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306 results for “Larentiinae”
FIGURES 9–16 in New species and checklist of Turkish Eupithecia Curtis (Geometridae: Larentiinae)
FIGURES 9–16. Eupithecia species (scale bar = 10 mm). 9—E. graphata (Treitschke, 1828) (Turkey); 10—E. albofasciata Staudinger, 1879 (Turkey); 11—E. antigraphata sp. n. (holotype); 12—E. furcata Staudinger, 1879 (Turkey); 13—E. perigraphata sp. n. (holotype, first generation); 14—E. perigraphata sp. n. (paratype, second generation); 15—E. convallata Brandt, 1938 (Turkey); 16—E. siata Brandt, 1938 (Turkey).
FIGURES 1–8 in New species and checklist of Turkish Eupithecia Curtis (Geometridae: Larentiinae)
FIGURES 1–8. Eupithecia species (scale bar = 10 mm). 1—E. gelbrechti sp. n. (holotype); 2—E. niveata sp. n. (holotype); 3—E. armeniaca Wardikjan, 1970 (Turkey); 4—E. armeniaca Wardikjan, 1970 (Azerbaijan); 5—E. mima Mironov, 1989 (Turkey); 6—E. despectaria Lederer, 1853 (Turkey); 7—E. dubiosa Dietze, 1910 (Turkey, first generation); 8—E. dubiosa Dietze, 1910 (Turkey, second generation).
FIGURES 5–6 in Comparison of the structure and musculature of male terminalia in the genera Chloroclystis Hübner, Sigilliclystis Galsworthy, and Ziridava Walker (Lepidoptera: Geometridae: Larentiinae)
FIGURES 5–6. Ziridava xylinaria, male genitalia and muscles: 5. Armature (parts of valvae, parts of the muscles m2(10) and of the muscles m4 on the right side not shown, tufts of long setae laterally on the tegumen not shown. 6. Aedeagus.
FIGURES 1–2. Chloroclystis v in Comparison of the structure and musculature of male terminalia in the genera Chloroclystis Hübner, Sigilliclystis Galsworthy, and Ziridava Walker (Lepidoptera: Geometridae: Larentiinae)
FIGURES 1–2. Chloroclystis v-ata, male genitalia and muscles: 1. Armature (left valva partly removed, proximal part of the anal tube and of the muscles m1 and m2(10) on the right side and parts of the muscles m8(3) on the right side not shown). 2. Aedeagus.
FIGURES 3–4 in Comparison of the structure and musculature of male terminalia in the genera Chloroclystis Hübner, Sigilliclystis Galsworthy, and Ziridava Walker (Lepidoptera: Geometridae: Larentiinae)
FIGURES 3–4. Sigilliclystis insigillata, male genitalia and muscles: 3. Armature (left valva partly removed, coremata on the left side removed, parts of the muscles m2(10) on the right side, and of m4 on the left side not shown). 4. Aedeagus.
FIGURES 70–72 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 70–72. Notoreas perornata, genitalia of selected populations (population code in brackets): 70. male genital capsule; 71. phallus; 72. female genitalia. 70, 71. Wairau Bar MB (2c), NZAC slide Notoreas 65; 72. Karioitahi Beach AK (1a), NZAC slide Notoreas 60.
FIGURES 73–76 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 73–76. Notoreas perornata, female genitalia of selected populations (population code in brackets). 73. Pureora Lodge TO (1b), NZAC slide Notoreas 5; 74. Castlepoint WA (1e), NZAC slide Notoreas 71; 75. Te Humenga Pt WA (2a), NZAC slide Notoreas 9; 76. Cape Farewell NN (2b), NZAC slide Notoreas 51.
FIGURES 54–57 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 54–57. Notoreas perornata adults (2e). 54. Male upperside, Waiho Flats WD; 55. Female upperside, Waiho Flats WD; 56. Male underside, Waiho Flats WD; 57. Female underside (same specimen as Fig. 55).
FIGURES 66–69 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 66–69. Notoreas perornata, male genitalia of selected populations (population code in brackets): 66, 68. genital capsule; 67, 69. phallus. 66, 67. Te Humenga Pt WA (2a), NZAC slide Notoreas 7; 68, 69. Dry Rd, Sth Sandhill Creek NN (2b), NZAC slide Notoreas 12.
