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Fig. 53 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Fig. 53. Neighbor joining tree of ITS2 data of nine species of Loxosceles Heineken & Lowe, 1832 from Mexico. Colors of branches indicate different species. Numbers at nodes represent bootstrap support values. Red circle at node represent Loxosceles tolantongo sp. nov.
Fig. 57 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Fig. 57. Haplotype network from the CO1 data obtained with TCS using PopArt. Each circle represents the haplotypes found in nine species of Loxosceles Heineken & Lowe, 1832 from Mexico. Numbers on branches indicate the number of mutations between haplotypes.
Figs 36–43 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Figs 36–43. Variation of the seminal receptacles of females, dorsal view. 36–39. Loxosceles tolantongo sp. nov. 36, 39. Tourist Center Grutas de Tolantongo, Municipality of Cardonal. 37–38. 500 m west of the entrance No. 5 to the Tourist Center Grutas de Tolantongo, Municipality of Cardonal. 40–43. Loxosceles jaca Gertsch & Ennik, 1983. 2.5 km north of Jacala de Ledezma, Municipality of Jacala de Ledezma, Hidalgo. Scale bars = 0.2 mm.
Figure 2 from: Monjardim M, Azevedo CO, Fagundes V (2020) DNA barcoding and hypopygium shape support delimitation of sympatric Dissomphalus species (Hymenoptera, Bethylidae) from the Atlantic rainforest. ZooKeys 959: 87-97. https://doi.org/10.3897/zookeys.959.53737
Figure 2 A bayesian consensus tree generated from the 304-bp COI from 29 representatives of the species complex. Posterior probabilities (PP) and bootstrap (BT) indicated above branches. The species D. thaianus, D. wusheanus and D. chiangmaiensis were used as outgroups to root the tree B–D hypopygium magnified 9.2×, corresponding to each clade.
Figure 1 from: Monjardim M, Azevedo CO, Fagundes V (2020) DNA barcoding and hypopygium shape support delimitation of sympatric Dissomphalus species (Hymenoptera, Bethylidae) from the Atlantic rainforest. ZooKeys 959: 87-97. https://doi.org/10.3897/zookeys.959.53737
Figure 1 Locations of the samples in Brazil and Paraguay (see Appendix I for geographic coordinates).
Supplementary material 4 from: Martínez-Domínguez L, Nicolalde-Morejón F, Lorea-Hernández FG, Vergara-Silva F, Stevenson DWm (2020) A novelty in Ceratozamia (Zamiaceae, Cycadales) from the Sierra Madre del Sur, Mexico: biogeographic and morphological patterns, DNA barcoding and phenology. PhytoKeys 156: 1-25. https://doi.org/10.3897/phytokeys.156.53502
Table S1.
Supplementary material 2 from: Martínez-Domínguez L, Nicolalde-Morejón F, Lorea-Hernández FG, Vergara-Silva F, Stevenson DWm (2020) A novelty in Ceratozamia (Zamiaceae, Cycadales) from the Sierra Madre del Sur, Mexico: biogeographic and morphological patterns, DNA barcoding and phenology. PhytoKeys 156: 1-25. https://doi.org/10.3897/phytokeys.156.53502
Fig. S1. Strict consensus tree of nine equally parsimonious trees
Supplementary material 3 from: Martínez-Domínguez L, Nicolalde-Morejón F, Lorea-Hernández FG, Vergara-Silva F, Stevenson DWm (2020) A novelty in Ceratozamia (Zamiaceae, Cycadales) from the Sierra Madre del Sur, Mexico: biogeographic and morphological patterns, DNA barcoding and phenology. PhytoKeys 156: 1-25. https://doi.org/10.3897/phytokeys.156.53502
File S2
Figure 8 from: Martínez-Domínguez L, Nicolalde-Morejón F, Lorea-Hernández FG, Vergara-Silva F, Stevenson DWm (2020) A novelty in Ceratozamia (Zamiaceae, Cycadales) from the Sierra Madre del Sur, Mexico: biogeographic and morphological patterns, DNA barcoding and phenology. PhytoKeys 156: 1-25. https://doi.org/10.3897/phytokeys.156.53502
Figure 8 Ceratozamia leptocerasA detail of ovulate strobilus and megasporophylls B seeds C abaxial view of microsporophylls D cataphylls A, B, D are based on L. Martínez-Domínguez & F. Nicolalde-Morejón 1867; C is based on L. Martínez-Domínguez et al. 1757.
