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229 results for “Lamb”
Figures 5-9 from: Bond JE, Lamb T (2019) A new species of Pionothele from Gobabeb, Namibia (Araneae, Mygalomorphae, Nemesiidae). ZooKeys 851: 17-25. https://doi.org/10.3897/zookeys.851.31802
Figures 5-9 Photographic illustrations of male (holotype) and female Pionothelegobabeb sp. n. 5 male leg I and mating clasper, retrolateral view 6 male leg I and mating clasper, prolateral view 7 male eye group 8 male pedipalp distal segments and bulb 9 cleared spermathecae. Scale bar: 0.5 mm (7, 8, 9).
Figures 2-4 from: Bond JE, Lamb T (2019) A new species of Pionothele from Gobabeb, Namibia (Araneae, Mygalomorphae, Nemesiidae). ZooKeys 851: 17-25. https://doi.org/10.3897/zookeys.851.31802
Figures 2-4 Habitus photograph and illustrations of Pionothelegobabeb sp. n. 2 Live male specimen 3 habitus digital illustration of male holotype specimen 4 habitus digital illustration of female.
Figure 2 from: Niemiller ML, Inebnit T, Hinkle A, Jones BD, Jones M, Lamb J, Mann N, Miller B, Pinkley J, Pitts S, Sapkota KN, Slay ME (2019) Discovery of a new population of the federally endangered Alabama Cave Shrimp, Palaemonias alabamae Smalley, 1961, in northern Alabama. Subterranean Biology 32: 43-59. https://doi.org/10.3897/subtbiol.32.38280
Figure 2 Photographs of the cave shrimp from Fern Cave, Jackson County, Alabama in life: dorsal (A) and lateral views (B).
Figure 4 from: Niemiller ML, Inebnit T, Hinkle A, Jones BD, Jones M, Lamb J, Mann N, Miller B, Pinkley J, Pitts S, Sapkota KN, Slay ME (2019) Discovery of a new population of the federally endangered Alabama Cave Shrimp, Palaemonias alabamae Smalley, 1961, in northern Alabama. Subterranean Biology 32: 43-59. https://doi.org/10.3897/subtbiol.32.38280
Figure 4 Bayesian phylogram showing the relationships among the new Fern Cave population and other populations of P. alabamae and P. sp. nov. in Alabama inferred from the mitochondrial 16S ribosomal RNA locus. Posterior probabilities are to the left of the corresponding node.
Figure 1 from: Niemiller ML, Inebnit T, Hinkle A, Jones BD, Jones M, Lamb J, Mann N, Miller B, Pinkley J, Pitts S, Sapkota KN, Slay ME (2019) Discovery of a new population of the federally endangered Alabama Cave Shrimp, Palaemonias alabamae Smalley, 1961, in northern Alabama. Subterranean Biology 32: 43-59. https://doi.org/10.3897/subtbiol.32.38280
Figure 1 Distribution of the Alabama Cave Shrimp (Palaemonias alabamae) in Madison and Jackson counties, Alabama, USA. Carbonate strata are depicted in gray. Alabama Cave Shrimp sites are shown as blue dots.
Figure 3 from: Niemiller ML, Inebnit T, Hinkle A, Jones BD, Jones M, Lamb J, Mann N, Miller B, Pinkley J, Pitts S, Sapkota KN, Slay ME (2019) Discovery of a new population of the federally endangered Alabama Cave Shrimp, Palaemonias alabamae Smalley, 1961, in northern Alabama. Subterranean Biology 32: 43-59. https://doi.org/10.3897/subtbiol.32.38280
Figure 3 Joe Lamb and Bradley Jones searching for cave shrimp in an isolated pool near the Davidson Entrance to Fern Cave system on 25 August 2018.
Figs. 11–17 in Is Drosophila nasuta Lamb (Diptera, Drosophilidae) currently reaching the status of a cosmopolitan species?
Figs. 11–17. Chromosomes from larvae and young male imagoes of the invasive Drosophila nasuta (isofemale lines M59F1 and M60F1), Cidade Universitária "Armando de Salles Oliveira", São Paulo, state of São Paulo, Brazil. 11–14. C-band mitotic metaphase with 2n = 8 in neuroblast cells of females (11, 12) and males (13, 14), note the rod-X chromosomes and the J-shaped heterochromatic Y chromosome. 15–17. Male meiotic configurations. 15. Metaphase I, note the XY heterologous association. 16–17. Metaphase II cells, the sex chromosomes are indicated. The dot chromosomes are indicated by arrowheads. All photomicrographs of the mitotic or the meiotic cells are to the same scale. Scale bars = 10 µm.