FIGURES 62–65 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 62–65. Notoreas perornata, male genitalia of selected populations (population code from text in brackets): 62, 64. genital capsule; 63, 65. phallus. Note: apparent slight differences between genitalia of moths from different populations (e.g. shape and spinosity of costal process of valva) do not seem to provide reliable taxonomic characters when larger samples are studied due to variation within populations; these images are included to give an impression of the variation and small differences should not be interpreted as constant or diagnostic. 62, 63. Waimamaku Beach ND (1a), NZAC slide Notoreas 11; 64, 65. Mt Ruapehu TO (1b), NZAC slide Notoreas 2.
FIGURES 48–53 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 48–53. Notoreas perornata adults (2d). 48. Female upperside, Mt Starveall NN; 49. Male underside (same specimen as Fig. 44); 50. Male underside (same specimen as Fig. 45); 51. Female underside (same specimen as Fig. 46); 52. Female underside (same specimen as Fig. 47); 53. Female underside (same specimen as Fig. 48).
FIGURES 42–47 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 42–47. Notoreas perornata adults: 42, 43. (2c); 44–47. (2d). 42. Female underside (same specimen as Fig. 39); 43. Female underside (same specimen as Fig. 40); 44. Male upperside, Mt Arthur NN; 45. Male upperside, Dun Mt NN (holotype of N. regilla Philpott); 46. Female upperside, Jacks Pass MB; 47. Female upperside, Craigieburn MC.
FIGURES 19–24 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 19–24. Notoreas perornata adults: 19–21. (1d); 22–23. (1e). 19. Male upperside, Cape Turnagain HB; 20. Female upperside, Cape Turnagain HB; 21. Male underside (same specimen as Fig. 19); 22. Female underside (same specimen as Fig. 20); 23. Male upperside, Castlepoint WA; 24. Female upperside, Castlepoint WA.
FIGURES 31–35 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 31–35. Notoreas perornata adults (2a). 31. Female upperside, L. Kohangapiripiri WN; 32. Female upperside, White Rock Rd WA; 33. Male underside (same specimen as Fig. 29); 34. Male underside (same specimen as Fig. 30); 35. Female underside, Owhiro Bay WN (BPNZ).
FIGURES 8–13 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 8–13. Notoreas perornata adults (1b). 8. Male upperside, Waipakihi River TO; 9. Female upperside, Blowhard Bush HB; 10. Female upperside, Mt Ruapehu TO; 11. Female upperside, Mt Ruapehu TO; 12. Male underside, Waipakihi River TO; 13. Female underside (same specimen as Fig. 11).
FIGURES 36–41 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 36–41. Notoreas perornata adults: 36, 37. (2b); 38–41. (2c). (1e). 36. Male upperside, Dry Rd–Anatori R. NN; 37. Male underside (same specimen as Fig. 36); 38. Male upperside, Wairau Bar MB; 39. Female upperside, Rarangi, Cloudy Bay SD; 40. Female upperside, Rarangi, Cloudy Bay SD; 41. Male underside (same specimen as Fig. 38).
FIGURES 2–7. N in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 2–7. N. perornata adults (1a). 2. Male upperside, Karioitahi Beach AK (1a); 3. Male upperside, [ND?] (BPNZ); 4. Female upperside, [ND?] (BPNZ); 5. Female upperside, Karioitahi Beach AK; 6. Male underside (same specimen as Fig. 2); 7. Female underside (same specimens as Fig. 5).
FIGURE 1 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURE 1. Mitochondrial DNA (COI) gene tree for Notoreas perornata complex and selected outgroups. Branch lengths are drawn proportional to the estimated number of substitutions per site following the scale bar. Numbers above branches are maximum likelihood bootstrap percentages. Species names are followed by specimen numbers in parentheses.
Supplementary material 1 from: Matson TA, Wagner DL (2020) A new Stamnodes from the southwestern United States (Lepidoptera, Geometridae, Larentiinae). ZooKeys 923: 79-90. https://doi.org/10.3897/zookeys.923.48290
Stamnodes fergusoni collection records
Figure 15 from: Matson TA, Wagner DL (2020) A new Stamnodes from the southwestern United States (Lepidoptera, Geometridae, Larentiinae). ZooKeys 923: 79-90. https://doi.org/10.3897/zookeys.923.48290
Figure 15 Distribution of Stamnodes fergusoni (N = 90, red). Single dots may represent > 1 individual. Scale bar: 200 km.
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