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83 results for “Diplotaxini”

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Figure 17 in Review of the genus Pacuvia Curtis, 1844 (Coleoptera: Scarabaeidae: Melolonthinae: Diplotaxini)

Figure 17. Distributional map for Pacuvia castanea (black circles) and Pacuvia philippiana (red triangles) in central Chile.

opencc-by-4.0Dec 2021View details →
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Figures 6–10 in Review of the genus Pacuvia Curtis, 1844 (Coleoptera: Scarabaeidae: Melolonthinae: Diplotaxini)

Figures 6–10. Pacuvia philippiana Gutiérrez, 1951. 6. Dorsal habitus. 7. Oblique habitus. 8. Head and pronotum. 9. Parameres in dorsal view. 10. Parameres and phallobase in lateral view.

opencc-by-4.0Dec 2021View details →
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Figures 11–16. Pacuvia lectotypes. 11. Pacuvia castanea Curtis, 1844 dorsal habitus. 12. Pacuvia castanea oblique habitus. 13. Pacuvia castanea labels. 14. Pacuvia gayana Solier, 1851 dorsal habitus. 15. Pacuvia gayana oblique habitus. 16 in Review of the genus Pacuvia Curtis, 1844 (Coleoptera: Scarabaeidae: Melolonthinae: Diplotaxini)

Figures 11–16. Pacuvia lectotypes. 11. Pacuvia castanea Curtis, 1844 dorsal habitus. 12. Pacuvia castanea oblique habitus. 13. Pacuvia castanea labels. 14. Pacuvia gayana Solier, 1851 dorsal habitus. 15. Pacuvia gayana oblique habitus. 16. Pacuvia gayana labels.

opencc-by-4.0Dec 2021View details →
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Figure 15 in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 15. Mentum disc, arched transverse carina and concavity absent (A) or present (B); inner margins of both eyes parallel (C, F) or with degrees of convergence (D–E, G–H). Pacuvia castanea Curtis (A); Liogenys bidenticeps Moser (B); L. fusca Blanchard (C, F); Pachrodema castanea (D, G); Careocallus densicollis (E, H).

opennotspecifiedOct 2023View details →
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Figure 10 in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 10. Careocallus densicollis. Male holotype habitus (A); head and pronotum (B); lateral (C) and posterior (F) views; metatibia (D); protibial claw (E); parameres in dorsal (G) and lateral (H) views.

opennotspecifiedOct 2023View details →
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Figure 14 in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 14. Posterior margin of elytra, variation in apex of sutural ridge among Diplotaxini. Apex angulate (A, F); apex subangulate (E) or rounded (B–D). Diplotaxis tristis Kirby (A); Pachrodema castanea Blanchard (B); Homalochilus punctatostriatus (C); Pacuvia philippiana Gutiérrez (D); Liogenys suturalis (E); Careocallus tehuelche (F).

opennotspecifiedOct 2023View details →
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Figure 6 in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 6. Homalochilus nigripennis. Male holotype habitus (A); head and pronotum (B); lateral (C); posterior (D) views; metatibial apex (E); parameres in dorsal (F) and lateral (G) views. White arrow indicates the longest spur.

opennotspecifiedOct 2023View details →
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Figure 1 in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 1. Equal weights analysis—strict consensus tree of 92 most-parsimonious trees obtained. The numbers displayed in each node correspond to the value of absolute Bremer and symmetric resampling supports (above and below, respectively).

opennotspecifiedOct 2023View details →
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Figure 2. Implied weighting analysis, one tree obtained with concavity constant value k in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 2. Implied weighting analysis, one tree obtained with concavity constant value k = 8.750. The numbers displayed in each node correspond to the value of relative Bremer and symmetric resampling supports (above and below, respectively).

opennotspecifiedOct 2023View details →
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Figure 5 in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 5. Homalochilus punctatostriatus. Male habitus (A); female lectotype habitus (B) and labels (C); male in lateral (D) and posterior (E) views; male metatibial apex (F); parameres in dorsal (G) and lateral (H) views. White arrow indicates the longest spur.

