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Fig. 3. Olonia rubicunda Walker, 1851 in Revision of the Eurybrachidae (XVI). The Australian Olonia rubicunda (Walker, 1851): Description of the male, distribution and host plants (Hemiptera: Fulgoromorpha: Eurybrachidae)
Fig. 3. Olonia rubicunda Walker, 1851, ♂ terminalia, specimen from Lammermoor (QM). A, pygofer, anal tube and gonostyli, lateral view. B, pygofer, anal tube and gonostyli, ventral view. C, pygofer, anal tube and gonostyli, laterodorsal view. D, pygofer, anal tube and gonostyli, caudal view. E, pygofer, anal tube and gonostyli, dorsal view. F, pygofer, anal tube and gonostyli, dorsolateral view. G, aedeagus, lateral view. aedeagus, laterodorsal view. aedeagus, dorsal view. aedeagus, ventral view. An: anal tube; cv: connective; cvp: centroventral part of gonostylus; dpp: dorsal portion of phallobase; ep: epiproct; G: gonostylus; ldp: lateroventral part of gonostylus; lp: lateral process of gonostylus; ph: phallus; Py: pygofer; ssp: spoon-shaped process; vpp: ventral portion of phallobase.
Fig. 5. Olonia rubicunda Walker, 1851 in Revision of the Eurybrachidae (XVI). The Australian Olonia rubicunda (Walker, 1851): Description of the male, distribution and host plants (Hemiptera: Fulgoromorpha: Eurybrachidae)
Fig. 5. Olonia rubicunda Walker, 1851, habitat, Queensland. A–D, Yeppoon, Lammermoor Beach, 13.III.2020. A, dune covered in Ipomoea pes-caprae, grass and Clitoria ternatea. B, I. pes-caprae, grass and C. ternatea, detail. C, grass covered with C. ternatea, detail. D, flowers of C. ternatea. E, Clairview, Baracrab campsite, 16.III.2020, dune covered in Ipomoea pes-caprae and grass. F–G, Emu Park, 14.III.2020. F, rocky area covered in Canavalia sericea. G, C. sericea, detail.
Fig. 4. Olonia rubicunda Walker, 1851 in Revision of the Eurybrachidae (XVI). The Australian Olonia rubicunda (Walker, 1851): Description of the male, distribution and host plants (Hemiptera: Fulgoromorpha: Eurybrachidae)
Fig. 4. Olonia rubicunda Walker, 1851, habitat, Queensland. A–C, Yeppoon, Lammermoor Beach, 10.XII.2019. A, ♀ specimen, laterodorsal view. B, ♀ specimen, dorsal view. C, dune covered in Ipomoea pes-caprae and grass. D, Mulambin, Emily Morgan Park, 11.XII.2019, dune covered in I. pes-caprae and grass. E–H, Emu Park, 11.XII.2019. E, dune covered in I. pes-caprae and grass. F, Canavalia sericea growing on rocky area. G, C. sericea seedpot. H, nymph on C. sericea.
Fig. 2. Olonia rubicunda Walker, 1851 in Revision of the Eurybrachidae (XVI). The Australian Olonia rubicunda (Walker, 1851): Description of the male, distribution and host plants (Hemiptera: Fulgoromorpha: Eurybrachidae)
Fig. 2. Olonia rubicunda Walker, 1851, ♀ specimen from Lammermoor (QM). A, habitus dorsal view. B, habitus, ventral view. C, habitus, lateral view. D, habitus, perpendicular view of frons. E, posterior wing.
Fig. 1. Olonia rubicunda Walker, 1851 in Revision of the Eurybrachidae (XVI). The Australian Olonia rubicunda (Walker, 1851): Description of the male, distribution and host plants (Hemiptera: Fulgoromorpha: Eurybrachidae)
Fig. 1. Olonia rubicunda Walker, 1851, ♂ specimen from Lammermoor (QM). A, habitus dorsal view. B, habitus, ventral view. C, habitus, lateral view. D, habitus, perpendicular view of frons. E, posterior wing.
