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421 results for “Pará”
Figure 3 from: Teodoro LM, Carvalho GML, Campos AM, Cerqueira RFV, Souza-Silva M, Ferreira RL, Barata RA (2021) Phlebotomine sand flies (Diptera, Psychodidae) from iron ore caves in the State of Pará, Brazil. Subterranean Biology 37: 27-42. https://doi.org/10.3897/subtbiol.37.57534
Figure 3 Distribution of species of sand flies collected in caves of Parauapebas (Morro I, Morro II) and Curionópolis (Serra Leste) municipalities, Pará, Brazil.
FIGURE 1 in Description of the male Eufriesea theresiae (Mocsáry, 1908) (Hymenoptera: Apidae: Euglossina), with illustration of the holotype and comments on its geographic distribution, including a new record for the state of Pará, northern Brazil
FIGURE 1. Holotype female Eufriesea theresiae (Mocsáry, 1908), dorsal view.
Figure 1 in Occurrence of Quesada gigas on Schizolobium amazonicum trees in Maranhão and Pará States, Brazil
Figure 1. Nymph (A) and adult (B) of Quesadagigas on a trunk of Schizolobium amazonicum and nymph (C) of this insect feeding on root of this plant.
FIGURE 1 in Diversity of Leptoceroidea (Insecta: Trichoptera) in Pará State, Brazil: A new species of Oecetis McLachlan 1877 and new records
FIGURE 1. The sampled area of this study in the northeastern portion of Pará state.
Figure 6 from: Xu R-F, Karunarathna SC, Phukhamsakda C, Dai D-Q, Elgorban AM, Suwannarach N, Kumla J, Wang X-Y, Tibpromma S (2024) Four new species of Dothideomycetes (Ascomycota) from Pará Rubber (Hevea brasiliensis) in Yunnan Province, China. MycoKeys 103: 71-95. https://doi.org/10.3897/mycokeys.103.117580
Figure 6 Pseudochaetosphaeronema xishuangbannaensis (ZHKU 23–0107, holotype) a–c appearance of ascomata on host substrate d section of an ascoma e peridium f pesudoparaphyses g–j asci m–t ascospores u ascospore stained with Indian ink k, l colonies on PDA (k-front and l-reverse view). Scale bars: 200 µm (d); 100 µm (e); 50 µm (f–j); 10 µm (m–t); 20 µm (u).
Figure 5 from: Xu R-F, Karunarathna SC, Phukhamsakda C, Dai D-Q, Elgorban AM, Suwannarach N, Kumla J, Wang X-Y, Tibpromma S (2024) Four new species of Dothideomycetes (Ascomycota) from Pará Rubber (Hevea brasiliensis) in Yunnan Province, China. MycoKeys 103: 71-95. https://doi.org/10.3897/mycokeys.103.117580
Figure 5 Pseudochaetosphaeronema lincangensis (ZHKU 23–0105, holotype) a, b appearance of ascomata on host substrate c vertical section of an ascoma d section of peridium e pseudoparaphyses f–i asci j a germinated ascospore l–q ascospores k ascospore stained with Indian ink r, s colonies on PDA (r-front and s-reverse views). Scale bars: 100 µm (c); 50 µm (d); 30 µm (e–j); 200 µm (g); 10 µm (k, l–q).
Figure 4 from: Xu R-F, Karunarathna SC, Phukhamsakda C, Dai D-Q, Elgorban AM, Suwannarach N, Kumla J, Wang X-Y, Tibpromma S (2024) Four new species of Dothideomycetes (Ascomycota) from Pará Rubber (Hevea brasiliensis) in Yunnan Province, China. MycoKeys 103: 71-95. https://doi.org/10.3897/mycokeys.103.117580
Figure 4 Nigrograna lincangensis (ZHKU 23–0104, holotype) a–c appearance of ascomata on the host surface d vertical section of an ascoma e vertical section of ostiole f hamathecium and asci g section of peridium h–k asci l ascospores m a germinated ascospore n, o colonies on PDA (n-front and o-reverse views). Scale bars: 100 µm (d); 50 µm (e); 30 µm (f); 200 µm (g); 10 µm (h–k); 5 µm (l); 20 µm (m).
