dalen L, Abramov AV (2019) Who are you, Griselda? A replacement name for a new genus of the Asiatic short-tailed shrews (Mammalia, Eulipotyphla, Soricidae): molecular and morphological analyses with the discussion of tribal affinities. ZooKeys 888: 133-158. https://doi.org/10.3897/zookeys.888.37982
Figure 2 The phylogenetic relationships in Blarinella as reconstructed in MrBayes based on cytb data. Numbers above or below branches correspond to Bayesian posterior probabilities and ML bootstrap values (>50%) generated using fast bootstrap algorithm in IQTREE. The genera Blarina and Cryptotis are used as outgroups.
Figure 3 from: Bannikova AA, Jenkins PD, Solovyeva EN, Pavlova SV, Demidova TB, Simanovsky SA, Sheftel BI, Lebedev VS, Fang Y, Dalen L, Abramov AV (2019) Who are you, Griselda? A replacement name for a new genus of the Asiatic short-tailed shrews (Mammalia, Eulipotyphla, Soricidae): molecular and morphological analyses with the discussion of tribal affinities. ZooKeys 888: 133-158. https://doi.org/10.3897/zookeys.888.37982
Figure 3 MrBayes tree of Soricinae genera as inferred from the concatenation of four nuclear genes. Numbers above or below branches correspond to Bayesian posterior probabilities and ML bootstrap values (>50%) generated using fast bootstrap algorithm in IQTREE. Crocidura fuliginosa is used as outgroup.
Fig. 1 in Billbrownia, New Name to Replace Brownia Johnson (Coleoptera: Elateridae)
Fig. 1. Billbrownia coniungens, dorsal aspect.
Linked collectors and determiners for: Cynanchum neoleucanthum (Apocynaceae), a replacement name for the later illegitimate homonym Cynanchum leucanthum (K. Schum.) K. Schum.
Natural history specimen data linked to collectors and determiners held within, "Cynanchum neoleucanthum (Apocynaceae), a replacement name for the later illegitimate homonym Cynanchum leucanthum (K. Schum.) K. Schum". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/7f3b33f1-a8ca-450d-a2e4-bd41d2d29233">https://bionomia.net/dataset/7f3b33f1-a8ca-450d-a2e4-bd41d2d29233</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/7f3b33f1-a8ca-450d-a2e4-bd41d2d29233">https://gbif.org/dataset/7f3b33f1-a8ca-450d-a2e4-bd41d2d29233</a>. Formatted as a Frictionless Data package.
Figures 10-15 from: Perez-Miles F, Bragio Bonaldo A, Miglio L (2014) Bumba, a replacement name for Maraca Pérez-Miles, 2005 and Bumba lennoni, a new tarantula species from western Amazonia (Araneae, Theraphosidae, Theraphosinae). ZooKeys 448: 1-8. https://doi.org/10.3897/zookeys.448.7920
Figures 10-15 - Bumba lennoni sp. n.: 10–13 male paratype (MPEG 975) 14–15 female paratype (MPEG 19039). 10–12 Copulatory bulb: 10 Prolateral 11 Prolateral, tegular apophysis (TA), detail 12 Prolateral, ring-shaped keel, detail 13 Type III urticating hair, silhouette 14–15 Type IV urticating hair: 14 Silhouette; 15 Tip, detail.
Figures 1-9 from: Perez-Miles F, Bragio Bonaldo A, Miglio L (2014) Bumba, a replacement name for Maraca Pérez-Miles, 2005 and Bumba lennoni, a new tarantula species from western Amazonia (Araneae, Theraphosidae, Theraphosinae). ZooKeys 448: 1-8. https://doi.org/10.3897/zookeys.448.7920
Figures 1-9 - Bumba lennoni sp. n.: 1–4 and 6–8 male holotype (MPEG 983) 5, 9 female paratype (MPEG 19039). 1–2 Tibiae and metatarsi of left leg I: 1 Prolateral 2 Ventral 3–4 Copulatory bulb: 3 Prolateral 4 Retrolateral 5 Spermathecae, dorsal 6 carapace, dorsal 7 abdomen, dorsal 8 retrolateral process in male palpal tibiae 9 sternum, ventral Scales: 1–2: 3 mm; and 3–5: 1 mm.
Figures 1-12 from: Sun H-Y, Yang L, Chen X-S (2014) A new replacement name for Tropidocephala speciosa Ding, 2006 (Hemiptera, Fulgoromorpha, Delphacidae). ZooKeys 462: 43-46. https://doi.org/10.3897/zookeys.462.8332
Figures 1-12 - Tropidocephala dingi Sun, Yang & Chen, nom. n. 1 head and thorax, dorsal view 2 frons and clypeus 3 head and thorax, lateral view 4 male habitus, dorsal view 5 the same, lateral view 6 male genitalia, posterior view 7 the same, lateral view 8 genital style, lateral view 9 the same, posterior view 10 anal segment, aedeagus and genital style, left lateral view 11 aedeagus, lateral view 12 aedeagus, posterior view. Scale 0.5 mm (Figures 1–5); 0.2 mm (Figures 6–12).
Figure 5 from: Johnson RL, Stevens MR, Johnson LA, Robbins MD, Anderson CD, Ricks NJ, Farley KM (2016) Molecular and morphological evidence for Penstemon luculentus (Plantaginaceae): a replacement name for Penstemon fremontii var. glabrescens. PhytoKeys 63: 47-62. https://doi.org/10.3897/phytokeys.63.7952
Figure 5 - Box percentile plots showing variations among plant characteristics between Penstemon fremontii, Penstemon luculentus, and Penstemon scariosus var. garrettii. Boxes delimit the 75th and 25th percentiles. The whiskers delimit the 10th and 90th percentile with outliers shown as circles outside the whiskers. The horizontal bar shows the 50th percentile and the horizontal triangle is the mean.
Figure 4 from: Johnson RL, Stevens MR, Johnson LA, Robbins MD, Anderson CD, Ricks NJ, Farley KM (2016) Molecular and morphological evidence for Penstemon luculentus (Plantaginaceae): a replacement name for Penstemon fremontii var. glabrescens. PhytoKeys 63: 47-62. https://doi.org/10.3897/phytokeys.63.7952
Figure 4 - Plots of eigenvectors of the first two coordinates of principal coordinate analysis based on pairwise RST (top graph) or FST (bottom graph) values computed from genotypes of ten SSR markers on all taxa. Numbers in parentheses on each axis indicate the percent variation explained by each coordinate.
Figure 3 from: Johnson RL, Stevens MR, Johnson LA, Robbins MD, Anderson CD, Ricks NJ, Farley KM (2016) Molecular and morphological evidence for Penstemon luculentus (Plantaginaceae): a replacement name for Penstemon fremontii var. glabrescens. PhytoKeys 63: 47-62. https://doi.org/10.3897/phytokeys.63.7952
Figure 3 - A Plot of the second order difference (ΔK) of K values (2–8) tested in STRUCTURE analysis identifying K = 3 as the optimal number of populations based on the accessions of Penstemon luculentus, Penstemon fremontii, Penstemon scariosus var. garrettii, and Penstemon gibbensii tested. As the K values tested were from 2 to 8, the first difference in K values (ΔK) starts at K = 3 B Bar plot of inferred ancestry coefficients from STRUCTURE analysis results for with K = 3 using 248 samples from 32 accessions. Each number on the x axis represents the accessions ID# in Table 1.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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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