189 results on '"Pellegrini, Marco"'
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2. Figure 11 from: de Almeida RF, de Morais IL, Alves-Silva T, Antonio-Domingues H, Pellegrini MOO (2024) A new classification system and taxonomic synopsis for Malpighiaceae (Malpighiales, Rosids) based on molecular phylogenetics, morphology, palynology, and chemistry. PhytoKeys 242: 69-138. https://doi.org/10.3897/phytokeys.242.117469
3. Figure 6 from: de Almeida RF, de Morais IL, Alves-Silva T, Antonio-Domingues H, Pellegrini MOO (2024) A new classification system and taxonomic synopsis for Malpighiaceae (Malpighiales, Rosids) based on molecular phylogenetics, morphology, palynology, and chemistry. PhytoKeys 242: 69-138. https://doi.org/10.3897/phytokeys.242.117469
4. Figure 4 from: de Almeida RF, de Morais IL, Alves-Silva T, Antonio-Domingues H, Pellegrini MOO (2024) A new classification system and taxonomic synopsis for Malpighiaceae (Malpighiales, Rosids) based on molecular phylogenetics, morphology, palynology, and chemistry. PhytoKeys 242: 69-138. https://doi.org/10.3897/phytokeys.242.117469
5. Supplementary material 2 from: de Almeida RF, de Morais IL, Alves-Silva T, Antonio-Domingues H, Pellegrini MOO (2024) A new classification system and taxonomic synopsis for Malpighiaceae (Malpighiales, Rosids) based on molecular phylogenetics, morphology, palynology, and chemistry. PhytoKeys 242: 69-138. https://doi.org/10.3897/phytokeys.242.117469
6. Figure 5 from: de Almeida RF, de Morais IL, Alves-Silva T, Antonio-Domingues H, Pellegrini MOO (2024) A new classification system and taxonomic synopsis for Malpighiaceae (Malpighiales, Rosids) based on molecular phylogenetics, morphology, palynology, and chemistry. PhytoKeys 242: 69-138. https://doi.org/10.3897/phytokeys.242.117469
7. Figure 3 from: de Almeida RF, de Morais IL, Alves-Silva T, Antonio-Domingues H, Pellegrini MOO (2024) A new classification system and taxonomic synopsis for Malpighiaceae (Malpighiales, Rosids) based on molecular phylogenetics, morphology, palynology, and chemistry. PhytoKeys 242: 69-138. https://doi.org/10.3897/phytokeys.242.117469
8. Figure 7 from: de Almeida RF, de Morais IL, Alves-Silva T, Antonio-Domingues H, Pellegrini MOO (2024) A new classification system and taxonomic synopsis for Malpighiaceae (Malpighiales, Rosids) based on molecular phylogenetics, morphology, palynology, and chemistry. PhytoKeys 242: 69-138. https://doi.org/10.3897/phytokeys.242.117469
9. Figure 9 from: de Almeida RF, de Morais IL, Alves-Silva T, Antonio-Domingues H, Pellegrini MOO (2024) A new classification system and taxonomic synopsis for Malpighiaceae (Malpighiales, Rosids) based on molecular phylogenetics, morphology, palynology, and chemistry. PhytoKeys 242: 69-138. https://doi.org/10.3897/phytokeys.242.117469
10. A new classification system and taxonomic synopsis for Malpighiaceae (Malpighiales, Rosids) based on molecular phylogenetics, morphology, palynology, and chemistry
11. Figure 2 from: de Almeida RF, de Morais IL, Alves-Silva T, Antonio-Domingues H, Pellegrini MOO (2024) A new classification system and taxonomic synopsis for Malpighiaceae (Malpighiales, Rosids) based on molecular phylogenetics, morphology, palynology, and chemistry. PhytoKeys 242: 69-138. https://doi.org/10.3897/phytokeys.242.117469
12. Supplementary material 1 from: de Almeida RF, de Morais IL, Alves-Silva T, Antonio-Domingues H, Pellegrini MOO (2024) A new classification system and taxonomic synopsis for Malpighiaceae (Malpighiales, Rosids) based on molecular phylogenetics, morphology, palynology, and chemistry. PhytoKeys 242: 69-138. https://doi.org/10.3897/phytokeys.242.117469
