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FIGURE 4 in Confirming the identity of the Hypogeococcus species (Hemiptera: Pseudococcidae) associated with Harrisia martinii (Labour.) Britton (Cactaceae) in Australia: implications for biological control
FIGURE 4 Mean (± SE) development time in days of the first- and second-generation females, from the first nymph to adult emergence of the Australian Hypogeococcus (W = 39, p = 0.0545).
FIGURE 3 in Confirming the identity of the Hypogeococcus species (Hemiptera: Pseudococcidae) associated with Harrisia martinii (Labour.) Britton (Cactaceae) in Australia: implications for biological control
FIGURE 3 Phylogenetic trees based on COI sequence data (a) maximum likelihood (IQ-TREE) and (b) Bayesian (Mr. Bayes). Branch labels indicate the ultrafast bootstrap and SH-aLRT values for the maximum likelihood tree and posterior probabilities for the Bayesian tree. Paracoccus marginatus was used as the outgroup for both trees. The host plant family is followed by the country of collection. See Table S1 for further details on host plant species and specimen collection codes for Hypogeococcus. **Country of collection includes Argentina, Brazil, Puerto Rico, and the United States.
FIGURE 2 in Confirming the identity of the Hypogeococcus species (Hemiptera: Pseudococcidae) associated with Harrisia martinii (Labour.) Britton (Cactaceae) in Australia: implications for biological control
FIGURE 2 Phylogenetic trees based on EF1α sequence data (a) maximum likelihood (IQ-TREE) and (b) Bayesian (Mr. Bayes). Branch labels indicate the ultrafast bootstrap and SH-aLRT values for the maximum likelihood tree and posterior probabilities for the Bayesian tree. Planococcus ficus was used as the outgroup for both trees. The host plant family is followed by the country of collection. See Table S1 for further details on host plant species and specimen collection codes for Hypogeococcus.
FIGURE 5 in Confirming the identity of the Hypogeococcus species (Hemiptera: Pseudococcidae) associated with Harrisia martinii (Labour.) Britton (Cactaceae) in Australia: implications for biological control
FIGURE 5 (a) Mean (± SE) pre-oviposition period (days) of the first virgin females, the second virgin, and second mated female generations (H = 19.491, p <0.0001), means labelled with similar letters are not significantly different (Dunn's test, p <0.05); (b) realised fecundity of the first virgin females, the second virgin and second mated female generations (H = 1.2429, p = 0.5372).
FIGURE 1 in Confirming the identity of the Hypogeococcus species (Hemiptera: Pseudococcidae) associated with Harrisia martinii (Labour.) Britton (Cactaceae) in Australia: implications for biological control
FIGURE 1 The different morphological features of the Australian Hypogeococcus: Panels (a) and (b) show that the abdominal region has three circuli (1–3); panel (c) shows that the head region has two antennae (4), numerous slender capitate setae (5), and numerous multilocular pores (6); panel (d) shows the presence of numerous slender capitate setae (5) and numerous multilocular pores (6) in the abdominal region; panels (e) and (f) show that the posterior ventral area possess numerous multilocular pores (6) and numerous conical setae (7); panels (g) and (h) show the foreleg (8) with the curvature attachment point, mid-leg (9) and hindleg (10), both with attachment points ending in a bifurcation. These characters are consistent with Hypogeococcus pungens s.s.