Figure 3 from: Xu R-F, Karunarathna SC, Phukhamsakda C, Dai D-Q, Elgorban AM, Suwannarach N, Kumla J, Wang X-Y, Tibpromma S (2024) Four new species of Dothideomycetes (Ascomycota) from Pará Rubber (Hevea brasiliensis) in Yunnan Province, China. MycoKeys 103: 71-95. https://doi.org/10.3897/mycokeys.103.117580
Figure 3 Phylogram generated from Maximum Likelihood analysis based on combined LSU, ITS, SSU, tef1-α and rpb2 sequence data of 119 taxa, which comprised 4399 base pairs (LSU = 908 bp, ITS = 512 bp, SSU = 1000 bp, tef1-α = 925 bp, rpb2 = 1054 bp). The best scoring RAxML tree with a final likelihood value of -38918.764563 is presented. The matrix had 2023 distinct alignment patterns, with 39.00% of undetermined characters or gaps. Estimated base frequencies were as follows: A = 0.245191, C = 0.247520, G = 0.268228, T = 0.239061; substitution rates: AC = 1.533778, AG = 3.877174, AT = 1.672983, CG = 1.254032, CT = 8.838860, GT = 1.000000; gamma distribution shape parameter α = 0.208600. Bootstrap support values for ML equal to or greater than 60% and Bayesian Inference analysis values equal to or greater than 0.90 PP are labelled at each node. The tree is rooted with Seriascoma didymospora (MFLUCC 11–0179) and S. didymospora (MFLUCC 11–0194). Related sequences were obtained from De Silva et al. (2022), Lu et al. (2022) and Li et al. (2023). The new isolates are indicated in red and the ex-type strains are in bold.
Figure 2 from: Xu R-F, Karunarathna SC, Phukhamsakda C, Dai D-Q, Elgorban AM, Suwannarach N, Kumla J, Wang X-Y, Tibpromma S (2024) Four new species of Dothideomycetes (Ascomycota) from Pará Rubber (Hevea brasiliensis) in Yunnan Province, China. MycoKeys 103: 71-95. https://doi.org/10.3897/mycokeys.103.117580
Figure 2 Melomastia puerensis (ZHKU 23–0106, holotype) a–c appearance of ascomata on host surface d vertical section of an ascoma e vertical section of ostiole f section of peridium g hamathecium h–l asci m–q ascospores r asci stained in Lugol's iodine s germinated ascospore t, u colonies on PDA (t-front and u-reverse views). Scale bars: 100 µm (d–f); 50 µm (g–l); 10 µm (m–q); 30 µm (s).
Figure 1 from: Xu R-F, Karunarathna SC, Phukhamsakda C, Dai D-Q, Elgorban AM, Suwannarach N, Kumla J, Wang X-Y, Tibpromma S (2024) Four new species of Dothideomycetes (Ascomycota) from Pará Rubber (Hevea brasiliensis) in Yunnan Province, China. MycoKeys 103: 71-95. https://doi.org/10.3897/mycokeys.103.117580
Figure 1 Phylogram generated from Maximum Likelihood analysis, based on combined LSU, SSU and tef1-α sequence data of 41 taxa, which comprised 2836 base pairs (LSU = 902 bp, SSU = 1031 bp, tef1-α = 903 bp). The best scoring RAxML tree with a final likelihood value of -14798.632437 is presented. The matrix had 1013 distinct alignment patterns, with 24.90% of undetermined characters or gaps. Estimated base frequencies were as follows: A = 0.241740, C = 0.258134, G = 0.292403, T = 0.207722; substitution rates: AC = 0.834723, AG = 2.021967, AT = 1.126143, CG = 1.032150, CT = 7.231944, GT = 1.000000; gamma distribution shape parameter α = 0.320795. Bootstrap support values for ML equal to or greater than 60% and Bayesian Inference analysis values equal to or greater than 0.90 PP are labelled at each node. The tree is rooted with Anisomeridium phaeospermum (MPN539) and A. ubianum (MPN94). Related sequences were collected following Li et al. (2022), Kularathnage et al. (2023) and Dong et al. (2023). The new isolates are indicated in red and the ex-type strains are in bold. Group A indicates the taxa used to compare the morphology with our new species (Melomastia puerensis).
