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1,039 results for “Satyrinae”

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Figure 4 in Cytochrome c oxidase subunit I barcode species delineation methods imply critically underestimated diversity in 'common' Hermeuptychia butterflies (Lepidoptera: Nymphalidae: Satyrinae)

Figure 4. Percentage of pairwise comparisons within each class of genetic distances (p-distance) for Hermeuptychia sequences calculated between (black bars) and within (grey bars) species. Species delimitation was based on the recursive partitioning ABGD analysis.

opennotspecifiedMar 2021View details →
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Figure 3. A in Cytochrome c oxidase subunit I barcode species delineation methods imply critically underestimated diversity in 'common' Hermeuptychia butterflies (Lepidoptera: Nymphalidae: Satyrinae)

Figure 3. A, relationships from our phylogenetic analyses based on Bayesian inference. Support values> 50 are indicated with posterior probability values indicated above the branch and bootstrap values indicated below the branch. Names and morphology group symbols are as presented in Seraphim et al. (2014), 'ns' indicates new sequences, and numbers in parentheses indicate the number of species within clades as indicated by the ABGD (recursive partitioning) approach. B, relationships among Hermeuptychia species redrawn from the phylogeny presented in Seraphim et al. (2014), for comparison.

opennotspecifiedMar 2021View details →
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Figure 2 in Cytochrome c oxidase subunit I barcode species delineation methods imply critically underestimated diversity in 'common' Hermeuptychia butterflies (Lepidoptera: Nymphalidae: Satyrinae)

Figure 2. Bayesian inference (BEAST2) tree for Hermeuptychia COI barcode sequences with posterior probabilities (top)> 0.5 and bootstrap values (bottom)> 50 indicated. Sequences generated in this study have voucher numbers beginning 'LEP' or 'IN' and are highlighted in blue. Species boundaries as indicated by the three most plausible implementations of each approach, bPTP (ML) (black), ABGD (recursive partitioning) (green) and GMYC (multiple thresholds) (grey), are illustrated as coloured bars on the side. * indicates groups that were recovered as one putative species but appear separated owing to the underlying phylogeny. Red vertical bars denote putative species that do not include an previously published sequences. Horizontal coloured bars and symbols beside sample voucher names denote morphology groupings identified in Seraphim et al. (2014).

opennotspecifiedMar 2021View details →
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FIGURES 34–35 in Notes on the genus Lethe Hübner, 1819 from Nujiang valley, Yunnan, China, with description of a new subspecies (Lepidoptera, Nymphalidae, Satyrinae)

FIGURES 34–35. Habitat and distribution map of Lethe laodamia sspp. 34, habitat of Lethe laodamia murasameae ssp. nov. in Gongshan county; 35, distribution map of Lethe laodamia sspp., records are taken from Bozano (1999), Lang (2017) and the present study.

opennotspecifiedJan 2022View details →
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FIGURES 21–28 in Notes on the genus Lethe Hübner, 1819 from Nujiang valley, Yunnan, China, with description of a new subspecies (Lepidoptera, Nymphalidae, Satyrinae)

FIGURES 21–28. Male of Lethe spp. 21–22, Lethe liae, holotype, Gongshan, Yunnan, by courtesy of Mr. Hao Huang; 23–24, L. liae, Gongshan, Yunnan, NJ4 (CQMNH); 25–26, L. umedai albofasciata; Dulongjiang, Yunnan, SATY0512 (CLSY); 27–28, L. langsongyuni, holotype, Weixi, Yunnan (SCAU). Scale=10 mm.

opennotspecifiedJan 2022View details →
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FIGURES 29–33 in Notes on the genus Lethe Hübner, 1819 from Nujiang valley, Yunnan, China, with description of a new subspecies (Lepidoptera, Nymphalidae, Satyrinae)

FIGURES 29–33. Male genitalia of Lethe spp. 29, Lethe liae, NJ4; 30, L. liae, holotype, by courtesy of Mr. Hao Huang; 31, L. umedai albofasciata; SATY0512; 32, L. langsongyuni, holotype; a=genitalia capsule in lateral view with left valva removed; b=aedeagus in lateral view; c=aedeagus in dorsal view; d=tip of left valva in dorsal view; 33, Dorsal view of the genitalia capsule of Lethe spp., a: Lethe liae, NJ4; b: L. umedai albofasciata; SATY0512; c: L. langsongyuni, holotype. Scale=1 mm, for figures 29, 31–33.

opennotspecifiedJan 2022View details →
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FIGURES 1–10 in Notes on the genus Lethe Hübner, 1819 from Nujiang valley, Yunnan, China, with description of a new subspecies (Lepidoptera, Nymphalidae, Satyrinae)

