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14 results for “Cynodontidae”
Fig. 3 in Relationships between water transparency and abundance of Cynodontidae species in the Bananal floodplain, Mato Grosso, Brazil
Fig. 3. Cluster dendrogram based on relative abundance in biomass of Cynodontidae species and water transparency from 15 sampling sites in the Bananal floodplain, Mato Grosso, Brazil (UPGMA algorithm, Euclidian distance). See Table 1 for site codes.
Fig. 1 in Relationships between water transparency and abundance of Cynodontidae species in the Bananal floodplain, Mato Grosso, Brazil
Fig. 1. Partial map of South America showing the location of the study area in the Bananal floodplain. The detailed map depicts the sampling sites (circles) in the rios Araguaia and Mortes basins. See Table 1 for site codes.
Fig. 2 in Relationships between water transparency and abundance of Cynodontidae species in the Bananal floodplain, Mato Grosso, Brazil
Fig. 2. Linear regression between relative abundance in biomass (a) and number of individuals (b) of Cynodontidae species and water transparency from 15 sampling sites in the Bananal floodplain, Mato Grosso, Brazil.
Fig. 1. Sample places location. Points number 1, 3, 7, 12, 14, 18 and 20 in Reproductive biology of Rhaphiodon vulpinus (Ostariophysi: Cynodontidae) in the Tocantins River Basin, Brazil
Fig. 1. Sample places location. Points number 1, 3, 7, 12, 14, 18 and 20 = Tocantins river; 2 = Sono river; 4 = Lajeadinho river; 5 = Santa Luzia river; 6 = Mangues river; 8 = Areias river; 9 = Crixás river; 10 = Capivara Lagoon; 11 = Manuel Alves river; 13 = São Valério river; 15 = Santa Tereza river; 16 = Dionízio Lagoon; 17 = Água Branca Lagoon; 19 = Paranã river and 21 = Bonita Lagoon.
Fig. 5 in Reproductive biology of Rhaphiodon vulpinus (Ostariophysi: Cynodontidae) in the Tocantins River Basin, Brazil
Fig. 5. Monthly Tocantins River water level (m) variation. Vertical bars = minimum and maximum values; point = mean values.
Fig. 2 in Reproductive biology of Rhaphiodon vulpinus (Ostariophysi: Cynodontidae) in the Tocantins River Basin, Brazil
Fig. 2. Distribution of males and females of Rhaphiodon vulpinus, by standard length class. Asterisks indicate significant differences in sex ratio.
Fig. 4 in Reproductive biology of Rhaphiodon vulpinus (Ostariophysi: Cynodontidae) in the Tocantins River Basin, Brazil
Fig. 4. Monthly variation of the frequency of gonadal maturity stages (a and b), mean gonadosomatic index (c and d), and index of reproductive activity (e and f) for females (a, c, e) and males (b, d, f) of Rhaphiodon vulpinus.
Fig. 3 in Reproductive biology of Rhaphiodon vulpinus (Ostariophysi: Cynodontidae) in the Tocantins River Basin, Brazil
Fig. 3. Sexual maturity curve for females (a) and males (b) of Rhaphiodon vulpinus.
FIGURES 34–41. Mymarothecioides germanoi n in Monogenoids (Polyonchoinea, Dactylogyridae) from Hydrolycus armatus (Characiformes, Cynodontidae) with the description of a new species of Rhinoxenus and the proposal of a new genus from the Xingu River, Pará, Brazil
FIGURES 34–41. Mymarothecioides germanoi n. sp. 34. Holotype whole-mount (ventral) (composite). 35. Copulatory complex. 36. Hook pair 1–4, 6–7. 37. Hook pair 5. 38. Ventral bar. 39. Dorsal bar. 40. Ventral anchor. 41. Dorsal anchor.
FIGURES 27–33. Mymarothecioides ararai n in Monogenoids (Polyonchoinea, Dactylogyridae) from Hydrolycus armatus (Characiformes, Cynodontidae) with the description of a new species of Rhinoxenus and the proposal of a new genus from the Xingu River, Pará, Brazil
FIGURES 27–33. Mymarothecioides ararai n. sp. 27. Holotype whole-mount (ventral) (composite). 28. Copulatory complex. 29. Hook. 30. Ventral bar. 31. Dorsal bar. 32. Ventral anchor. 33. Dorsal anchor.
FIGURES 42–45 in Monogenoids (Polyonchoinea, Dactylogyridae) from Hydrolycus armatus (Characiformes, Cynodontidae) with the description of a new species of Rhinoxenus and the proposal of a new genus from the Xingu River, Pará, Brazil
FIGURES 42–45. The copulatory complex of species of Mymarothecioides n. gen. 42. Mymarothecioides ararai n. sp. 43. Mymarothecioides xinguensis n. sp. 44. Mymarothecioides altamirensis n. sp. 45. Mymarothecioides germanoi n. sp.
FIGURES 10–17. Mymarothecioides xinguensis n in Monogenoids (Polyonchoinea, Dactylogyridae) from Hydrolycus armatus (Characiformes, Cynodontidae) with the description of a new species of Rhinoxenus and the proposal of a new genus from the Xingu River, Pará, Brazil
FIGURES 10–17. Mymarothecioides xinguensis n. sp. 10. Holotype whole-mount (ventral) (composite). 11. Copulatory complex. 12. Hook pair 1–4, 6–7. 13. Hook pair 5. 14. Ventral bar. 15. Dorsal bar. 16. Ventral anchor. 17. Dorsal anchor.
FIGURES 1–9. Rhinoxenus cachorra n in Monogenoids (Polyonchoinea, Dactylogyridae) from Hydrolycus armatus (Characiformes, Cynodontidae) with the description of a new species of Rhinoxenus and the proposal of a new genus from the Xingu River, Pará, Brazil
FIGURES 1–9. Rhinoxenus cachorra n. sp. 1. Holotype whole-mount (ventral) (composite). 2. Copulatory complex. 3. Hook pair 2. 4. Hook pair 1. 5. Hook pair 3–7. 6. Ventral bar (view, ventral). 7. Ventral bar (view, dorsal). 8. Ventral anchor. 9. Dorsal anchor.
FIGURES 18–26. Mymarothecioides altamirensis n in Monogenoids (Polyonchoinea, Dactylogyridae) from Hydrolycus armatus (Characiformes, Cynodontidae) with the description of a new species of Rhinoxenus and the proposal of a new genus from the Xingu River, Pará, Brazil
FIGURES 18–26. Mymarothecioides altamirensis n. sp. 18. Composite whole-mount (ventral). 19. Copulatory complex. 20. Hook pair 1–4. 21. Hook pair 5. 22. Hook pair 6–7. 23. Ventral bar. 24. Dorsal bar. 25. Ventral anchor. 26. Dorsal anchor.
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