TABLE 1 in Croton carajasensis, a new species from Serra dos Carajás, Pará, Brazilian Amazon
<p><b>TABLE 1.</b> Comparative morphology of <i>Croton carajasensis</i> and related species.</p><table><tbody><tr><th>Character</th><th><i>C. abaitensis</i></th><th><i>C. adamantinus</i></th><th><i>C. carajasensis</i></th><th><i>C. harleyi</i></th><th><i>C. ramosissimus</i></th></tr></tbody><tbody><tr><th>Branching pattern</th><td>Dichotomies and trichotomies</td><td>Dichotomies and trichotomies</td><td>Alternate</td><td>Alternate</td><td>Alternate</td></tr><tr><th>Length of pair of basal foliar veins</th><td>Exceeding half the length of the blade</td><td>Up to half the length of the blade</td><td>Up to half the length of the blade</td><td>Up to 1/3 the length of the blade</td><td>Up to half the length of the blade</td></tr><tr><th>Basilaminar nectaries</th><td>Stipitate-patelliform</td><td>Stipitate-patelliform</td><td>Cupuliform</td><td>Cylindric</td><td>Patelliform or absent</td></tr><tr><th>Leaf margins</th><td>Serrate or crenate</td><td>Doubly serrate, serrulate or erose</td><td>Serrate or crenate</td><td>Serrulate</td><td>Serrate or doubly serrate</td></tr><tr><th>Length of staminate sepals</th><td>1.5−2.2 mm</td><td>1.9–2.1 mm</td><td>2.5–3 mm</td><td>2–3 mm</td><td>1.5–2 mm</td></tr><tr><th>Length of staminate petals</th><td>2.1−2.8 mm</td><td>1.8–2.2 mm</td><td>3–4.5 mm</td><td>3–4 mm</td><td>1.9–2.5 mm</td></tr><tr><th>Length of stamens</th><td>3.5−4 mm</td><td>2–3 mm</td><td>4.5–6 mm</td><td>2.5–5 mm</td><td>3–3.7 mm</td></tr><tr><th>Pistillate sepals symmetry</th><td>Unequal</td><td>Equal</td><td>Unequal</td><td>Equal</td><td>Equal</td></tr><tr><th>Pistillate sepals shape</th><td>Obovate, ovate or suborbicular</td><td>Ovate to elliptic</td><td>Obovate, oblong or elliptic</td><td>Ovate to elliptic</td><td>Ovate or ovallanceolate</td></tr><tr><th>Pistillate sepals margin</th><td>Plane</td><td>Plane</td><td>Plane</td><td>Revolute</td><td>Plane</td></tr><tr><th>Capsule shape</th><td>Subglobose</td><td>Subglobose</td><td>Subglobose</td><td>Subglobose</td><td>Oblongoid</td></tr><tr><th>Capsule diameter</th><td>4.5–4.8 mm</td><td>6–8 mm</td><td>5.5–7.5 mm</td><td>5–6 mm</td><td>4.3–5.2 mm</td></tr><tr><th>Distribution</th><td>Cerrado domain (DF, GO, MG, MS, MT, TO)</td><td>Caatinga domain (BA, CE, MG, PB, PE, PI, RN, SE)</td><td>Amazonian domain (PA)</td><td>Caatinga domain (BA, PE, PI, RN)</td><td>Cerrado domain (DF, GO, MG)</td></tr></tbody></table>
FIGURE 3 in Vochysia sobralii (Vochysiaceae), a new species from Serra do Cachimbo, Pará, Brazil, and updated keys for Vochysia sect. Pachyantha
FIGURE 3. Geographic distribution of Vochysia sobralii (red star).