FIGURE 4 in Effects Of Host Plants On Distribution, Abundance, Developmental Time And Life Table Parameters Of Oligonychus Afrasiaticus (Mcgregor) (Acari: Tetranychidae)
FIGURE 4: Population dynamics of O. afrasiaticus at 27°C on different supports collected at Segdoud oasis, South of Tunisia.
FIGURE 3 in Effects Of Host Plants On Distribution, Abundance, Developmental Time And Life Table Parameters Of Oligonychus Afrasiaticus (Mcgregor) (Acari: Tetranychidae)
FIGURE 3: Survivorship curve (lX) and age-specific fecundity (mx) of O. afrasiaticus on six alimentary supports at 27°C.
FIGURE 1 in Effects Of Host Plants On Distribution, Abundance, Developmental Time And Life Table Parameters Of Oligonychus Afrasiaticus (Mcgregor) (Acari: Tetranychidae)
FIGURE 1: Seasonal fluctuations of O. afrasiaticus densities on Deglet Noor pinnae and fruits and on sorghum leave, at Segdoud, South of Tunisia in 2004-2006.
FIGURE 2 in Effects Of Host Plants On Distribution, Abundance, Developmental Time And Life Table Parameters Of Oligonychus Afrasiaticus (Mcgregor) (Acari: Tetranychidae)
FIGURE 2: Densities of O. afrasiaticus motile stages, at Segdoud, South of Tunisia, (A) 2006 (B) 2007, on date varieties 'Deglet Noor', 'Alig', 'Bessr', and 'Kentichi'.
Figure 1 in Interaction between Tephritidae (Insecta, Diptera) and plants of the family Asteraceae: new host and distribution records for the state of Rio Grande do Sul, Brazil
Figure 1. Localities in Rio Grande do Sul, Brazil, where the fauna of Tephritidae (Dip* tera) from capitula of Asteraceae was sampled.
FIGURE 1. Lachnagrostis filiformis. A. Plant. B. Ligule somewhat lacerated upwards. C. Spikelet. D in Lachnagrostis filiformis (Poaceae: Pooideae: Poeae: Agrostidinae) in México: known distribution and suppression of lemma awn development in terminal spikelets
FIGURE 1. Lachnagrostis filiformis. A. Plant. B. Ligule somewhat lacerated upwards. C. Spikelet. D. Ventral and dorsal view of awned lemmas. E. Ventral and dorsal view of awnless lemmas. E. Ventral and dorsal view of the caryopsis (Meagher 24-11-02 (IEB)). Illustrated by Alfonso Barbosa.
FIGURE 58. Orobanche kurdica. A. Plant. B. Flower, side view. C. Flower, front view. D. Calyx. E. Bract. F. Leaf. G. Open corolla and androecium. H. Gynoecium. I. Stigma. J in Holoparasitic Orobanchaceae (Cistanche, Diphelypaea, Orobanche, Phelipanche) in Armenia: distribution, habitats, host range and taxonomic problems
FIGURE 58. Orobanche kurdica. A. Plant. B. Flower, side view. C. Flower, front view. D. Calyx. E. Bract. F. Leaf. G. Open corolla and androecium. H. Gynoecium. I. Stigma. J. Anther. Illustration by Jolanta Urbanik.
FIGURE 53. Orobanche laxissima. A. Plant. B. Flower, side view. C. Flower, front view. D. Leaf. E. Bract. F. Calyx. G. Open corolla and androecium. H. Anther. I. Gynoecium. J in Holoparasitic Orobanchaceae (Cistanche, Diphelypaea, Orobanche, Phelipanche) in Armenia: distribution, habitats, host range and taxonomic problems
FIGURE 53. Orobanche laxissima. A. Plant. B. Flower, side view. C. Flower, front view. D. Leaf. E. Bract. F. Calyx. G. Open corolla and androecium. H. Anther. I. Gynoecium. J. Stigma. Illustration by Jolanta Urbanik.