FIGURES 1–10. Male of Lethe laodamia sspp. 1–2, Lethe laodamia murasameae ssp. n., holotype, Gongshan, Yunnan, NJ6 (CQMNH); 3–4, L. laodamia murasameae ssp. n., paratype, Gongshan, Yunnan (CQMNH); 5–6, L. laodamia murasameae ssp. n., paratype, Gongshan, Yunnan, NJ5 (CQMNH); 7–8, L. laodamia laodamia, Mt. Fanjing, Guizhou, SATY0460 (CQMNH); 9–10, L. laodamia laodamia, Mt. Fanjing, Guizhou, SATY0450 (CLSY). Scale=10 mm.

opennotspecifiedJan 2022View details →
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FIGURES 17–20 in Notes on the genus Lethe Hübner, 1819 from Nujiang valley, Yunnan, China, with description of a new subspecies (Lepidoptera, Nymphalidae, Satyrinae)

FIGURES 17–20. Male genitalia of Lethe laodamia sspp. 17, Lethe laodamia murasameae ssp. n., holotype, NJ6 (CQMNH); 18, L. laodamia murasameae ssp. n., paratype, NJ5 (CQMNH); 19, L. laodamia laodamia, SATY0460 (CLSY); 20, L. laodamia laodamia, SATY0450 (CLSY). Scale=1 mm.

opennotspecifiedJan 2022View details →
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FIGURES 11–16 in Notes on the genus Lethe Hübner, 1819 from Nujiang valley, Yunnan, China, with description of a new subspecies (Lepidoptera, Nymphalidae, Satyrinae)

FIGURES 11–16. Female of Lethe laodamia sspp. 11–12, Lethe laodamia murasameae ssp. n., Gongshan, Yunnan, paratype (CQMNH); 13–14, L. laodamia murasameae ssp. n., Gongshan, Yunnan, paratype (CQMNH); 15–16, L. laodamia laodamia, Foping, Shaanxi (CLSY). Scale=10 mm.

opennotspecifiedJan 2022View details →
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FIGURE 8 in Revalidation of Yphthimoides inornata (Hayward, 1962) (Lepidoptera: Nymphalidae: Satyrinae: Satyrini: Euptychiina) based on morphological and molecular data with description of the immature stages

FIGURE 8. Relationship among Yphthimoides inornata (Hayward, 1962) stat. rev. and eighteen species of Yphthimoides based on DNA barcode sequences (minimum 621 and maximum 658bp of cox1) obtained by Maximum likelihood inferred with IQ- TREE. Numbers indicate SH-aLRT/UFBoot (nodes supported when both SH-aLRT ≥ 80 and UFBoot ≥ 95). Low support values were not showed. Codes that appear before the species names are sequence ID from GenBank. The scale bar represents expected number of nucleotide substitutions per site.

opennotspecifiedMar 2022View details →
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FIGURE 7 in Revalidation of Yphthimoides inornata (Hayward, 1962) (Lepidoptera: Nymphalidae: Satyrinae: Satyrini: Euptychiina) based on morphological and molecular data with description of the immature stages

FIGURE 7. Yphthimoides inornata (Hayward, 1962) stat. rev. A. pupa, ventral view; B. pupa, lateral view; C. pupa, dorsal view; D. imago, dorsal view; E. imago, ventral view.

opennotspecifiedMar 2022View details →
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FIGURE 5 in Revalidation of Yphthimoides inornata (Hayward, 1962) (Lepidoptera: Nymphalidae: Satyrinae: Satyrini: Euptychiina) based on morphological and molecular data with description of the immature stages

FIGURE 5. Immature stages of Yphthimoides inornata (Hayward, 1962) stat. rev. A. egg; B. first instar, dorsal view; C. first instar, lateral view; D. second instar, dorsal view; E. second instar, lateral view; F. third instar, dorsal view; G. third instar, lateral view; H. fourth instar, dorsal view; I. fourth instar, lateral view; J. fifth instar, dorsal view; K. fifth instar, lateral view.

opennotspecifiedMar 2022View details →
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FIGURE 3 in Revalidation of Yphthimoides inornata (Hayward, 1962) (Lepidoptera: Nymphalidae: Satyrinae: Satyrini: Euptychiina) based on morphological and molecular data with description of the immature stages

FIGURE 3. Male genitalia of Yphthimoides inornata (Hayward, 1962) stat. rev. A. Illustration provided in the original description (Hayward, 1962); B. dorsal view; C. ventral view; D. lateral view; E. aedeagus dorsal view; F. aedeagus lateral left view. B–F (DZ 54. 243).

