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713 results for “Pygmis”
Lemaitre et al. XY Females exhibit steeper reproductive senescence in African pygmy mouse
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FIGURE 2A–F in New genus and new species of leaf-mimic pygmy grasshoppers from China (Orthoptera: Tetrigidae: Cladonotinae)
FIGURE 2A–F. Deltonotusoides strictivertex sp. nov., holotype female. A—left fore femur, lateral view; B—left mid femur, lateral view; C—left hind femur, lateral view; D—left hind tibia, lateral view; E—left posterior tarsus, lateral view; F—subgenital plate of female, ventral view.
FIGURE 1A–E in New genus and new species of leaf-mimic pygmy grasshoppers from China (Orthoptera: Tetrigidae: Cladonotinae)
FIGURE 1A–E. Deltonotusoides strictivertex sp. nov., holotype female. A—body, dorsal view; B—the same, lateral view; C—head and anterior part of pronotum, dorsal view; D—the same, lateral view; E—head, frontal view.
FIGURE 4A–C. Genera Deltonotus Hancock and Stegaceps Hancock. A in New genus and new species of leaf-mimic pygmy grasshoppers from China (Orthoptera: Tetrigidae: Cladonotinae)
FIGURE 4A–C. Genera Deltonotus Hancock and Stegaceps Hancock. A—Deltonotus subcucullatus (Walker, 1871) (syntype, photo Tumbrinck); B—Deltonotus hainanensis Zheng & Liang, 1985 (photo Deng); C—Stegaceps brevicornis Hancock, 1913 (holotype, photo Weintraub).
FIGURE 3A–E in New genus and new species of leaf-mimic pygmy grasshoppers from China (Orthoptera: Tetrigidae: Cladonotinae)
FIGURE 3A–E. Deltonotusoides strictivertex sp. nov., paratype male: A—body (brachypronotal and brachypterous), lateral view; B—body (brachypronotal and brachypterous), dorsal view; C—body (macropronotal and macropterous), left lateral view; D—body (macropronotal and macropterous), right lateral view; E—head (macropronotal and macropterous), frontal view.
Pygmy rabbit landscape genomics in the southern Great Basin
<p>Local adaptation can occur when spatially separated populations are subjected to contrasting environmental conditions. Historically, understanding the genetic basis of adaptation has been difficult, but increased availability of genome-wide markers facilitates studies of local adaptation in non-model organisms of conservation concern. The pygmy rabbit (<i>Brachylagus idahoensis</i>) is an imperiled lagomorph that relies on sagebrush for forage and cover. This reliance has led to widespread population declines following reductions in the distribution of sagebrush, leading to geographic separation between populations. In this study, we used >20,000 single nucleotide polymorphisms (SNPs), genotype-environment association methods, and demographic modeling to examine neutral genetic variation and local adaptation in the pygmy rabbit in Nevada and California. We identified 308 loci as outliers, many of which had functional annotations related to metabolism of plant secondary compounds. Likewise, patterns of spatial variation in outlier loci were correlated with landscape and climatic variables including proximity to streams, sagebrush cover, and precipitation. We found that populations in the Mono Basin of California likely diverged from other Great Basin populations during late Pleistocene climate oscillations, and that this region is adaptively differentiated from other regions in the southern Great Basin despite limited gene flow and low effective population size. Our results demonstrate that peripherally isolated populations can maintain adaptive divergence.</p>
Fig. 4 in The elusive pygmy moth Bohemannia auriciliella (De Joannis, 1909): overview of its distribution, with new records for Germany and Bulgaria (Lepidoptera: Nepticulidae)
Fig. 4. Female genitalia of Bohemannia auriciliella (DE JOANNIS, 1909), Holotype. Only the terminal segments are illustrated, as the bursa did not shoW any detail. 4a. Dorsal vieW. 4b. FoCussed more ventrally. Genitalia slide KL0720 (Photo: ERIK VAN NIEUKERKEN).
Fig. 3 in The elusive pygmy moth Bohemannia auriciliella (De Joannis, 1909): overview of its distribution, with new records for Germany and Bulgaria (Lepidoptera: Nepticulidae)
Fig. 3. Male genitalia of Bohemannia auriciliella (DE JOANNIS, 1909). 3a. Ventral vieW. 3b. FoCussed more dorsally. Genitalia slide EvN5160, RMNH.INS.25160. SCale bars 100 μm (Photo: ERIK VAN NIEUKERKEN).
Figs 1, 2 in The elusive pygmy moth Bohemannia auriciliella (De Joannis, 1909): overview of its distribution, with new records for Germany and Bulgaria (Lepidoptera: Nepticulidae)
Figs 1, 2. Bohemanniaauriciliella (DE JOANNIS, 1909). 1. Female, Hannover, 13. June 2018, TLMF Lep 25991 (Photo: TINA SCHULZ). 2. Male, Netherlands, Noord-Brabant, Riethoven, 26 June 2015, RMNH. INS.25160. SCale bar 1 mm (Photo: ERIK VAN NIEUKERKEN).
Fig. 5 in The elusive pygmy moth Bohemannia auriciliella (De Joannis, 1909): overview of its distribution, with new records for Germany and Bulgaria (Lepidoptera: Nepticulidae)
Fig. 5. Map shoWing the reCords of Bohemannia auriciliella (DE JOANNIS, 1909) in Europe. Map made With ArCGis softWare.