FIGURE 4 in New species of Batrochoglanis Gill (Siluriformes: Pseudopimelodidae) from the Capim River basin, State of Pará, Brazil
FIGURE 4. Juvenile of Batrochoglanis labrosus, paratype, MZUSP 22269, 41.2 mm SL, Pará, Brazil.
FIGURE 3 in New species of Batrochoglanis Gill (Siluriformes: Pseudopimelodidae) from the Capim River basin, State of Pará, Brazil
FIGURE 3. Coloration of Batrochoglanis labrosus largest specimen (MZUSP 23864, 110.2 mm SL).
Figura 1 in Cissampelos (Menispermaceae) in the state of Pará, Brazil
Figura 1. Species of Cissampelos in Pará state, Brazil. A-C. Cissampelos andromorpha. A. branch with pistillate flowers and drupes; B. staminate flower: C. pistillate flower. D-F. Cissampelos fasciculata; D. habit; E. staminate flower; F. pistillate flower. G-I. Cissampelos glaberrima; G. branch with drupe; H. staminate flower; I. pistillate flower. J-L. Cissampelos laxiflora; J. branch detail; K. staminate flower; L. pistillate flower.
Figs. 44-51 in O gênero Pinnularia Ehrenberg (Bacillariophyceae) em um lago de inundação do rio Tapajós (Lago Verde, Santarém, Pará, Brasil)
Figs. 44-51. Imagens em MO. 44, 45. Pinnularia stoermeri; 46. P. subboyeri; 47. P. subelongatoides; 48. P. subelongatoides; 49. P. superpaulensis; 50, 51. P. tumescens. Barra = 10 μm.
Figura 2 in Cissampelos (Menispermaceae) in the state of Pará, Brazil
Figura 2. Species of Cissampelos in Pará state, Brazil. A-C. Cissampelos ovalifolia: A. branch with staminate flowers; B. staminate flower; C. pistillate flower. D-F. Cissampelos parreira: D. branch with pistillate inflorescences; E. staminate flower; F. pistillate flower. G-I. Cissampelos tropaeolifolia: G. branch with pistillate inflorescences; H. staminate flower; I. pistillate flower.
Figs. 11-15 in O gênero Pinnularia Ehrenberg (Bacillariophyceae) em um lago de inundação do rio Tapajós (Lago Verde, Santarém, Pará, Brasil)
Figs. 11-15. Imagens em MO. 11. Pinnularia discrepantia; 12, 13. P. divergens var. malayensis; 14, 15. P. divergens var. media. Barra = 10 μm.
Fig. 1 in O gênero Pinnularia Ehrenberg (Bacillariophyceae) em um lago de inundação do rio Tapajós (Lago Verde, Santarém, Pará, Brasil)
Fig. 1. Localização geográfica do Lago Verde, indicando as quatro estações amostrais, no município de Santarém no estado do Pará. IM = Igarapé do Macaco, IMe = Igarapé do Meiritiapina, CL= região Central do Lago, IC = Igarapé do Camarão.
Figs. 57-67 in O gênero Pinnularia Ehrenberg (Bacillariophyceae) em um lago de inundação do rio Tapajós (Lago Verde, Santarém, Pará, Brasil)
Figs. 57-67. Imagens em MEV. Pinnularia do Lago Verde. 57 - 60. Pinnularia amoena. 57. vista externa das extremidades proximais da rafe na área central; 58, 59. vista externa da extremidade distal da rafe; 60. vista geral externa da valva; 61 - 63. P. discrepantia.61. vista geral interna da valva; 62. vista interna da rafe na área central; 63. vista interna da extremidade distal da rafe; 64 - 67. P. divergens var. media.64. vista externa da extremidade distal da rafe; 65. vista geral interna da valva; 66. vista externa das extremidades proximais da rafe na área central; 67. vista externa da extremidade distal da rafe. Barras: Figs. 57, 58, 62, 63 = 5μm; Figs. 59, 64, 66, 67 = 2 μm; Fig. 60 = 20 μm; Figs. 61, 65 = 10 μm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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