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236 results for “leaf morphology”
FIGURES 104–118 in Comparative morphology of internal reproductive systems in leaf beetles of the Donaciinae and Criocerinae (Coleoptera: Chrysomelidae) and its implication for the phylogeny
FIGURES 104–118. Male internal reproductive systems of the Criocerinae. 104: Crioceris quatuordecimpunctata, 105: Lema (Lema) cirsicola, 106: Le. (Le.) concinnipennis, 107: Le. (Le.) coronata, 108: Le. (Le.) delicatula, 109: Le. (Le.) diversa, 110: Le. (Le.) michioi. 111: Le. (Microlema) decempunctata, 112: Le. (Petauristes) honorata, 113: Lilioceris (Bradyceris) lewisi, 114: Li. (Lilioceris) parvicollis, 115: Li. (Li.) rugata, 116: Li. (Li.) subpolita, 117: Oulema dilutipes, 118: O. oryzae. AG: Accessory gland; Ed: ejaculatory duct; EdC: common ejaculatory duct; EdL: lateral ejaculatory duct; Prt: prostata; Sv: seminal vesicle; Tes: testis; Vd: vas deferens.
FIGURES 58–75 in Comparative morphology of internal reproductive systems in leaf beetles of the Donaciinae and Criocerinae (Coleoptera: Chrysomelidae) and its implication for the phylogeny
FIGURES 58–75. Spermathecal organs of the Donaciinae. 58: Donacia (Cyphogaster) lenzi, 59: D. (C.) provostii, 60: D. (Donacia) ozensis, 61, 62: D. (Donaciomima) clavareaui, 63: D. (Donaciomima) flemola, 64–66: D. (Donaciomima) hiurai, 67, 68: D. (Donaciomima) japana, 69: D. (Donaciomima) nitidior, 70, 71: D. (Donaciomima) vulgaris, 72, 73: Plateumaris constricticollis babai, 74: P. constricticollis toyamensis, 75: P. sericea. 62, 65, 66: Enlarged. 71, 73: Opening part of the spermathecal duct. SptC: Spermathecal capsule; SptCd: distal part of spermathecal capsule; SptCp: proximal part of spermathecal capsule; SptD: spermathecal duct; SptGl: spermathecal gland; SptM: spermathecal muscle.
FIGURES 21–33 in Comparative morphology of internal reproductive systems in leaf beetles of the Donaciinae and Criocerinae (Coleoptera: Chrysomelidae) and its implication for the phylogeny
FIGURES 21–33. Male internal reproductive systems of the Donaciinae. 21: Donacia (Cyphogaster) lenzi, 22: D. (C.) provostii, 23: D. (Donacia) ozensis, 24: D. (Donaciomima) clavareaui, 25: D. (Donaciomima) flemora, 26: D. (Donaciomima) hiurai, 27: D. (Donaciomima) japana, 28: D. (Donaciomima) nitidior, 29: D. (Donaciomima) vulgaris, 30: Plateumaris constricticollis babai, 31: do, peritoneal sheath was removed, 32: P. constricticollis toyamensis, 33: P. sericea. AG: Accessory gland; Ed: ejaculatory duct; EdC: common ejaculatory duct; EdL: lateral ejaculatory duct; ES: ejaculatory sac; Prt: prostata; Sv: seminal vesicle; Tes: testis; Vd: vas deferens; Ve: vas efferens.
FIGURES 1–8 in Comparative morphology of internal reproductive systems in leaf beetles of the Donaciinae and Criocerinae (Coleoptera: Chrysomelidae) and its implication for the phylogeny
FIGURES 1–8. Schematic depictions and terminology adopted in this study. 1: Male internal reproductive system with the Type 1 testis (sperm tubes are enveloped in the peritoneal sheath), 2: Type 3 testis (sperm tubes, vasa efferentia, and part of vas deferens are enveloped in the peritoneal sheath), 3: Type 4 testis (sperm tubes, vasa efferentia, and vas deferens are enveloped in the peritoneal sheath), 4: topographical relationships among sperm tubes, vasa efferentia, and vas deferens in the Type 4 testis (the condition in which the peritoneal sheath is removed), 5: male aedeagus (lateral view), 6: female internal reproductive system, 7: spermathecal organ (enlarged); 8: definitions of explanatory terms for describing spermathecal capsules.
