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FIGURE 2 in Two new genera of tokoriro (Orthoptera: Rhaphidophoridae: Macropathinae) from Aotearoa New Zealand
FIGURE 2. Maximum Likelihood analysis of mtDNA COI sequences of New Zealand Rhaphidophoridae with representatives of known genera (Dowle et al. 2024) and data from individuals of two new genera. Node support values>70% are from 1000 ML bootstrap replicates. South Island map includes entomological region boundaries (Crosby et al. 1998).
FIGURE 1 in Two new genera of tokoriro (Orthoptera: Rhaphidophoridae: Macropathinae) from Aotearoa New Zealand
FIGURE 1. Time calibrated phylogeny of Aotearoa New Zealand Macropathinae with complete mitochondrial genome sequences (Dowle et al. 2024) including representatives of all recognised genera and two novel lineages. [Genbank accession numbers]. Inset shows position of New Zealand main and offshore islands.
FIGURE 7 in A new species of scincid lizard in the genus Oligosoma (Reptilia: Scincidae) from the mid-Canterbury high country, New Zealand
FIGURE 7. Relationship of taxa within Oligosoma Clade 1 of Chapple et al. (2009)—phylogenetic tree of Maximum Likelihood (ML) from five mitochondrial genes (ND2, ND4, Cytb, 16SrRNA, 12SrRNA) and one nuclear gene (Rag-1); ML bootstrap values and Bayesian posterior probabilities for all branches are 100 and 1.0, respectively [after Chapple et al. 2009]. The newly described species Oligosoma hoparatea sp. nov. is highlighted.
FIGURE 6 in A new species of scincid lizard in the genus Oligosoma (Reptilia: Scincidae) from the mid-Canterbury high country, New Zealand
FIGURE 6. Detailed drawings of the holotype of Oligosoma hoparatea sp. nov.—dorsal (upper left), left side (middle left) and ventral (lower left) surfaces of the head showing details of the scalation, and the upper surface of the left front foot (upper right) and lower surface of the left hind foot (lower right). Scale bar = 5 mm and scale is the same for all drawings.
FIGURE 3 in A new species of scincid lizard in the genus Oligosoma (Reptilia: Scincidae) from the mid-Canterbury high country, New Zealand
FIGURE 3. Active greywacke screes at the type locality at 1050 m on the north face Mt Harper showing 'islands' of vegetation amongst large expanses of gravel and boulders that are the habitat of Oligosoma hoparatea sp. nov. [Photograph: Marieke Lettink].
FIGURE 1 in A new species of scincid lizard in the genus Oligosoma (Reptilia: Scincidae) from the mid-Canterbury high country, New Zealand
FIGURE 1. Distribution of Oligosoma hoparatea sp. nov. in the mid-Canterbury high country of the South Island, New Zealand: 1 = type locality on the north face of Mt Harper, 2 = Mt Somers Range (note: the map resolution is insufficient to show all four sites due to the small distance between sites on the same range).
FIGURES 4 & 5 in A new species of scincid lizard in the genus Oligosoma (Reptilia: Scincidae) from the mid-Canterbury high country, New Zealand
FIGURES 4 & 5. Wild Oligosoma hoparatea sp. nov. photographed on screes at the type locality, Mt Harper, January 2010 [Photographs: Marieke Lettink].
FIGURE 2 in A new species of scincid lizard in the genus Oligosoma (Reptilia: Scincidae) from the mid-Canterbury high country, New Zealand
FIGURE 2. North face of Mt Harper viewed from the northern shore of Lake Camp showing the rounded landform with steeply-incised gullies with associated active screes and large outwash fans. Oligosoma hoparatea sp. nov. has been found in screes in the gully at the left (the type locality) and to the left of centre [Photograph: Don Geddes].
FIGURE 15 in Review and clinal variation of New Zealand Anabaxis Raffray (Coleoptera: Staphylinidae: Pselaphinae: Goniaceritae)
FIGURE 15. Variability of modified mesotrochanters in Anabaxis foveolata Raffray, 1908, in ventral view. A—ND, Mangamuka Summit. B—GB, Pukeamaru. C—WN, Tararua. D—SI, Secretary Island. Scales: 0.15 mm.
FIGURE 16 in Review and clinal variation of New Zealand Anabaxis Raffray (Coleoptera: Staphylinidae: Pselaphinae: Goniaceritae)
FIGURE 16. Variability of modified mesotibia in Anabaxis foveolata, Raffray, 1908, in dorsal view. A—ND, Mangamuka Summit. B—AK, Howick. C—WO, Mount Pirongia. D—HB, Kaweka Range. E—WN, Tararua. F—SI, Secretary Island. Scales: 0.15 mm.
FIGURE 17 in Review and clinal variation of New Zealand Anabaxis Raffray (Coleoptera: Staphylinidae: Pselaphinae: Goniaceritae)
FIGURE 17. Regressions of the length of modifications in males from localities throughout New Zealand along with the increasing latitudes. A) Relative length of mesotrochanteral spine to the ventral length of mesotrochanter. B) Relative length of mesotibial spine to the length of mesotarsal claw.