13. Barking up the wrong tree: the importance of morphology in plant molecular phylogenetic studies
14. Figure 3 from: Almeida RF, Pellegrini MOO (2021) Heteropterys rosmarinifolia, a new species of Malpighiaceae with verticillate leaves from savannas grasslands of central Brazil. PhytoKeys 175: 45-54. https://doi.org/10.3897/phytokeys.175.62953
15. Figure 1 from: Almeida RF, Pellegrini MOO (2021) Heteropterys rosmarinifolia, a new species of Malpighiaceae with verticillate leaves from savannas grasslands of central Brazil. PhytoKeys 175: 45-54. https://doi.org/10.3897/phytokeys.175.62953
16. Figure 2 from: Almeida RF, Pellegrini MOO (2021) Heteropterys rosmarinifolia, a new species of Malpighiaceae with verticillate leaves from savannas grasslands of central Brazil. PhytoKeys 175: 45-54. https://doi.org/10.3897/phytokeys.175.62953
17. Heteropterys rosmarinifolia, a new species of Malpighiaceae with verticillate leaves from savannas grasslands of central Brazil
18. Figure 8 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996
19. Figure 26 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996
20. Figure 16 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996
21. Figure 6 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996
22. Figure 9 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996
23. Figure 3 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996
24. Figure 7 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996
25. Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales)
26. Figure 5 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996
27. Figure 4 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996
28. Recircumscription and taxonomic revision of Siderasis, with comments on the systematics of subtribe Dichorisandrinae (Commelinaceae)
29. Figure 2 from: Pellegrini MOO, Horn CN, Almeida RF (2018) Total evidence phylogeny of Pontederiaceae (Commelinales) sheds light on the necessity of its recircumscription and synopsis of Pontederia L. PhytoKeys 108: 25-83. https://doi.org/10.3897/phytokeys.108.27652
30. Figure 4 from: Pellegrini MOO, Horn CN, Almeida RF (2018) Total evidence phylogeny of Pontederiaceae (Commelinales) sheds light on the necessity of its recircumscription and synopsis of Pontederia L. PhytoKeys 108: 25-83. https://doi.org/10.3897/phytokeys.108.27652
31. Figure 6 from: Pellegrini MOO, Horn CN, Almeida RF (2018) Total evidence phylogeny of Pontederiaceae (Commelinales) sheds light on the necessity of its recircumscription and synopsis of Pontederia L. PhytoKeys 108: 25-83. https://doi.org/10.3897/phytokeys.108.27652
32. Figure 1 from: Pellegrini MOO, Horn CN, Almeida RF (2018) Total evidence phylogeny of Pontederiaceae (Commelinales) sheds light on the necessity of its recircumscription and synopsis of Pontederia L. PhytoKeys 108: 25-83. https://doi.org/10.3897/phytokeys.108.27652
33. Figure 7 from: Pellegrini MOO, Horn CN, Almeida RF (2018) Total evidence phylogeny of Pontederiaceae (Commelinales) sheds light on the necessity of its recircumscription and synopsis of Pontederia L. PhytoKeys 108: 25-83. https://doi.org/10.3897/phytokeys.108.27652
34. Figure 3 from: Pellegrini MOO, Horn CN, Almeida RF (2018) Total evidence phylogeny of Pontederiaceae (Commelinales) sheds light on the necessity of its recircumscription and synopsis of Pontederia L. PhytoKeys 108: 25-83. https://doi.org/10.3897/phytokeys.108.27652
35. Total evidence phylogeny of Pontederiaceae (Commelinales) sheds light on the necessity of its recircumscription and synopsis of Pontederia L.