FIGURE 48. Orobanche grossheimii. A. Plant. B. Flower, side view. C. Flower, front view. D. Calyx. E. Bract. F. Leaf. G. Open corolla and androecium. H. Gynoecium. I. Stigma. J in Holoparasitic Orobanchaceae (Cistanche, Diphelypaea, Orobanche, Phelipanche) in Armenia: distribution, habitats, host range and taxonomic problems
FIGURE 48. Orobanche grossheimii. A. Plant. B. Flower, side view. C. Flower, front view. D. Calyx. E. Bract. F. Leaf. G. Open corolla and androecium. H. Gynoecium. I. Stigma. J. Anther. Illustration by Jolanta Urbanik.
FIGURE 40. Orobanche schelkovnikovii. A. Plant. B. Flower, side view. C. Flower, front view. D. Calyx. E. Bract. F. Leaf. G. Open corolla and androecium. H. Gynoecium. I. Stigma. J in Holoparasitic Orobanchaceae (Cistanche, Diphelypaea, Orobanche, Phelipanche) in Armenia: distribution, habitats, host range and taxonomic problems
FIGURE 40. Orobanche schelkovnikovii. A. Plant. B. Flower, side view. C. Flower, front view. D. Calyx. E. Bract. F. Leaf. G. Open corolla and androecium. H. Gynoecium. I. Stigma. J. Anther. Illustration by Jolanta Urbanik.
FIGURE 5 in The endemic and range restricted vascular plants of Croatia: diversity, distribution patterns and their conservation status
FIGURE 5 (a) Correlation between the proportion of endemic species and specific richness in Croatia and several other areas (circle—non- European areas, triangle—European areas) (r = 0.312, p <0.05): areas above the diagonal line exhibit less than the expected endemism, and areas below the line exhibit more than the expected endemism (Croatia (EndS)—Endemics only, Croatia (RRS)—range restricted species and endemics). The compiled data are from Médail & Verlaque (1997), Georghiou & Delipetrou (2010), Casazza et al. (2005), Goldblatt (1997), Grooombridge (1992). (b) Correlation between the proportion of endemic plant taxa with respect to the total flora in a sample of European countries and areas and in eighteen latitude classes (based on the broad position of the country centroid) (r = 0.64, p <0.05).
FIGURE 4 in The endemic and range restricted vascular plants of Croatia: diversity, distribution patterns and their conservation status
FIGURE 4 (a) Relationship between number of taxa (EndS + RRS) and the longitude-latitude ratio: numbers of taxa found in southeast are higher than the numbers of taxa found in northwest Croatia (based on 1 km2 grid cells) (r = 0.09, p <0.05). (b) The altitudinal distribution of taxa within 100 m altitudinal belts.
FIGURE 3 in The endemic and range restricted vascular plants of Croatia: diversity, distribution patterns and their conservation status
FIGURE 3 Maps depicting the number of (a) endemic (EndS) and (b) range restricted species (RRS) per grid cell.
FIGURE 2 in The endemic and range restricted vascular plants of Croatia: diversity, distribution patterns and their conservation status
FIGURE 2 Histogram showing the numbers of endemic (EndS) and range restricted species (RRS) in each of the five biogeographic region in Croatia: Mediterranean (Med), Continental (Con), Alpine (Alp), and Pannonian (Pan). Taxa belonging to two regions were also specified, while taxa more widespread to more than two regions were reported as 'W'. In case the distribution data was not sufficient, taxa were considered as data deficient (DD).
FIGURE 4 in Neotypification of Cistanche tubulosa (Schenk) Wight ex Hook.f.: a name applied to a widely distributed, polyphyletic group of plants
FIGURE 4. The neotype of Cistanche tubulosa collected from near the type locality in Sinai. A. the specimen (left) with its Amaranthaceae host (right). B. Magnification of a corolla of the neotype, with a living specimen (collected in southern Israel) for comparison; white arrow shows purple-pigmented corolla lobes; black arrow shows smaller lower central lobe. Note the dried corolla is more expanded around the waist due to compression. C. Magnification of bract, with a living specimen (collected in southern Israel) for comparison; white arrow shows the serrated margin (present in both dried and living material). Note the darkened (dried) tip in living material commensurate with the preserved specimen.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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