opennotspecifiedOct 2023View details →
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Figure 9 in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 9. Careocallus tehuelche. Female paratype habitus (A); lateral (B) and posterior (C) views; protarsal claw of female (D) and male (E).

opennotspecifiedOct 2023View details →
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Figure 13 in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 13. Head in frontoventral view (A–C) and left mandible (D–G) of some Neotropical Diplotaxini. Careocallus tehuelche (A, D); Pachrodema sp. (B–G); Liogenys suturalis (Blanchard) (C, E); Homalochilus punctatostriatus (F).

opennotspecifiedOct 2023View details →
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Figure 4 in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 4. Diagnostic features and transformations that support Homalochilus. Head in dorsal view (A), head and anterior portion of prothorax in dorsolateral view (B); head in frontal view (C); maxilla (D); labium (E); elytra, white square indicates erect setae (F); head, pronotum, scutellum and proleg (G), thoracic and abdominal ventrites, white lines indicate size of ventrites (H). White arrows in each figure indicate transformations and/or detailed features.

opennotspecifiedOct 2023View details →
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Figure 12 in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 12. Hindwing in Careocallus, detail of radial sector. Careocallus tehuelche male (A) and female (B).

opennotspecifiedOct 2023View details →
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Figure 8 in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 8. Careocallus tehuelche. Male holotype habitus (A), head and pronotum (B), lateral (C), metatibia (D), posterior (E), and parameres in dorsal (F) and lateral (G) views.

opennotspecifiedOct 2023View details →
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Figure 7 in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 7. Liogenys niger (Blanchard) comb. nov.. Male neotype habitus (A), labels (E), and complete series at MLUH (D); female lectotype (B) and labels (F); non-uniform body colour variation (C); male in lateral (G) and posterior (I) views; detail of ventrites II and II with medial tubercle (H); parameres in dorsal (J) and lateral (K) views.

opennotspecifiedOct 2023View details →
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Figure 11 in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 11. Hindwing in Careocallus. Careocallus densicollis male (A); Careocallus tehuelche male (B) and female (C).

opennotspecifiedOct 2023View details →
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Figure 3 in New and revised taxa of Neotropical Diplotaxini (Coleoptera: Melolonthidae): do they change the existing relationships? Revisiting systematics with morphological and molecular data

Figure 3. Phylogram of the 50% majority-rule consensus of trees for the 29-taxon dataset of Diplotaxini from Bayesian inference (BI) analysis based on the combined gene dataset (ITS2, COI). Values displayed above branches (orange) correspond to BI posterior probabilities (PP). Values displayed below branches (green) correspond to maximum likelihood (ML) ultrafast bootstrap (UB) proportions (>50%) in clades also present in the best ML tree.

opennotspecifiedOct 2023View details →
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Supplementary material 1 from: Cherman MA, Mise KM, Morón MA, Vaz-de-Mello FZ, Almeida LM (2017) A taxonomic revision of Liogenys occurring in Brazil with an interactive key and remarks on New World Diplotaxini (Coleoptera, Melolonthidae). ZooKeys 699: 1-120. https://doi.org/10.3897/zookeys.699.12031

Supplementary material 1 from: Cherman MA, Mise KM, Morón MA, Vaz-de-Mello FZ, Almeida LM (2017) A taxonomic revision of Liogenys occurring in Brazil with an interactive key and remarks on New World Diplotaxini (Coleoptera, Melolonthidae). ZooKeys 699: 1-120. https://doi.org/10.3897/zookeys.699.12031

opencc-zeroOct 2019View details →
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FIGURE 9 in Liogenys Guerin-Méneville, 1831 (Coleoptera: Scarabaeidae: Melolonthinae Diplotaxini) of northern South America and Central America: taxonomic overview with four new species

FIGURE 9. Geographical distribution of the Liogenys of A) the northern South America and Central America, overlapping records in B) Panama and in C) Venezuela.

opennotspecifiedJun 2021View details →

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