Fig. 2 in The identity of the long-overlooked Ronabea morindoides and Patabea tenuiflora, synonymous with a species of Appunia (Rubiaceae)
Fig. 2. – Holotype of Patabea tenuiflora DC. A. Detail of flower buds with abaxial corniform appendages. [G–DC: G00667064]
Fig. 3 in The identity of the long-overlooked Ronabea morindoides and Patabea tenuiflora, synonymous with a species of Appunia (Rubiaceae)
Fig. 3. – Appunia morindoides (A. Rich.) Delprete, C.M. Taylor & T. McDowell. A. Branchlet with inflorescence; B. Stem closeup, showing distalmost nodes with stipules; C. Inflorescence with flower buds, being visited by small ants; D. Inflorescence with most corollas fallen off, showing calyx limbs and disks; E. Open flower (note corolla lobes with apical appendices, both galeate adaxial appendages and abaxial corniform appendages); F. Infructescence with ripe fruits. [A–C, E: trail to Savane-Roche Corail, Kourou, French Guiana; D: trail Grand Boeuf Mort, Saül, French Guiana; F: Montagne des Singes, French Guiana] [Photos: Hervé Galliffet]
Fig. 16 in Novitates Gabonenses 90: Palisota (Commelinaceae) revisited: description of eight new species from Central Africa and notes on the identity of P. satabiei and P. bogneri
Fig. 16. – Palisota stevartii Burg & E. Bidault. A–B.Habit; C. Detail of pubescence on the upper side of lamina and leaf margin; D. Detail of pubescence on the lower side of the lamina and midrib; E. Inflorescence; F. Floral diagram; G. Bisexual flower, front view; H. Bisexual flower, side view; I. One upper stamen; J. Lower stamen; K. Upper staminode; L. One lower staminode; M. Ovary and pistil; N. Staminodial hair; O. Sepal hair; P. Ovary hair. [A, G, I–P: van der Maesen et al. 5833; B–E: Stévart et al. 4844; H: Texier et al. 282] [Drawings: H. de Vries]
Fig. 1. – Palisota akouangoui E. Bidault & Burg. A in Novitates Gabonenses 90: Palisota (Commelinaceae) revisited: description of eight new species from Central Africa and notes on the identity of P. satabiei and P. bogneri
Fig. 1. – Palisota akouangoui E. Bidault & Burg. A. Habit; B. Mature fruit; C. Inflorescence; D. Bisexual flower; E. Sepal; F. Petal; G. Lower stamen; H. One upper stamen; I. Staminode; J. Ovary and pistil. [A: Bidault et al. 3687; B: Bidault et al. 4100; C-J: Bidault et al. 3785] [Drawings: D. Geffard-Kuriyama & L. Longou]
Fig. 5 in Novitates Gabonenses 90: Palisota (Commelinaceae) revisited: description of eight new species from Central Africa and notes on the identity of P. satabiei and P. bogneri
Fig. 5. – Distribution of Palisota cristalensis E. Bidault & Burg (stars) and P. alboanthera Burg & E. Bidault (triangles). Elevation is represented in levels of grey, and protected areas as shaded.
Fig. 14. – Palisota repens E. Bidault & Burg. A in Novitates Gabonenses 90: Palisota (Commelinaceae) revisited: description of eight new species from Central Africa and notes on the identity of P. satabiei and P. bogneri
Fig. 14. – Palisota repens E. Bidault & Burg. A. Habit; B. Inflorescence; C. Bisexual flower; D. Mature fruit; E. Immature fruit; F. Sepal; G. Petal; H. Ovary and pistil; I. Lower stamen; J. One upper stamen; K. Staminode. [A: Bidault et al. 3506; B– C, F–K: Texier et al. 1437; D– E:Bidault et al. 4405] [Drawings: L. Longou]
Fig. 4 in Novitates Gabonenses 90: Palisota (Commelinaceae) revisited: description of eight new species from Central Africa and notes on the identity of P. satabiei and P. bogneri
Fig. 4. – Palisota alboanthera Burg & E. Bidault. A. Habit; B. Inflorescence; C. Bisexual flower with reflexed, mature lower stamen; D. Male flower with reduced ovary; E. Sepal; F. Petal; G. Lower stamen; H. One upper stamen; I. Upper staminode; J. One lower staminode; K. Ovary and pistil; L. Staminodial hair; M. Ovary hair. [A: de Wilde & de Wilde-Bakhuizen 11713; B-M: Bidault et al. 1352] [Drawings: H. de Vries]
Fig. 10 in Novitates Gabonenses 90: Palisota (Commelinaceae) revisited: description of eight new species from Central Africa and notes on the identity of P. satabiei and P. bogneri
Fig. 10. – Palisota leewhitei Burg, O. Lachenaud & E. Bidault. A. Habit; B. Axillary root; C. Portion of stem with inflorescence, axillary roots, pseudopetiole; D. Male flower; E. Sepal, interior view; F. Upper sepal, side view; G. Petal, side view; H. Lower sepal, side view; I. Ovary and pistil; J. Lower stamen; K. One upper stamen; L. Upper staminode; M. One lower staminode; N. Staminodial hair; O. Ovary hair; P. Fruit, side and dorsal views. [A–O: Maas et al. 10079; P: Lachenaud et al. 1165] [Drawings: H. de Vries]
Fig. 3 in Novitates Gabonenses 90: Palisota (Commelinaceae) revisited: description of eight new species from Central Africa and notes on the identity of P. satabiei and P. bogneri
Fig. 3. – Distribution of Palisota akouangoui E. Bidault & Burg (squares) and P. repens E. Bidault & Burg (circles). Elevation is represented in levels of grey, and protected areas as shaded.