Figure 6 from: Wang Y-L, Li Q, Toda MJ, Gao J-J (2021) The genus Dettopsomyia Lamb, 1914 (Diptera, Drosophilidae) from southern China. ZooKeys 1056: 73-94. https://doi.org/10.3897/zookeys.1056.56996
Figure 6 Dettopsomyia discontinua Wang & Gao, sp. nov. (A–I #01585, J–L paratype #01168) A left lateral habitus B head and thorax (dorsal view) C wing (right, dorsal view) D abdomen (lateral view) E abdomen (dorsal view) F periphallic organs (posterolateral view) G surstylus H phallic organs (ventral view) I phallic organs (dorsolateral view) J oviscapt (lateral view) K oviscapt (ventral view) L spermatheca. Scale bars: 1.0 mm (photograph) or 0.1 mm (line drawing).
Figure 5 from: Wang Y-L, Li Q, Toda MJ, Gao J-J (2021) The genus Dettopsomyia Lamb, 1914 (Diptera, Drosophilidae) from southern China. ZooKeys 1056: 73-94. https://doi.org/10.3897/zookeys.1056.56996
Figure 5 Dettopsomyia serripenis Wang & Gao, sp. nov. (A–I #00152, J–L paratype #00156) A left lateral habitus B head and thorax (dorsal view) C wing (right, dorsal view) D abdomen (lateral view) E abdomen (dorsal view) F periphallic organs (posterolateral view) G surstylus H phallic organs (ventral view) I phallic organs (dorsolateral view) J oviscapt (lateral view) K oviscapt (ventral view) L spermatheca. Scale bars: 1.0 mm (photograph) or 0.1 mm (line drawing).
Figure 8 from: Wang Y-L, Li Q, Toda MJ, Gao J-J (2021) The genus Dettopsomyia Lamb, 1914 (Diptera, Drosophilidae) from southern China. ZooKeys 1056: 73-94. https://doi.org/10.3897/zookeys.1056.56996
Figure 8 Dettopsomyia paranigrovittata Wang, Li & Gao, sp. nov. (A–I #01145) A left lateral habitus B head and thorax (dorsal view) C wing (right, dorsal view) D abdomen (lateral view) E abdomen (dorsal view) F periphallic organs (posterolateral view) G surstylus H phallic organs (ventral view) I phallic organs (ventrolateral view). Scale bars: 1.0 mm (photograph) or 0.1 mm (line drawing).
Figure 1 from: Wang Y-L, Li Q, Toda MJ, Gao J-J (2021) The genus Dettopsomyia Lamb, 1914 (Diptera, Drosophilidae) from southern China. ZooKeys 1056: 73-94. https://doi.org/10.3897/zookeys.1056.56996
Figure 1 An un-rooted, neighbor-joining tree built with DNA barcodes (mitochondrial COI sequences) of six Dettopsomyia species. Label of each operational taxonomic unit (OTU) is given in the format of "voucher number (sex)". Node confidences (i.e., bootstrap percentages from 1000 replicates) ≥ 50% are shown.
Figure 4 from: Wang Y-L, Li Q, Toda MJ, Gao J-J (2021) The genus Dettopsomyia Lamb, 1914 (Diptera, Drosophilidae) from southern China. ZooKeys 1056: 73-94. https://doi.org/10.3897/zookeys.1056.56996
Figure 4 Dettopsomyia acutipenis Wang & Gao, sp. nov. (A–I #00151, J–L paratype #00380) A left lateral habitus B head and thorax (dorsal view) C wing (right, dorsal view) D abdomen (lateral view) E abdomen (dorsal view) F periphallic organs (posterolateral view) G surstylus H phallic organs (ventral view) I aedeagus (dorsolateral view) J oviscapt (lateral view) K oviscapt (ventral view) L spermatheca. Abbreviations: aed = aedeagus, aed apod = aedeagal apodeme, cerc = cercus, epand = epandrium, hypd = hypandrium, sur = surstylus. Scale bars: 1.0 mm (photograph) or 0.1 mm (line drawing).
Figure 7 from: Wang Y-L, Li Q, Toda MJ, Gao J-J (2021) The genus Dettopsomyia Lamb, 1914 (Diptera, Drosophilidae) from southern China. ZooKeys 1056: 73-94. https://doi.org/10.3897/zookeys.1056.56996
Figure 7 Dettopsomyia camelonota Wang, Li & Gao, sp. nov. (A–I #01607, J–L paratype #01608) A left lateral habitus B head and thorax (dorsal view) C wing (right, dorsal view) D abdomen (lateral view) E abdomen (dorsal view) F periphallic organs (posterolateral view) G surstylus H phallic organs (ventral view) I phallic organs (dorsolateral view) J oviscapt (lateral view) K oviscapt (ventral view) L spermatheca. Scale bars: 1.0 mm (photograph) or 0.1 mm (line drawing).
