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5,864 results for “species diversity”
FIGURES 19–20. Ambohitantely Special Reserve. 19 in A new species of Apatenia Pascoe (Coleoptera: Anthribidae) from central Madagascar, with a key to species, additions to the distribution of rare species of the genus, and general notes about threats to anthribid diversity
FIGURES 19–20. Ambohitantely Special Reserve. 19, relatively intact forest, overall view (2016). 20, margin of medium altitude moist evergreen low forest, savanna in left (2019).
FIGURES 21–22 in A new species of Apatenia Pascoe (Coleoptera: Anthribidae) from central Madagascar, with a key to species, additions to the distribution of rare species of the genus, and general notes about threats to anthribid diversity
FIGURES 21–22. Ambohitantely Special Reserve. Microhabitat of type locality of Apatenia kuntei. Illustration of rate of degradation of dead wood in intact forest at altitude of 1623 m. 21, picture from January 2016, when first specimens of type series were collected here; 22, the same from January 2024, advanced stage of wood decomposition with unsuitable conditions for occurrence of anthribids.
FIGURES 1–5 in A new species of Apatenia Pascoe (Coleoptera: Anthribidae) from central Madagascar, with a key to species, additions to the distribution of rare species of the genus, and general notes about threats to anthribid diversity
FIGURES 1–5. Apatenia kuntei, male holotype, 1, habitus in dorsal view; 2, head; 3, pronotum; 4, right antenna; 5, habitus in lateral view. Scale bars in mm.
FIGURE 32 in A new species of Apatenia Pascoe (Coleoptera: Anthribidae) from central Madagascar, with a key to species, additions to the distribution of rare species of the genus, and general notes about threats to anthribid diversity
FIGURE 32. Distribution of selected rare Apatenia species. Triangle–type locality, circle–other distribution.
FIGURES 23–26 in A new species of Apatenia Pascoe (Coleoptera: Anthribidae) from central Madagascar, with a key to species, additions to the distribution of rare species of the genus, and general notes about threats to anthribid diversity
FIGURES 23–26. Malagasy Apatenia species, habitus in dorsal view. 23, A. quadristigma Frieser, 1981 (female); 24, A. oculifera Frieser 2000 (male); 25, A. stysi Trýzna & Baňař, 2013 (paratype, female); 26, A. sulcicollis Frieser, 2000 (male).
FIGURES 6–10 in A new species of Apatenia Pascoe (Coleoptera: Anthribidae) from central Madagascar, with a key to species, additions to the distribution of rare species of the genus, and general notes about threats to anthribid diversity
FIGURES 6–10. Apatenia kuntei, female allotype, 6, habitus in dorsal view; 7, head; 8, pronotum; 9, left antenna; 10, habitus in lateral view. Scale bars in mm.
FIGURES 27–31 in A new species of Apatenia Pascoe (Coleoptera: Anthribidae) from central Madagascar, with a key to species, additions to the distribution of rare species of the genus, and general notes about threats to anthribid diversity
FIGURES 27–31. Malagasy Apatenia species, habitus in dorsal view. 27, A. longiclava Wolfrum, 1955 (male); 28, A. fallax Frieser, 2010 (female); 29–31, A. mesostigma Wolfrum, 1961 (female): 29, habitus in dorsal view; 30 and 31, colour of elytral spot in different viewing angles.
FIGURES 11–18. Apatenia kuntei, genitalia. 11–15 in A new species of Apatenia Pascoe (Coleoptera: Anthribidae) from central Madagascar, with a key to species, additions to the distribution of rare species of the genus, and general notes about threats to anthribid diversity
FIGURES 11–18. Apatenia kuntei, genitalia. 11–15, paratype male: 11, aedeagus in dorsal view; 12, aedeagus in lateral view; 13, apex of aedeagus with detail of tectum (upper) and pedon (lower) in dorsal view; 14, segment VIII and sternite IX (= spiculum gastrale) in ventral view; 15, tegmen in ventral view. 16–18, paratype female: 16, spermatheca and spermathecal gland; 17, ovipositor with bursa copulatrix in ventral view; 18, detail of hemisternites in ventral view. Scale bars in mm.
DATASET - Climate heterogeneity shapes the diversity of specialist beetle species across mountains in Malaysia
Open the record for dataset details and reuse information.
Figure 4 in Overlooked cryptic diversity in Muschampia (Lepidoptera: Hesperiidae) adds two species to the European butterfly fauna
Figure 4. Comparison of spatial distributions of diversity for ITS2, COI and morphology of the male genitalia. A, C, E, the specimens have been projected in the red–green–blue colour space, and the resulting colours were plotted in pie charts grouping specimens from the same 2° × 2° latitude–longitude squares (maps on the left). B, D, F, representations of principal coordinates analyses based on dissimilarity matrices for genetic markers and of partial least squares discriminant analysis for male genitalia (circles, Muschampia alta; squares, Muschampia proto; triangles, Muschampia proteides).
Figure 3 in Overlooked cryptic diversity in Muschampia (Lepidoptera: Hesperiidae) adds two species to the European butterfly fauna
Figure 3. Geometric morphometrics of male genitalia. A, the location of fixed landmarks (filled circles) and sliding semilandmarks (open circles) on the cucullus (red) and gnathos (green). B, the partial least squares discriminant analysis (PLSDA) results, showing specimens of the three species as dots of different colours and the relative warp (RW) scores as dotted lines (Cuc, cucullus; Gn, gnathos). C, thin plate splines representing deformations corresponding to the average values shown by the three species in the relative warps selected by PLSDA as those most involved in the discrimination of the groups.
