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202 results for “Australian endemics”
Figure 4 in A new species of the enigmatic Australian endemic family Trachypetidae (Hymenoptera: Ichneumonoidea): Cercobarcon lasallei sp.n.
Figure 4. Metanotum and propodeum: (a) Cercobarcon lasallei sp. nov., ♀ holotype; (b) Cercobarcon niger Austin, Wharton and Dangerfield, 1993, ♀ holotype; (c) Cercobarcon rieki Tobias, 1979, ♀ holotype; (d) Cercobarcon lasallei sp. nov., ♀ holotype, lateral view of posterior metasoma.
Figure 3 in A new species of the enigmatic Australian endemic family Trachypetidae (Hymenoptera: Ichneumonoidea): Cercobarcon lasallei sp.n.
Figure 3. Cercobarcon lasallei sp. nov., ♀ holotype: (a) fore and hind wing; (b) fore wing submarginal cell showing incomplete vein 1-SR+M with small terminal swelling; Cercobarcon rieki Tobias, 1979: (c) ♀ paratype from Western Australia, showing vein 1-SR+M without a terminal swelling; (d) ♀ holotype, showing submarginal cell with incomplete spurious areolet; (e) Cercobarcon niger Austin, Wharton and Dangerfield, 1993: (e) ♀ holotype showing incomplete vein 1-SR+M with small terminal swelling.
Figure 1 in A new species of the enigmatic Australian endemic family Trachypetidae (Hymenoptera: Ichneumonoidea): Cercobarcon lasallei sp.n.
Figure 1. (a) Cercobarcon rieki Tobias, 1979, anterior head showing shape of the clypeus; (b) Cercobarcon grossi Austin, Wharton and Dangerfield, 1993, lower face showing the sinuate shape of the clypeus; (c) Cercobarcon bilobatus Austin, Wharton and Dangerfield, 1993, lower face showing the bilobed shape of the clypeus.
Figure 2 in A new species of the enigmatic Australian endemic family Trachypetidae (Hymenoptera: Ichneumonoidea): Cercobarcon lasallei sp.n.
Figure 2. (a) Cercobarcon lasallei sp. nov., ♀ holotype: (a) anterior head; (b) dorsal head; (c) dorsal habitus; (d) lateral habitus.
FIGURES 9 – 12. Tympallopatrum geographical distributions. — 9. T. longitudum. — 10. T. aureolum. — 11. T. curvicostum. — 12. T in A revision of the Western Australian endemic humicolous beetle genus Tympallopatrum Perkins (Coleoptera: Hydraenidae)
FIGURES 9 – 12. Tympallopatrum geographical distributions. — 9. T. longitudum. — 10. T. aureolum. — 11. T. curvicostum. — 12. T. callosum.
FIGURE 26 in A revision of the Australian endemic water beetle genus Gymnanthelius Perkins (Coleoptera: Hydraenidae)
FIGURE 26. Habitat of G. porchi and G. opacicollis. Victoria, Gippsland, Tarra River, 1.5 km S. of Tarra Falls. Photo by Nicholas Porch, 12 April 2004.
FIGURE 27 in A revision of the Australian endemic water beetle genus Gymnanthelius Perkins (Coleoptera: Hydraenidae)
FIGURE 27. Muddy streambank microhabitat of G. p orc hi and G. opacicollis. Victoria, Gippsland, Tarra River, 1.5 km S. of Tarra Falls. Photo by Nicholas Porch, 12 April 2004
FIGURES 22 – 25. Gymnanthelius geographical distributions. — 22. G. opacicollis. — 23. G. hieroglyphicus. — 24. G. t u n i c u s. — 25. G in A revision of the Australian endemic water beetle genus Gymnanthelius Perkins (Coleoptera: Hydraenidae)
FIGURES 22 – 25. Gymnanthelius geographical distributions. — 22. G. opacicollis. — 23. G. hieroglyphicus. — 24. G. t u n i c u s. — 25. G. maxipunctus.
FIGURES 18 – 21. Gymnanthelius geographical distributions. — 18. G. clypeatus. — 19. G. cupreus. — 20. G. lamingtonensis. — 21. G in A revision of the Australian endemic water beetle genus Gymnanthelius Perkins (Coleoptera: Hydraenidae)
FIGURES 18 – 21. Gymnanthelius geographical distributions. — 18. G. clypeatus. — 19. G. cupreus. — 20. G. lamingtonensis. — 21. G. porchi.