Figure 12 from: Lamb T, Pollard R, Bond J (2013) Genetic variation corroborates subspecific delimitation in the Namib fog-basking beetle, Onymacris unguicularis (Haag) (Tenebrionidae, Coleoptera). ZooKeys 353: 47-60. https://doi.org/10.3897/zookeys.353.6228
Figure 12 - Bayesian consensus tree showing relationships within Onymacris unguicularis. Bold branches subtend nodes with Bayesian posterior probabilities of 1.0; numbers below the branches are ML bootstrap values.
Figure 11 from: Lamb T, Pollard R, Bond J (2013) Genetic variation corroborates subspecific delimitation in the Namib fog-basking beetle, Onymacris unguicularis (Haag) (Tenebrionidae, Coleoptera). ZooKeys 353: 47-60. https://doi.org/10.3897/zookeys.353.6228
Figure 11 - Scatterplot of the principal component scores derived from geometric morphometric analysis of dorsal shape.
Figures 8-9 from: Lamb T, Pollard R, Bond J (2013) Genetic variation corroborates subspecific delimitation in the Namib fog-basking beetle, Onymacris unguicularis (Haag) (Tenebrionidae, Coleoptera). ZooKeys 353: 47-60. https://doi.org/10.3897/zookeys.353.6228
Figures 8-9 - Lateral aspects of the prosternal process depicting a blunt apex (8) in Onymacris unguicularis schulzeae and toothed apex (9) in Onymacris unguicularis unguicularis.
Figure 1 from: Lamb T, Pollard R, Bond J (2013) Genetic variation corroborates subspecific delimitation in the Namib fog-basking beetle, Onymacris unguicularis (Haag) (Tenebrionidae, Coleoptera). ZooKeys 353: 47-60. https://doi.org/10.3897/zookeys.353.6228
Figure 1 - Map illustrating the range and disjunct distribution of Onymacris unguicularis in the Namib Desert. Subspecies distributions are approximated by oval overlays; localities for genetic sampling, listed from south to north, are: 1 Luderitz 2 Gobabeb 3 Walvis Bay, and 4, 5 Torra Bay.
Figures 4-7 from: Lamb T, Pollard R, Bond J (2013) Genetic variation corroborates subspecific delimitation in the Namib fog-basking beetle, Onymacris unguicularis (Haag) (Tenebrionidae, Coleoptera). ZooKeys 353: 47-60. https://doi.org/10.3897/zookeys.353.6228
Figures 4-7 - Pronotum (4–5) and prosternum (6–7) of Onymacris unguicularis unguicularis (4, 6) and Onymacris unguicularis schulzeae (5, 7). Measurements for ratio calculations are marked on 5 and 7.
Figures 2-3 from: Lamb T, Pollard R, Bond J (2013) Genetic variation corroborates subspecific delimitation in the Namib fog-basking beetle, Onymacris unguicularis (Haag) (Tenebrionidae, Coleoptera). ZooKeys 353: 47-60. https://doi.org/10.3897/zookeys.353.6228
Figures 2-3 - Dorsal habitus of Onymacris unguicularis unguicularis (2) and Onymacris unguicularis schulzeae (3).
Figure 2 from: Williams KA, Lamb J, Villet MH (2016) Phylogenetic radiation of the greenbottle flies (Diptera, Calliphoridae, Luciliinae). ZooKeys 568: 59-86. https://doi.org/10.3897/zookeys.568.6696
Figure 2 - Bayesian inference tree constructed from mitochondrial gene COI. Posterior probabilities indicated on nodes. Green box = Hemipyrellia sp. Blue box = Dysctritomyia sp. C = Lucilia cuprina, Ca = Lucilia caesar, Co = Lucilia coeruleiviridis, CV = Calliphora vicina, Ex = Lucilia eximia, Fa = Lucilia fayeae, H = Hemipyrellia fernandica IL = Lucilia illustris, In = Lucilia infernalis, Mx = Lucilia mexicana, S = Lucilia sericata, Si = Lucilia silvarum, Th = Lucilia thatuna, AUS = Australia, BRN = Burundi, CAN = Canada, CSR = Costa Rica, DOM = Dominican Republic, FRC = France, GER = Germany, JPN = Japan, NAM = Namibia, EGT = Egypt, RWN = Rwanda, SWZ = Switzerland, SA = South Africa, TAN = Tanzania, THA = Thailand, USA = United States of America, ZIM = Zimbabwe. DBN = Durban, CT = Cape Town.
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