FIGURE 36. Strict consensus cladogram summarizing 675 in Taxonomic revision and systematics of New Guinea and Oceania pygmy water boatmen (Hemiptera: Heteroptera: Corixoidea: Micronectidae)
FIGURE 36. Strict consensus cladogram summarizing 675 most parsimonious trees recovered from MP analysis of New Guinea micronectid morphology data matrix with all characters mapped over topology (length = 47; CI = 1.0). Numbers in (parentheses) above branches are Bremer support values. Numbers in black circles indicate respective node number discussed in text. Black bars indicate characters; number below bar corresponds to character number listed in Table 13.
FIGURE 13 in Taxonomic revision and systematics of New Guinea and Oceania pygmy water boatmen (Hemiptera: Heteroptera: Corixoidea: Micronectidae)
FIGURE 13. Papuanecta minajerwioides sp. nov. a. Prothoracic lobe, female. b. Metaxyphus. c. Left male foreleg, posterior aspect. d. Left male pala (tarsus), anterior aspect, palar claw folded in. e. Prestrigilar flap of abdominal segment V. f. Sternal process of abdominal segment VII. g. Free lobe of abdominal tergite VIII. Scale bars = 0.1 mm.
FIGURE 20 in Taxonomic revision and systematics of New Guinea and Oceania pygmy water boatmen (Hemiptera: Heteroptera: Corixoidea: Micronectidae)
FIGURE 20. Micronecta jenniferae Tinerella, locality labels, holotype, and dorsal habitus. a. Locality labels. b. Type label. c. Holotype specimen, male, dorsal habitus.
FIGURE 23. Micronecta quadristrigata Breddin. a. Prothoracic lobe, female. b. Metaxyphus. c. Left male foreleg, posterior aspect. d in Taxonomic revision and systematics of New Guinea and Oceania pygmy water boatmen (Hemiptera: Heteroptera: Corixoidea: Micronectidae)
FIGURE 23. Micronecta quadristrigata Breddin. a. Prothoracic lobe, female. b. Metaxyphus. c. Left male foreleg, posterior aspect. d. Prestrigilar flap of abdominal segment V. e. Sternal process of abdominal segment VII. f. Free lobe of abdominal tergite VIII. Scale bars = 0.1 mm.
FIGURE 8 in Taxonomic revision and systematics of New Guinea and Oceania pygmy water boatmen (Hemiptera: Heteroptera: Corixoidea: Micronectidae)
FIGURE 8. Papuanecta minajerwi (Tinerella and Polhemus), holotype label, dorsal habitus. a. Type label. b. Holotype specimen, male, lateral habitus.
FIGURE 10 in Taxonomic revision and systematics of New Guinea and Oceania pygmy water boatmen (Hemiptera: Heteroptera: Corixoidea: Micronectidae)
FIGURE 10. Papuanecta minajerwi (Tinerella and Polhemus), male terminalia. a. Free lobe of abdominal tergite VIII, apex. b. Left paramere, lateral aspect, right paramere, dorsal aspect. c. Left paramere, lateral aspect, right paramere, lateral aspect. d. Left paramere, lateral aspect, right paramere lateral aspect. e. Left paramere, dorsolateral aspect, right paramere dorsal aspect. f. Left paramere, lateroventral aspect, right paramere lateral aspect. g. Pars stridens processus, base of right paramere. (Modified from Tinerella and Polhemus 2005).
FIGURE 16 in Taxonomic revision and systematics of New Guinea and Oceania pygmy water boatmen (Hemiptera: Heteroptera: Corixoidea: Micronectidae)
FIGURE 16. Dorsal habitus of Micronecta species. a–b. M. ludibunda Breddin, male and female. c–d. Micronecta jenniferae Tinerella, male and female. e–f. M. quadristrigata Breddin, male and female. g–h. M. queenslandica Chen, male and female. i–j. M. carbonaria Horvath, male and female. k–l. M. virgata Hale, male and female. Scale bars = 0.5 mm.
FIGURE 27. Micronecta queenslandica Chen, male genitalia. a in Taxonomic revision and systematics of New Guinea and Oceania pygmy water boatmen (Hemiptera: Heteroptera: Corixoidea: Micronectidae)
FIGURE 27. Micronecta queenslandica Chen, male genitalia. a. Left paramere, lateral aspect, right paramere, dorsolateral aspect. b. Left paramere, dorsolateral aspect, right paramere, tip. c. Right paramere, lateral aspect. d. Pars stridens processus, base of right paramere.
FIGURE 6 in Taxonomic revision and systematics of New Guinea and Oceania pygmy water boatmen (Hemiptera: Heteroptera: Corixoidea: Micronectidae)
FIGURE 6. Papuanecta inelryjelnor sp. nov., male terminalia. a. Free lobe of abdominal tergite VIII. b. Left paramere, lateral aspect, right paramere, dorso-frontal aspect. c. Left paramere, lateral aspect, right paramere, dorsal aspect. d. Left paramere, dorsolateral aspect (cf tip, Figs. b,c,e), right paramere, dorsal aspect. e. Left paramere, lateral aspect, opposing face (cf Fig. g). f. Left paramere, lateral aspect, right paramere, lateral aspect. g. Left paramere, dorsolateral aspect, opposing face, right paramere, dorsolateral aspect. h. Pars stridens processus, base of right paramere.
FIGURE 5 in Taxonomic revision and systematics of New Guinea and Oceania pygmy water boatmen (Hemiptera: Heteroptera: Corixoidea: Micronectidae)
FIGURE 5. Papuanecta inelryjelnor sp. nov. a. Prothoracic lobe, female. b. Metaxyphus. c. Left male foreleg, posterior aspect. d. Left male pala (tarsus), anterior aspect, palar claw folded in. e. Prestrigilar flap of abdominal segment V. f. Sternal process of abdominal segment VII. g. Free lobe of abdominal tergite VIII. Scale bars = 0.1 mm.
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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.