Fig. 13. – Palisota plicata E.Bidault & Burg. A in Novitates Gabonenses 90: Palisota (Commelinaceae) revisited: description of eight new species from Central Africa and notes on the identity of P. satabiei and P. bogneri
Fig. 13. – Palisota plicata E.Bidault & Burg. A. Habit; B. Inflorescence; C. Bisexual flower, side view; D. Sepal; E. Petal; F. Lower stamen; G. One upper stamen; H. Ovary and pistil; I. Staminode; J. Mature fruit; K. Immature fruit with exocarp removed, showing immature seeds; L. Sketches of leaf base variation. [A, D-J, L (right): Bidault et al. 3576; B-C, L (left): Bidault et al. 3561; K: Bidault et al. 3514] [Drawings: L. Longou]
Fig. 8 in Novitates Gabonenses 90: Palisota (Commelinaceae) revisited: description of eight new species from Central Africa and notes on the identity of P. satabiei and P. bogneri
Fig. 8. – Palisota fadenii Burg & E. Bidault. A. Habit; B. Inflorescence; C. Bisexual flower; D. Upper sepal; E. One lower sepal; F. Petal; G. One upper stamen; H. Lower stamen; I. Staminode; J. Ovary and pistil. [Sita 535] [Drawings: D. Geffard-Kuriyama & L. Longou]
Fig. 9 in Novitates Gabonenses 90: Palisota (Commelinaceae) revisited: description of eight new species from Central Africa and notes on the identity of P. satabiei and P. bogneri
Fig. 9. – Distribution of Palisota bogneri Brenan (stars), P. plicata E. Bidault & Burg (squares), and P. fadenii Burg & E. Bidault (triangles). Elevation is represented in levels of grey, and protected areas as shaded.
Fig. 12 in Novitates Gabonenses 90: Palisota (Commelinaceae) revisited: description of eight new species from Central Africa and notes on the identity of P. satabiei and P. bogneri
Fig. 12. – Distribution of Palisota satabiei Brenan (squares), P. leewhitei Burg, O. Lachenaud & Bidault (stars), and P. stevartii Burg & E. Bidault (triangles). Elevation is represented in levels of grey, and protected areas as shaded.
Fig. 2. – Palisota akouangoui E in Novitates Gabonenses 90: Palisota (Commelinaceae) revisited: description of eight new species from Central Africa and notes on the identity of P. satabiei and P. bogneri
Fig. 2. – Palisota akouangoui E. Bidault & Burg (A–C) and P. alboanthera Burg & E. Bidault (D–G). A. Entire plants showing infrutescences; B. Mature fruits, entire and opened, showing seeds; C. Inflorescence showing open flowers, with green lower stamen; D. Living plant with inflorescence; E. Young inflorescence with male flowers, showing erect, pale yellow lower stamen; F. Bisexual flower with reflexed, white lower stamen; G. Detail of swollen roots. [A– B: Bidault et al. 4100; C: Bidault et al. 3785; D–F: Bidault et al. 3807; G: Stévart et al. 4780] [Photos: E. Bidault]
Fig. 11 in Novitates Gabonenses 90: Palisota (Commelinaceae) revisited: description of eight new species from Central Africa and notes on the identity of P. satabiei and P. bogneri
Fig. 11. – Palisota leewhitei Burg, O. Lachenaud & E. Bidault (A–C) and P. plicata E. Bidault & Burg (D–G). A. Living plants in habitat; B. Inflorescence showing capillary roots, open and closed flowers; C. Mature fruit; D. Living plants in habitat; E. Inflorescence with open flowers; F. Detail of an open flower; G. Mature fruit. [A, C: Lachenaud et al. 1165; D–E: Bidault et al. 3561; F–G: Bidault et al. 3576] [Photos: A, C: O. Lachenaud; B: J.-P. Vande Weghe; D–G: E. Bidault]
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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)
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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.