Unravelling the mystery of endemic versus translocated populations of the endangered Australian lungfish (Neoceratodus forsteri)
<p><strong>RADseq dataset of the Australian lungfish (</strong><em><strong>Neoceratodus forsteri).</strong></em></p> <p>The dataset is constituted of 100 samples and 5,196 nuclear SNPs. There are five populations each with 20 samples. IDs: BUR (Burnett River), MRY (Mary River), TIN (Tinana River), NPD (North Pine River), BNE (Brisbane River).</p> <p>The dataset is in VCF format.</p> <p> </p> <p><strong>Scripts for statistical calculations and demographic simulations.</strong></p>
Figures 18–26, Barynema species. 18–20, B in Review of the Australian endemic odontocerid genus Barynema and status of Australian Marilia (Trichoptera)
Figures 18–26, Barynema species. 18–20, B. lobatum sp. nov.: 18, holotype male, Queensland, Montville, 27.ix.1955, (NMV Tri-27064), genitalia ventral; 19, paratype male (NMV 27120), lateral; 20, paratype female (NMV TRI-27063) terminalia, ventral. 21–24, B. dilatum sp. nov.: 21–23, holotype, male (NMV WTH-2966, PT-2033) genitalia ventral, lateral, and dorsal, respectively; 24, paratype female (Python Creek NMV), terminalia, ventral. 25, 26, B. dolabratum sp. nov. holotype male, (Oliver Creek NMV), genitalia, ventral and lateral, respectively. Abbreviations: api. lob. = apical lobe; d. lob. = dorsal lobe of inferior appendages; har. = harpago; ph. = phallus; pre. app. = pre-anal appendages; up. p. = upper penis cover.
Figures 9–17, Barynema species. 9–12, B in Review of the Australian endemic odontocerid genus Barynema and status of Australian Marilia (Trichoptera)
Figures 9–17, Barynema species. 9–12, B. paradoxum sp. nov., holotype, New South Wales, Nowra (NMV TRI 27118, PT-1646): 9–11, male genitalia, ventral, lateral, and dorsal, respectively; 12, female, New South Wales, Yadboro Creek, Budawang Range, 40 km SW of Nowra (NMV TRI-27136) terminalia, ventral. 13–17, B. lorien sp. nov.: 13, 14, holotype male, New South Wales, Lansdowne via Taree (NMV TRI-27061, PT-1564), genitalia ventral and lateral, respectively; 15, 16, paratype male, Queensland, Lamington National Park (NMV TRI-27061), genitalia, ventral and lateral, respectively; 17, paratype female (NMV TRI-27061), terminalia, ventral. Abbreviations: api. lob. = apical lobe; cox. = coxopodite; har. = harpago; ph., phallus; pre. app. = pre-anal appendages; up. p. = upper penis cover.
Figures 1–8, Barynema species. 1, 3, 4 in Review of the Australian endemic odontocerid genus Barynema and status of Australian Marilia (Trichoptera)
Figures 1–8, Barynema species. 1, 3, 4, Barynema costatum Banks holotype male: 1, body and wings, dorsal; 3, 4, genitalia, ventral and lateral, respectively. 2, B. paradoxum sp. nov., New South Wales, Upper Kangaroo Valley, body and wings, dorsal; 5–8, B. costatum, male, Victoria, tributary of Snobs Creek (NMV TRI-27406): 5, mesothorax, dorsal; 6–8, genitalia, ventral, lateral, and dorsal, respectively. Abbreviations: cox. = coxopodite; har. = harpago; ph. = phallus; pre. app. = pre-anal appendages; up. p. = upper penis cover.
Figures 27–35, Barynema species. 27, 28, B in Review of the Australian endemic odontocerid genus Barynema and status of Australian Marilia (Trichoptera)
Figures 27–35, Barynema species. 27, 28, B. australicum Mosely, holotype male (BMNH): 27, genitalia, lateral (on microscope slide); 28, part of body and wings of holotype (images, courtesy B. Price, BMNH). 29–32, B. australicum, New South Wales, Orara West State Forest (NMV-27117): 29, male mesothorax dorsal; 30, female, terminalia ventral; 31, 32, male, genitalia, lateral and ventral, respectively. 33–35, B. goomburra sp. nov., holotype male, Queensland, Goomburra State Forest, NE of Warwick (NMV TRI-27112): 33, mesothorax dorsal; 34, 35, genitalia lateral and ventral, respectively. Abbreviations: har. = harpago; mes. lob. = mesal lobe of coxopodite; pre. app. = pre-anal appendages; set. wt. = setate warts on mesoscutellum; up. p. = upper penis cover.