FIGURES 76–91 in Comparative morphology of internal reproductive systems in leaf beetles of the Donaciinae and Criocerinae (Coleoptera: Chrysomelidae) and its implication for the phylogeny
FIGURES 76–91. Aedeagi of the Criocerinae. 76: Crioceris quatuordecimpunctata, 77: Lema (Lema) cirsicola, 78: Le. (Le.) concinnipennis, 79: Le. (Le.) coronata, 80: Le. (Le.) delicatula, 81: Le. (Le.) diversa, 82: Le. (Le.) michioi, 83: Le. (Le.) scuterallis, 84: Le. (Microlema) decempunctata, 85: Le. (Petauristes) honorata, 86: Lilioceris (Bradyceris) lewisi, 87: Li. (Lilioceris) parvicollis, 88: Li. (Li.) rugata, 89: Li. (Li.) subpolita, 90: Oulema dilutipes, 91: O. oryzae. Left dorsal, middle lateral, and right ventral views. MF: median foramen; ML: median lobe; MO: median orifice; Teg: tegmen.
FIGURES 34–57 in Comparative morphology of internal reproductive systems in leaf beetles of the Donaciinae and Criocerinae (Coleoptera: Chrysomelidae) and its implication for the phylogeny
FIGURES 34–57. Female internal reproductive systems of the Donaciinae. 34, 35: Donacia (Cyphogaster) lenzi, 36, 37: D. (C.) provostii, 38–40: D. (Donacia) ozensis, 41: D. (Donaciomima) clavareaui, 42, 43: D. (Donaciomima) flemora, 44, 45: D. (Donaciomima) hiurai, 46, 47: D. (Donaciomima) japana, 48, 49: D. (Donaciomima) nitidior, 50, 51: D. (Donaciomima) vulgaris, 52, 53: Plateumaris constricticollis babai, 54, 55: P. constricticollis toyamensis, 56, 57: P. s e r i - cea. 39: Right ovary consisting of 7 ovarioles. 35, 37, 40, 43, 45, 47, 49, 51, 53, 55, 57: Enlarged lateral view of bursa copulatrix and spermathecal organ. BC: Bursa copulatrix; CO: common oviduct; Ov: ovary; SptOrg: spermathecal organ.
FIGURES 9–20 in Comparative morphology of internal reproductive systems in leaf beetles of the Donaciinae and Criocerinae (Coleoptera: Chrysomelidae) and its implication for the phylogeny
FIGURES 9–20. Aedeagi of the Donaciinae. 9: Donacia (Cyphogaster) lenzi, 10: D. (C.) provostii, 11: D. (Donacia) ozensis, 12: D. (Donaciomima) clavareaui, 13: D. (Donaciomima) flemora, 14: D. (Donaciomima) hiurai, 15: D. (Donaciomima) japana, 16: D. (Donaciomima) nitidior, 17: D. (Donaciomima) vulgaris, 18: Plateumaris constricticollis babai, 19: P. constricticollis toyamensis, 20: P. sericea. Left dorsal, middle lateral, and right ventral views. MF: Median foramen; ML: median lobe; MO: median orifice; Teg: tegmen.
FIGURES 17–20 in Larval morphology, development, and notes on the natural history of Cephaloleia " rolled-leaf " beetles (Coleoptera: Chrysomelidae: Cassidinae)
FIGURES 17–20. Diet breadth and mean ± SD number of adult beetles per plant. 17. Cephaloleia belti. 18. C. dilaticollis. 19. C. dorsalis. 20. C. placida. Ct: Canna tuerckheimii Kraenzl, C1: Calathea cleistantha Standl., C2: C. crotalifera S. Watson, C3: C. gymnocarpa H. Kenn., C4: C. hammeli H. Kenn., C5: C. inocephala inocephala (Kuntze) H. Kenn. and Nicolson, C6: C. lasiostachia Donn. Sm., C7: C. leucostachys Hook. f., C8: C. lutea Schult., C9: C. marantifolia Standl., C10: C. micans (L. Mathieu) Körn., C11: C. similis H. Kenn., C12: C. warscewiczii (L. Mathieu ex Planch.) Planch. & Linden, I1: Ischnosiphon elegans Standl., I2: I. inflatus Standl., P1: Pleiostachia pruinosa (Regel) K. Schum., Co1: Costus bracteatus Rowlee, Co2: C. laevis Ruiz & Pav., Co3: C. malortieanus H. Wendl., Co4: C. pulverulentus C. Presl, H1: Heliconia imbricata (Kuntze) Baker, H2: H. irrasa Lane ex R.R. Sm., H3: H. latispatha Benth., H4: H. mariae Hook. f., H5: H. mathiasiae G.S. Daniels & F.G. Stiles, H6: H. pogonantha Cufod., H7: H. wagneriana Petersen, R1: Renealmia alpinia (Rottb.) Maas, R2: R. cernua (Sw. ex Roem. & Schult.) J.F. Macbr., R3: R. pluriplicata Maas.