opennotspecifiedMar 2022View details →
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FIGURE 6 in Revalidation of Yphthimoides inornata (Hayward, 1962) (Lepidoptera: Nymphalidae: Satyrinae: Satyrini: Euptychiina) based on morphological and molecular data with description of the immature stages

FIGURE 6. Yphthimoides inornata (Hayward, 1962) stat. rev. Head chaetotaxy of first instar. A. frontal view; B. lateral view.

opennotspecifiedMar 2022View details →
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FIGURE 4 in Revalidation of Yphthimoides inornata (Hayward, 1962) (Lepidoptera: Nymphalidae: Satyrinae: Satyrini: Euptychiina) based on morphological and molecular data with description of the immature stages

FIGURE 4. Female genitalia of Yphthimoides inornata (Hayward, 1962) stat. rev. A. lateral view; B. ventral view; C. signa detail (DZ 40.153).

opennotspecifiedMar 2022View details →
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FIGURE 2 in Revalidation of Yphthimoides inornata (Hayward, 1962) (Lepidoptera: Nymphalidae: Satyrinae: Satyrini: Euptychiina) based on morphological and molecular data with description of the immature stages

FIGURE 2. Yphthimoides inornata (Hayward, 1962) stat. rev. A. male dorsal view; B. male ventral view; D. female dorsal view; E. female ventral view (male DZ 54. 235; female DZ 54.236).

opennotspecifiedMar 2022View details →
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FIGURE 1 in Revalidation of Yphthimoides inornata (Hayward, 1962) (Lepidoptera: Nymphalidae: Satyrinae: Satyrini: Euptychiina) based on morphological and molecular data with description of the immature stages

FIGURE 1. Holotype male of Yphthimoides inornata (Hayward, 1962) stat. rev. A. dorsal view; B. ventral view; C. labels. Images taken by Gerardo Lamas and available on Butterflies of America (Warren et al. 2017).

opennotspecifiedMar 2022View details →
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FIGURE 7 in Immature stages and new host plant records for four satyrine species feeding on herbaceous bamboos in southeastern Peru (Lepidoptera: Nymphalidae: Satyrinae: Satyrini)

FIGURE 7. Immature stages with some notable characters indicated with arrows, Nhambikuara mima compared to Splendeuptychia furina; Paryphthimoides brixius compared to Paryphthimoides terrestris: 1a, b) Paryphthimoides brixius ultimate instar in dorsal view and lateral view; 2a, b) Paryphthimoides terrestris ultimate instar in dorsal view and lateral view; 3a, b) Nhambikuara mima ultimate instar in dorsal view and lateral view; 4a, b) Splendeuptychia furina ultimate instar prior to pupation in dorsal view and lateral view. 1c, 2c) Paryphthimoides brixius ultimate instar head capsule and Paryphthimoides terrestris ultimate instar head capsule; 3c, 4c) Nhambikuara mima ultimate instar head capsule and Splendeuptychia furina ultimate instar head capsule; 1d–f, 2d, e) pupa of Paryphthimoides brixius and Paryphthimoides terrestris; 3d–f, 4d, e) pupa of Nhambikuara mima compared to Splendeuptychia furina. All images for Nhambikuara mima, Splendeuptychia furina, and Paryphthimoides brixius are reproduced from the present article; All images for Paryphthimoides terrestris from Corahua-Espinioza et al. (in press).

opennotspecifiedApr 2022View details →
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FIGURE 6 in Immature stages and new host plant records for four satyrine species feeding on herbaceous bamboos in southeastern Peru (Lepidoptera: Nymphalidae: Satyrinae: Satyrini)

FIGURE 6. Host plants for Magneuptychia harpyia: Olyra latifolia L.: 1a) leaves; 1b) close-up view of the nodes; 1c) close-up view of inflorescence materials; 1d) host plant in situ. 1e) Taquara micrantha in situ 2a, b) adult of Magneuptychia harpyia in dorsal and ventral view (based on 2021-FLP-IMM-0352).

opennotspecifiedApr 2022View details →
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FIGURE 4 in Immature stages and new host plant records for four satyrine species feeding on herbaceous bamboos in southeastern Peru (Lepidoptera: Nymphalidae: Satyrinae: Satyrini)

FIGURE 4. Host plant, two variations of Taquara micrantha. Taquara micrantha with pubescence on the abaxial surface as a host plant for Nhambikuara mima and Paryphthimoides brixius: 1a) leaves; 1b) close-up view of the node and abaxial part showing pubescence; 1c) inflorescence materials; 1d) host plant in situ. Taquara micrantha lacking pubescence for Splendeuptychia furina: 2a) leaves and inflorescence in situ; 2b) close-up view of nodes; 2c) close-up view of abaxial surface showing lack of pubescence; 2d) host plant in situ.

opennotspecifiedApr 2022View details →

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