FIGURE 14 in Review and clinal variation of New Zealand Anabaxis Raffray (Coleoptera: Staphylinidae: Pselaphinae: Goniaceritae)
FIGURE 14. Variability of the aedeagus morphology in Anabaxis foveolata Raffray, 1908. A, D) Aedeagus, in dorsal view. B, E) Same, in ventral view. C, F) Same, in lateral view. A, B, C—NC, Mount Aicken. D, E, F—SI, Stewart Island. Scales: 0.15 mm.
FIGURE 9 in Review and clinal variation of New Zealand Anabaxis Raffray (Coleoptera: Staphylinidae: Pselaphinae: Goniaceritae)
FIGURE 9. Variability of basal elytral foveae in Anabaxis foveolata Raffray, 1908. A, B—ND, Mangamuka Summit. C, D— AK, Waitakere, Auckland. E, F—AK, Howick, Auckland. Scales: 0.15 mm.
FIGURE 13 in Review and clinal variation of New Zealand Anabaxis Raffray (Coleoptera: Staphylinidae: Pselaphinae: Goniaceritae)
FIGURE 13. Variability of the aedeagus morphology in Anabaxis foveolata Raffray, 1908. A, D, G, J, M, P) Aedeagus, in dorsal view. B, E, H, K, N, Q) Same, in ventral view. C, F, I, L, O, R) Same, in lateral view. A, B, C—BP, Lake Okataina. D, E, F—GB, Kakanui Stream. G, H, I—TK, New Plymouth. J, K, L—TO, Ohakune. M, N, O—WN, Tararua. P, Q, R—NN, Rough Island. Scales: 0.15 mm.
FIGURE 12 in Review and clinal variation of New Zealand Anabaxis Raffray (Coleoptera: Staphylinidae: Pselaphinae: Goniaceritae)
FIGURE 12. Variability of the aedeagus morphology in Anabaxis foveolata Raffray, 1908. A, D, G, J, M, P) Aedeagus, in dorsal view. B, E, H, K, N, Q) Same, in ventral view. C, F, I, L, O, R) Same, in lateral view. A, B, C—ND, Mangamuka Summit. D, E, F—AK, Waitakere. G, H, I—AK, Howick, Auckland. J, K, L—CL, Aldermen Island. M, N, O—BP, Te Aroha Summit. P, Q, R— WO, Mount Maungatautari. Scales: 0.15 mm.
FIGURE 18 in Review and clinal variation of New Zealand Anabaxis Raffray (Coleoptera: Staphylinidae: Pselaphinae: Goniaceritae)
FIGURE 18. Split regressions of the length of modifications in males from localities of North Island and South Island respectively along with the increasing latitudes. A) Relative length of mesotrochanteral spine to the ventral length of mesotrochanter. B) Relative length of mesotibial spine to the length of mesotarsal claw.
FIGURE 11 in Review and clinal variation of New Zealand Anabaxis Raffray (Coleoptera: Staphylinidae: Pselaphinae: Goniaceritae)
FIGURE 11. Variability of the laminae of aedeagus in Anabaxis foveolata Raffray, 1908, in dorsal view (laminae are highlighted by white outlines). A—SI, Stewart Island. B—BP, Te Aroha Summit. Scales: 0.15 mm.
FIGURE 10 in Review and clinal variation of New Zealand Anabaxis Raffray (Coleoptera: Staphylinidae: Pselaphinae: Goniaceritae)
FIGURE 10. Variability of basal elytral foveae in Anabaxis foveolata Raffray, 1908. A—WO, Mount Pirongia. B—WN, Tararua. C, D—WO. Mount Maungatautari. E, F—NC, Mount Aicken. Scales: 0.15 mm.
FIGURE 7 in Review and clinal variation of New Zealand Anabaxis Raffray (Coleoptera: Staphylinidae: Pselaphinae: Goniaceritae)
FIGURE 7. Primary type specimens and diagnostic features of Anabaxis Raffray, 1908. A) Lectotype, Anabaxis lunatica King, 1863. B) Lectotype, Anabaxis quinquefoveolata Raffray, 1900. C) Lectotype, Anabaxis vagus Oke, 1932. D) Head of Anabaxis lunatica, in dorsal view. E) Head of Anabaxis foveolata, in dorsal view. Scale bar: A, B, C = 0.3 mm, D, E = 0.15 mm.
FIGURE 6 in Review and clinal variation of New Zealand Anabaxis Raffray (Coleoptera: Staphylinidae: Pselaphinae: Goniaceritae)
FIGURE 6. Primary type specimens and labels of Anabaxis Raffray, 1908. A) Lectotype, Anabaxis brevis Oke, 1928. B) Lectotype, Anabaxis foveolata Broun, 1880. C) Lectotype, Anabaxis electrica King, 1863. D) Lectotype, Anabaxis inusitata Blackburn, 1891. Scale bar: 0.3 mm.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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