Figure 3 in Phylogenetic measures of biodiversity and neo- and paleo-endemism in Australian Acacia
Figure 3 | CANAPE, a two-step procedure described in text. (a) Map of centres of endemism discovered. White cells contain no records; beige cells are not significant. The red values indicate grid cells that contain significantly lower RPE than expected given random sampling of the same number of species from a null tree, termed 'centres of neo-endemism'. The blue values indicate grid cells that contain significantly higher RPE than expected, termed 'centres of paleo-endemism'. The purple values indicate grid cells that are a mix of neo-endemism and paleo-endemism; the most highly significant of which (darker purple) are termed 'centres of superendemism'. (b) Bivariate plot showing the relationship between the numerator (y axis) and denominator (x axis) of RPE, applied following the two-step CANAPE procedure described in text, for comparison with a. The grey points in the background are results of the randomization, the beige points are actual values for grid cells that are not significant, the red points are actual values for grid cells that are interpreted as significantly dominated by neo-endemism, the blue points are actual values for grid cells that are interpreted as significantly dominated by paleo-endemism, and the purple points are actual values for grid cells significant for both the y-axis and x-axis variables separately, the most highly significant of which (darker purple) are termed 'centres of super-endemicity'.
Figure 2 in Phylogenetic measures of biodiversity and neo- and paleo-endemism in Australian Acacia
Figure 2 | Maps showing significance levels resulting from of a randomization test in Australian Acacia. White cells contain no records; beige cells are not significant. (a) PD: the red values indicate grid cells that contain significantly less PD than expected; the blue values indicate grid cells that contain significantly more PD than expected. (b) RPD: the red values indicate grid cells that contain significantly less RPD than expected; the species present in that cell are significantly more closely related than expected. The blue values indicate grid cells that contain significantly more RPD than expected; the species present in that cell are significantly more distantly related than expected. (c) Phylogenetic endemism (PE). The red values indicate grid cells that contain significantly less PE than expected; the blue values indicate grid cells that contain significantly more PE than expected. (d) Relative phylogenetic endemism (RPE). The red values indicate grid cells that contain significantly lower RPE than expected; the blue values indicate grid cells that contain significantly higher RPE than expected.
Linked collectors and determiners for: Review of the Australian endemic odontocerid genus Barynema and status of Australian Marilia (Trichoptera).
Natural history specimen data linked to collectors and determiners held within, "Review of the Australian endemic odontocerid genus Barynema and status of Australian Marilia (Trichoptera)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/a0e1b83b-08d0-4c22-9dad-96ed83231fe9">https://bionomia.net/dataset/a0e1b83b-08d0-4c22-9dad-96ed83231fe9</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/a0e1b83b-08d0-4c22-9dad-96ed83231fe9">https://gbif.org/dataset/a0e1b83b-08d0-4c22-9dad-96ed83231fe9</a>. Formatted as a Frictionless Data package.
Fig. 14. Limnadopsis pilbarensis n in A Revision of the Australian Endemic Clam Shrimp Genus Limnadopsis Spencer & Hall (Crustacea: Branchiopoda: Spinicaudata: Limnadiidae)
Fig. 14. Limnadopsis pilbarensis n.sp., unnamed rockhole, Burrup Peninsula, Pilbara, WA. Male: (A) carapace; (B) head;
Fig. 13. Limnadopsis paradoxa n in A Revision of the Australian Endemic Clam Shrimp Genus Limnadopsis Spencer & Hall (Crustacea: Branchiopoda: Spinicaudata: Limnadiidae)
Fig. 13. Limnadopsis paradoxa n.sp., Sieda Farm, Grass Patch, WA. Male: (A) carapace; (B) head; (C) telson; (D) second clasper. Female: (E) carapace; (F) head; (G) telson. For clarity some growth lines of the carapace are incompletely shown anterior to umbo. Scale bars 1 mm.
Fig. 12. Limnadopsis occidentalis n in A Revision of the Australian Endemic Clam Shrimp Genus Limnadopsis Spencer & Hall (Crustacea: Branchiopoda: Spinicaudata: Limnadiidae)
Fig. 12. Limnadopsis occidentalis n.sp., Boolathana Station, via Carnarvon, WA. Male: (A) carapace; (B) head; (C) telson. Female: (D) carapace; (E) head; (F) telson. For clarity some growth lines of the carapace are incompletely shown anterior to umbo. Scale bars 1 mm.
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