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949 results for “species names”
Figure 3 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 3 Cynanchum pingtaoi S.Jin Zeng, G.D.Tang & Miao Liao a follicle and leaves b inflorescence c glands at the base of leaf d top view of flower e side view of flower with two corolla lobes removed f calyx g corolla lobes (each lobe attached to part of the corolla tube), outer surface on the right, inner surface on the left (four drawn) h corolla separation, showing gynostegium with corona lobes i pollinarium j seed. Illustration based on Si-Jin Zeng & Lin-Ya Zeng SJ4825 (IBSC), and drawn by Ding-Han Cui.
Figure 2 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 2 Cynanchum longhushanense G.D.Tang & Miao Liao a flowering branch b cross-section of hollow stem c node with small glands d petiole with glands at the top e inflorescence f bracteoles at the base of the pedicel g flower bud (above: top view; below: side view) h flower (1) top view, (2) lateral view, showing the connivent corona-scales apex, not exceeding the throat of the corolla, (3) side view, showing corolla lobes overlapping to the right and corolla tube i opened corolla, adaxial (above) and abaxial (below) view j ovary with calyx (above: top view, showing glands at the base of the calyx, below: side view of ovary, calyx and pedicel) k ovary l calyx lobes m gynostegium with corona lobes n gynostegium o corona lobes p pollinarium. All photos based on Miao Liao LM78.
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).
Fig. 4. - Scrophularia nana Stiefelh. A in Scrophularia longiflora Benth. and S. nana Stiefelh. (Scrophulariaceae), two distinct species from Iran, confused under the name S. farinosa Boiss.
Fig. 4. - Scrophularia nana Stiefelh. A. Details of Ranjbar 26927 collection at BASU: overview of plant, close-up of leaf, and fruit; B. Lectotype.
FIGURE 2 in Claiming a Boissierian species of Asperula (Rubiaceae), but under a new name: Galium pierredmondii
FIGURE 2. Distribution map of the localities studied.
FIGURE 2 in Novelties in Persicaria (Polygonaceae): description of a narrowly endemic new species from southern Brazil, and typification of the name Polygonum minus
FIGURE 2. Distribution map of Persicaria humboldtiana.
Figure 3 from: Subaşı Ü, Sánchez Pedraja Ó, Piwowarczyk R (2021) Phelypaea boissieri f. lutea (Orobanchaceae), a peculiar new form from Turkey and typification of the name of this species. PhytoKeys 186: 159-167. https://doi.org/10.3897/phytokeys.186.77575
Figure 3 Habitat and general habit of Phelypaea boissieri f. lutea at 2,470 m alt. in Cilo Mountains, Hakkari province, SE Turkey. Phot. Ü. Subaşı.
FIGURES 203–204. Philonix fulvicollis Fitch. 203, asexual gall. 204 in Pairing of sexual and asexual generations of Nearctic oak gallwasps, with new synonyms and new species names (Hymenoptera: Cynipidae, Cynipini)
FIGURES 203–204. Philonix fulvicollis Fitch. 203, asexual gall. 204, sexual gall.
FIGURES 181–182. Neuroterus niger Gillette. 181, asexual gall. 182 in Pairing of sexual and asexual generations of Nearctic oak gallwasps, with new synonyms and new species names (Hymenoptera: Cynipidae, Cynipini)
FIGURES 181–182. Neuroterus niger Gillette. 181, asexual gall. 182, sexual gall.
FIGURES 119–120 in Pairing of sexual and asexual generations of Nearctic oak gallwasps, with new synonyms and new species names (Hymenoptera: Cynipidae, Cynipini)
FIGURES 119–120. Melikaiella tumifica (Osten Sacken). 119, sexual gall. 120, asexual gall.
FIGURES 224–225 in Pairing of sexual and asexual generations of Nearctic oak gallwasps, with new synonyms and new species names (Hymenoptera: Cynipidae, Cynipini)
FIGURES 224–225. Phylloteras poculum (Osten Sacken). 224, asexual gall. 225, sexual gall.
FIGURES 112–113. Bassettia pallida Ashmead. 112 in Pairing of sexual and asexual generations of Nearctic oak gallwasps, with new synonyms and new species names (Hymenoptera: Cynipidae, Cynipini)
FIGURES 112–113. Bassettia pallida Ashmead. 112, asexual gall, 113, putative sexual gall.