36. Figure 5 from: Pellegrini MOO, Horn CN, Almeida RF (2018) Total evidence phylogeny of Pontederiaceae (Commelinales) sheds light on the necessity of its recircumscription and synopsis of Pontederia L. PhytoKeys 108: 25-83. https://doi.org/10.3897/phytokeys.108.27652
37. Figure 9 from: Pellegrini MOO, Horn CN, Almeida RF (2018) Total evidence phylogeny of Pontederiaceae (Commelinales) sheds light on the necessity of its recircumscription and synopsis of Pontederia L. PhytoKeys 108: 25-83. https://doi.org/10.3897/phytokeys.108.27652
38. Supplementary material 2 from: Pellegrini MOO, Horn CN, Almeida RF (2018) Total evidence phylogeny of Pontederiaceae (Commelinales) sheds light on the necessity of its recircumscription and synopsis of Pontederia L. PhytoKeys 108: 25-83. https://doi.org/10.3897/phytokeys.108.27652
39. Supplementary material 1 from: Pellegrini MOO, Horn CN, Almeida RF (2018) Total evidence phylogeny of Pontederiaceae (Commelinales) sheds light on the necessity of its recircumscription and synopsis of Pontederia L. PhytoKeys 108: 25-83. https://doi.org/10.3897/phytokeys.108.27652
40. Figure 8 from: Pellegrini MOO, Horn CN, Almeida RF (2018) Total evidence phylogeny of Pontederiaceae (Commelinales) sheds light on the necessity of its recircumscription and synopsis of Pontederia L. PhytoKeys 108: 25-83. https://doi.org/10.3897/phytokeys.108.27652
41. Figure 29 from: Pellegrini MOO (2018) Wandering throughout South America: Taxonomic revision of Tradescantia subg. Austrotradescantia (D.R.Hunt) M.Pell. (Commelinaceae). PhytoKeys 104: 1-97. https://doi.org/10.3897/phytokeys.104.28484
42. Figure 31 from: Pellegrini MOO (2018) Wandering throughout South America: Taxonomic revision of Tradescantia subg. Austrotradescantia (D.R.Hunt) M.Pell. (Commelinaceae). PhytoKeys 104: 1-97. https://doi.org/10.3897/phytokeys.104.28484
43. Figure 15 from: Pellegrini MOO (2018) Wandering throughout South America: Taxonomic revision of Tradescantia subg. Austrotradescantia (D.R.Hunt) M.Pell. (Commelinaceae). PhytoKeys 104: 1-97. https://doi.org/10.3897/phytokeys.104.28484
44. Figure 5 from: Pellegrini MOO (2018) Wandering throughout South America: Taxonomic revision of Tradescantia subg. Austrotradescantia (D.R.Hunt) M.Pell. (Commelinaceae). PhytoKeys 104: 1-97. https://doi.org/10.3897/phytokeys.104.28484
45. Wandering throughout South America: Taxonomic revision of Tradescantia subg. Austrotradescantia (D.R.Hunt) M.Pell. (Commelinaceae)
46. Figure 9 from: Pellegrini MOO (2018) Wandering throughout South America: Taxonomic revision of Tradescantia subg. Austrotradescantia (D.R.Hunt) M.Pell. (Commelinaceae). PhytoKeys 104: 1-97. https://doi.org/10.3897/phytokeys.104.28484
47. Figure 8 from: Pellegrini MOO (2018) Wandering throughout South America: Taxonomic revision of Tradescantia subg. Austrotradescantia (D.R.Hunt) M.Pell. (Commelinaceae). PhytoKeys 104: 1-97. https://doi.org/10.3897/phytokeys.104.28484
48. Figure 4 from: Pellegrini MOO (2018) Wandering throughout South America: Taxonomic revision of Tradescantia subg. Austrotradescantia (D.R.Hunt) M.Pell. (Commelinaceae). PhytoKeys 104: 1-97. https://doi.org/10.3897/phytokeys.104.28484
49. Figure 7 from: Pellegrini MOO (2018) Wandering throughout South America: Taxonomic revision of Tradescantia subg. Austrotradescantia (D.R.Hunt) M.Pell. (Commelinaceae). PhytoKeys 104: 1-97. https://doi.org/10.3897/phytokeys.104.28484
50. Figure 6 from: Pellegrini MOO (2018) Wandering throughout South America: Taxonomic revision of Tradescantia subg. Austrotradescantia (D.R.Hunt) M.Pell. (Commelinaceae). PhytoKeys 104: 1-97. https://doi.org/10.3897/phytokeys.104.28484
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