Figure 2. A in Overlooked cryptic diversity in Muschampia (Lepidoptera: Hesperiidae) adds two species to the European butterfly fauna
Figure 2. A, phylogenetic tree based on ITS2 data obtained through Bayesian inference. Posterior probabilities> 0.7 are indicated. Scale units are presented in substitutions per site. For each sample, boxes are filled if the genitalia were measured and/or the COI gene was sequenced. B, COI gene tree obtained through Bayesian inference, with the main groups collapsed. The x-axis indicates time (in millions of years), and the blue bars show the 95% highest posterior density range for the posterior distribution of node ages.
Figure 1 in Overlooked cryptic diversity in Muschampia (Lepidoptera: Hesperiidae) adds two species to the European butterfly fauna
Figure 1. Sampling sites (symbols) and the approximate range (shading) of the species recognized in this study (green squares, Muschampia proto; blue circles, Muschampia alta; red triangles Muschampia proteides). Photograph: M. proto from Jaén (southern Iberia) by V.D.
Life history traits in two Drosophila species differently affected by microbiota diversity under lead exposure
<p><em>We investigated the influence of population origin and heavy metal exposure to the diversity of microbiota in two species, Drosophila melanogaster and Drosophila subobscura grown in laboratory on lead (II) acetate (Pb(CH3COO)<sub>2</sub>) saturated substrate. The composition of microbiota in larvae and adults was determined by sequencing (NGS) of the V3-V4 variable regions of the 16S rRNA gene.</em></p>
Figure 13 in Cryptic diversity among populations of Aegla Leach, 1820 (Decapoda: Anomura: Aeglidae) from Tibagi River basin, Paraná state, Brazil, with descriptions of three new species
Figure 13. Aegla santosi sp. nov., male holotype, CLE 19.3 mm (MZUEL 511). (a) dorsal view of the dactylus, propodus and carpus of major cheliped (right) showing disciform palmar crest (thick arrow) and high carpal ridge (thin arrow). (b) ventral view of ischium of major cheliped (right) with four tubercles (arrows). (c) dorsal view of the dactylus, propodus and carpus of minor cheliped (left) showing disciform palmar crest (thick arrow) and high carpal ridge (thin arrow). (d) ventral view of ischium of minor cheliped (left) with four tubercles (arrows). Scale bars: a, c = 5.0 mm; b, d = 1.0 mm.
Figure 12 in Cryptic diversity among populations of Aegla Leach, 1820 (Decapoda: Anomura: Aeglidae) from Tibagi River basin, Paraná state, Brazil, with descriptions of three new species
Figure 12. Aegla santosi sp. nov., male holotype, CLE 19.3 mm (MZUEL 511). (a) external surface view of the anterior portion of the cephalothorax showing pronounced protogastric lobes (white arrow) and well-developed subrostral process (black arrow). (b) dorsal view of the anterior region of the cephalothorax showing anterolateral spine reaching basal margin of the cornea (black arrow) and slightly elongated epibranchial area (white arrow). Scale bars: a = 1.0 mm; b = 5.0 mm.
Figure 8 in Cryptic diversity among populations of Aegla Leach, 1820 (Decapoda: Anomura: Aeglidae) from Tibagi River basin, Paraná state, Brazil, with descriptions of three new species
Figure 8. Aegla abrupta sp. nov., male holotype, CLE 16.2 mm (MZUEL 515). (a) external surface view of the anterior portion of the cephalothorax showing pronounced protogastric lobes (white arrow) and well-developed subrostral process (black arrow). (b) dorsal view of the anterior region of the cephalothorax showing trapezoidal cervical groove (black arrow) and shortened epibranchial area (white arrow). Scale bars: a = 1.0 mm; b = 5.0 mm.
Figure 10 in Cryptic diversity among populations of Aegla Leach, 1820 (Decapoda: Anomura: Aeglidae) from Tibagi River basin, Paraná state, Brazil, with descriptions of three new species
Figure 10. Aegla abrupta sp. nov., male holotype, CLE 16.2 mm (MZUEL 515). (a) third (thin arrow) and fourth (thick arrow) thoracic sternites. (b) dorsal view of second abdominal epimeron (right side) showing almost straight anterior margin (thick arrow) and unarmed anterolateral angle (thin arrow). Scale bars = 1.0 mm.
Figure 9 in Cryptic diversity among populations of Aegla Leach, 1820 (Decapoda: Anomura: Aeglidae) from Tibagi River basin, Paraná state, Brazil, with descriptions of three new species
Figure 9. Aegla abrupta sp. nov., male holotype, CLE 16.2 mm (MZUEL 515). (a) dorsal view of the dactylus, propodus and carpus of major cheliped (left) showing subdisciform palmar crest (thick arrow) and high carpal ridge (thin arrow). (b) ventral view of ischium of major cheliped (left) with four tubercles (arrows). (c) dorsal view of the dactylus, propodus and carpus of minor cheliped (right) showing subdisciform palmar crest (thick arrow) and high carpal ridge (thin arrow). (d) ventral view of ischium of minor cheliped (right) with five tubercles (arrows). Scale bars = 1.0 mm.
Figure 7 in Cryptic diversity among populations of Aegla Leach, 1820 (Decapoda: Anomura: Aeglidae) from Tibagi River basin, Paraná state, Brazil, with descriptions of three new species
Figure 7. Aegla abrupta sp. nov., male holotype, CLE 16.2 mm, Formiga River, Ortigueira, Paraná, Brazil (MZUEL 515). (a) dorsal view of the cephalothorax and anterior portion of the abdomen. (b) ventral view of ischium of major cheliped (left) showing four tubercles (arrows). (c) third thoracic sternite abrupt (arrow). (d) dorsal view of second abdominal epimeron (right side) showing anterior margin almost straight (arrow). Scale bars: a = 5.0 mm; b–d = 1.0 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.