Figure 7 from: Martínez-Domínguez L, Nicolalde-Morejón F, Lorea-Hernández FG, Vergara-Silva F, Stevenson DWm (2020) A novelty in Ceratozamia (Zamiaceae, Cycadales) from the Sierra Madre del Sur, Mexico: biogeographic and morphological patterns, DNA barcoding and phenology. PhytoKeys 156: 1-25. https://doi.org/10.3897/phytokeys.156.53502
Figure 7 Illustration of Ceratozamia leptocerasA cataphyll B microsporophyll C ovulate strobilus D leaves and detail of leaflets E stem F seed G leaflet. This illustration is based on L. Martínez-Domínguez & F. Nicolalde-Morejón 1867, with exception microsporophyll, which is based on L. Martínez-Domínguez et al. 1757.
Figure 6 from: Martínez-Domínguez L, Nicolalde-Morejón F, Lorea-Hernández FG, Vergara-Silva F, Stevenson DWm (2020) A novelty in Ceratozamia (Zamiaceae, Cycadales) from the Sierra Madre del Sur, Mexico: biogeographic and morphological patterns, DNA barcoding and phenology. PhytoKeys 156: 1-25. https://doi.org/10.3897/phytokeys.156.53502
Figure 6 Ceratozamia leptocerasA adult plant in habit B ovulate strobilus C detail of leaflets D seedling E ptyxis F prickles on petiole.
Figure 5 from: Martínez-Domínguez L, Nicolalde-Morejón F, Lorea-Hernández FG, Vergara-Silva F, Stevenson DWm (2020) A novelty in Ceratozamia (Zamiaceae, Cycadales) from the Sierra Madre del Sur, Mexico: biogeographic and morphological patterns, DNA barcoding and phenology. PhytoKeys 156: 1-25. https://doi.org/10.3897/phytokeys.156.53502
Figure 5 Phenological patterns of ovulate strobili in Ceratozamia leptoceras and morphologically similar species.
Figure 3 from: Martínez-Domínguez L, Nicolalde-Morejón F, Lorea-Hernández FG, Vergara-Silva F, Stevenson DWm (2020) A novelty in Ceratozamia (Zamiaceae, Cycadales) from the Sierra Madre del Sur, Mexico: biogeographic and morphological patterns, DNA barcoding and phenology. PhytoKeys 156: 1-25. https://doi.org/10.3897/phytokeys.156.53502
Figure 3 Leaflet variation at the population level ACeratozamia leptoceras, a.1, a.2 San Pedro Cuitlapan, a.3 Riverbank "Chipili" BC. robusta, b.1 Cañón del Sumidero, b.2, b.3 Cuchumbak CC. subroseophylla, c.1 Sinapan, c.2 "El Vigía". All leaflets were collected from middle and right side of leaf with exception of two first leaflets for C. leptoceras (left).
Figure 4 from: Martínez-Domínguez L, Nicolalde-Morejón F, Lorea-Hernández FG, Vergara-Silva F, Stevenson DWm (2020) A novelty in Ceratozamia (Zamiaceae, Cycadales) from the Sierra Madre del Sur, Mexico: biogeographic and morphological patterns, DNA barcoding and phenology. PhytoKeys 156: 1-25. https://doi.org/10.3897/phytokeys.156.53502
Figure 4 Abaxial view of microsporophylls ACeratozamia leptoceras, a.1, a.2 San Pedro Cuitlapan BC. robusta, b.1 Cuchumback, b.2 Cañón del Sumidero CC. subroseophylla, c.1 "El Vigía", c.2 Sinapan. For more detail of differences in character states see Table 1.