FIGURES 1–16 in Larval morphology, development, and notes on the natural history of Cephaloleia " rolled-leaf " beetles (Coleoptera: Chrysomelidae: Cassidinae)
FIGURES 1–16. Eggs, larva, pupae and adults of four species of "rolled-leaf" beetles. 1–4. Cephaloleia belti. 5–8. C. dilaticollis. 9–12. C. dorsalis. 13–16. C. placida. Scale bars in all panels equal 2 mm.
FIGURES 21–24 in Larval morphology, development, and notes on the natural history of Cephaloleia " rolled-leaf " beetles (Coleoptera: Chrysomelidae: Cassidinae)
FIGURES 21–24. Larva of Cephaloleia belti. 21. Dorsum longitudinal medial setose ridge. 22. Spiracle. 23. Head. 24. Leg.
FIGURE 4 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group
FIGURE 4. The hemipenis of a paratype (ZSM 1133/2003) of Uroplatus finiavana, (a) sulcal view, (b) parasulcal view.
FIGURE 7 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group
FIGURE 7. Haplotype network reconstruction of a 400 bp fragment of the nuclear C-mos gene for the analysed lineages of the Uroplatus ebenaui group. Haplotypes were inferred using the PHASE algorithm. The haplotypes of U. finiavana are in yellow. In green, blue and red are those of U. phantasticus and U. ebenaui, U. malama, respectively. Grey is used for the candidate species U. sp. 1–3 from Tsaratanana.
FIGURE 1 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group
FIGURE 1. Measurements taken from Uroplatus specimens listed in Table 1, (a) head; (b) body and tail.
FIGURE 3 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group
FIGURE 3. Uroplatus malama encountered in May 2010 at Andreoky (Andohahela area), south east of Madagascar around 600–700 m a. s. l. (a) photo of a male and (c) the ventral side of its tail; (b) a female.
FIGURE 9 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group
FIGURE 9. Map of Madagascar showing the distribution of the evolutionary lineages of the Uroplatus ebenaui group. Only selected localities: (1) those mentioned in the text, (2) those for which molecular data are presented herein or are available from us (unpublished), and (3) Andringitra Massif which is the southernmost record of U. phantasticus vouchered by a DNA sequence (Raxworthy et al. 2008). The Zahamena locality for U. phantasticus bears a question mark due to the high genetic differentiation of this population, which leaves its actual specific identity in need of confirmation.
FIGURE 6 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group
FIGURE 6. Bayesian inference tree of the Uroplatus ebenaui group based on a 700 bp fragment of the mitochondrial ND4 gene. Only posterior probability values> 0.95 are displayed at nodes. In yellow the highly supported cluster of the newly described species. Adjacent to each clade, a picture of the oral mucosa is presented showing its pigmentation. Bars in grey scale tones color code roughly for group clades in relation to elevation.
FIGURE 8 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group
FIGURE 8. Comparative pictures of the body and mouth pigmentation in living and preserved specimens of the different species of the Uroplatus ebenaui group. (a) female of U. ebenaui (ZCMV13013) from Nosy Be, November 2009; (b) male of U. malama (ZCMV12218) from Andreoky (Andohahela area), May 2010; (c) male of Uroplatus sp. 2 from Tsaratanana, June 2010; (d) female of Uroplatus sp. 3 from Tsaratanana, June 2010; (e) female of U. finiavana from Montagne d'Ambre, February 2003, live and preserved mouth pictures are not from the photographed animal; (f) male of U. phantasticus from Ranomafana, March 2004; (g) female of Uroplatus sp. 1 from Tsaratanana, June 2010.
FIGURE 2 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group
FIGURE 2. Photo in life of a male of Uroplatus finiavana sp. nov. from Montagne d'Ambre National Park, February 2004.
FIGURE 5 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group
FIGURE 5. (a, b) Comparative graphs of relative tail length and relative tail width (TaL/SVL, TaW/SVL) of the specimens employed in our morphometric study. Specimens are separated by sex; graphs display same trend for the compared character. (c, d) Comparisons of the length of medial posterior projection of the interorbital ridge (IRPL) and neck triangle length (NTL), among described species and Uroplatus finiavana only.
FIGURE 5 in Applying n-dimensional hypervolumes for species delimitation: unexpected molecular, morphological, and ecological diversity in the Leaf-Toed Gecko Phyllodactylus reissii Peters, 1862 (Squamata: Phyllodactylidae) from northern Peru
FIGURE 5. Dorsal and ventral views of the holotype of Phyllodactylus pachamama sp. nov. (ZFMK 90886). Scale bars represent 5 mm.
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