FIGURES 42–43. Amphibolips spinosa Ashmead. 42, asexual gall. 43 in Pairing of sexual and asexual generations of Nearctic oak gallwasps, with new synonyms and new species names (Hymenoptera: Cynipidae, Cynipini)
FIGURES 42–43. Amphibolips spinosa Ashmead. 42, asexual gall. 43, sexual gall.
Supplementary material 2 from: Harding LE (2022) Available names for Rangifer (Mammalia, Artiodactyla, Cervidae) species and subspecies. ZooKeys 1119: 117-151. https://doi.org/10.3897/zookeys.1119.80233
Genetic distance
Supplementary material 1 from: Harding LE (2022) Available names for Rangifer (Mammalia, Artiodactyla, Cervidae) species and subspecies. ZooKeys 1119: 117-151. https://doi.org/10.3897/zookeys.1119.80233
Synonymy
FIGURE 2 in New combination and typifications of names of Caribbean species of Myrcia sect. Calyptranthes (Myrtaceae)
FIGURE 2. Lectotype of Calyptranthes fawcettii Krug & Urban (Harris 5213 G [G00359526]).
FIGURE 1 in New combination and typifications of names of Caribbean species of Myrcia sect. Calyptranthes (Myrtaceae)
FIGURE 1. Lectotype of Calyptranthes rigida Swartz (Swartz s.n. S [herb. nº. S S-R-901]).
Figure 5 from: Miralles A, Köhler J, Glaw F, Vences M (2016) Species delimitation methods put into taxonomic practice: two new Madascincus species formerly allocated to historical species names (Squamata, Scincidae). Zoosystematics and Evolution 92(2): 257-275. https://doi.org/10.3897/zse.92.9945
Figure 5 - Distribution maps for Madascincus species. Colored dots are representing localities sampled in the molecular studies by Miralles and Vences (2013), whereas white dots are representing localities of specimens only identified by morphology, and/or type localities. For Madascincus polleni, another locality has been added based on a recent paper from Rakotoarison et al. (2015), who have collected an additional specimen (ZCMV 14157) in Mitsinjo forest in north-western Madagascar (16°02'54.5"S, 45°47'24.1"E). The identity of this specimen is confirmed by both its morphological characteristics and its phylogenetic position inferred from a segment of the 16S rRNA gene (nested within the Madascincus polleni clade, and closely related to the population of Ankarafanstika, GenBank accession number KR025911). Note that for some species,especially Madascincus mouroundavae, additional verified localities exist but these are here excluded for consistency because no samples were examined in the framework of the present study.
Figure 1 from: Miralles A, Köhler J, Glaw F, Vences M (2016) Species delimitation methods put into taxonomic practice: two new Madascincus species formerly allocated to historical species names (Squamata, Scincidae). Zoosystematics and Evolution 92(2): 257-275. https://doi.org/10.3897/zse.92.9945
Figure 1 - Comparison of phylogenetic trees of the genus Madascincus based on nDNA and mtDNA sequences (modified from Miralles and Vences 2013). Nuclear DNA tree inferred from BI analysis of concatenated BDNF, CMOS, PDC and RAG2 sequences compared to the mitochondrial DNA inferred from ND1 and 16S sequences (unpartitioned data set, posterior probabilities indicated for each node, see Miralles and Vences 2013 for details of analysis methods).
Figure 4 from: Miralles A, Köhler J, Glaw F, Vences M (2016) Species delimitation methods put into taxonomic practice: two new Madascincus species formerly allocated to historical species names (Squamata, Scincidae). Zoosystematics and Evolution 92(2): 257-275. https://doi.org/10.3897/zse.92.9945
Figure 4 - Photographic plate showing most of the recognized species of Madascincus (picture not available for Madascincus macrolepis), highlighting the chromatic polymorphism (red tail and brown tail morphs) for Madascincus miafina sp. n., Madascincus pyrurus sp. n. and Madascincus igneocaudatus. Picture I depicts the sole specimen known from Kirindy that in Glaw and Vences (2007) was assigned to a candidate species M. sp. "vitreus", and O depicts a specimen that these authors assigned to a candidate species M. sp. "baeus".
ScienceDex guides
Understand access before you commit
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.