Figure 2 from: Martínez-Domínguez L, Nicolalde-Morejón F, Lorea-Hernández FG, Vergara-Silva F, Stevenson DWm (2020) A novelty in Ceratozamia (Zamiaceae, Cycadales) from the Sierra Madre del Sur, Mexico: biogeographic and morphological patterns, DNA barcoding and phenology. PhytoKeys 156: 1-25. https://doi.org/10.3897/phytokeys.156.53502
Figure 2 Elevational distribution of Ceratozamia. Intervals of altitudinal distribution of Ceratozamia species are shown.
Figure 1 from: Martínez-Domínguez L, Nicolalde-Morejón F, Lorea-Hernández FG, Vergara-Silva F, Stevenson DWm (2020) A novelty in Ceratozamia (Zamiaceae, Cycadales) from the Sierra Madre del Sur, Mexico: biogeographic and morphological patterns, DNA barcoding and phenology. PhytoKeys 156: 1-25. https://doi.org/10.3897/phytokeys.156.53502
Figure 1 Distribution map of the genus Ceratozamia (black solid circles). Distributions for species morphologically similar to Ceratozamia leptoceras are represented with an asterisk and a double circle. Guerrero state and Putla subregion of cloud forest are shown with outline and shaded area, respectively. Inset: points corresponding to the Guerrero mountain range where Ceratozamia was collected.
Supplementary material 1 from: Nugent CM, Adamowicz SJ (2020) Alignment-free classification of COI DNA barcode data with the Python package Alfie. Metabarcoding and Metagenomics 4: e55815. https://doi.org/10.3897/mbmg.4.55815
File S1 – Training, test, and validation data sets used in model training and analysis
Figure 4 from: Yu H-J, Lin X-L, Zhang R-L, Wang Q, Wang X-H (2020) Species delimitation and life stage association of Propsilocerus Kieffer, 1923 (Diptera, Chironomidae) using DNA barcodes. ZooKeys 975: 79-86. https://doi.org/10.3897/zookeys.957.54668
Figure 4 Head capsules of Propsilocerus akamusi (Tokunaga, 1938) and Propsilocerus taihuensis (Wen, Zhou & Rong, 1994) A head capsule of P. akamusi, ventral view B head capsule of P. taihuensis, ventral view C mandible of P. akamusiD mandible of P. taihuensisE antenna of P. akamusiF antenna of P. taihuensisG premento-hypopharyngeal complex of P. taihuensis. Scale bar: 100 µm (A, B), 50 µm (C, D), 25 µm (E, F).
Figure 3 from: Yu H-J, Lin X-L, Zhang R-L, Wang Q, Wang X-H (2020) Species delimitation and life stage association of Propsilocerus Kieffer, 1923 (Diptera, Chironomidae) using DNA barcodes. ZooKeys 975: 79-86. https://doi.org/10.3897/zookeys.957.54668
Figure 3 Neighbor-joining tree based on the 42 COI barcode sequences of Propsilocerus. Bootstrap support (1000 replicates) > 70% are labelled.
Figure 2 from: Yu H-J, Lin X-L, Zhang R-L, Wang Q, Wang X-H (2020) Species delimitation and life stage association of Propsilocerus Kieffer, 1923 (Diptera, Chironomidae) using DNA barcodes. ZooKeys 975: 79-86. https://doi.org/10.3897/zookeys.957.54668
Figure 2 Histogram of pairwise K2P distances of 42 aligned sequences of five Propsilocerus morphospecies. The figure was a result of analysis with ABGD using the K2P model. The horizontal axis shows the pairwise K2P-distance, and the vertical axis shows the number of pairwise sequence comparisons.
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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.