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10 results for “Phyllomys”
Fig. 5 in Peculiarities of Trypanosoma rangeli KP1(-) Strains Isolated from the Wild Rodent Phyllomys dasythrix (Santa Catarina, Brazil): Comparisons with T. rangeli KP1(+) strains and Trypanosoma lewisi (Kinetoplastea, Trypanosomatidae)
Fig. 5. kDNA minicircle amplicons presented by all KP1(+) and KP1(–) Trypanosoma rangeli strains examined in this study, and obtained by polymerase chain reaction using the primers 121/122. (M) molecular marker (100-bp DNA ladder).
Fig. 4 in Peculiarities of Trypanosoma rangeli KP1(-) Strains Isolated from the Wild Rodent Phyllomys dasythrix (Santa Catarina, Brazil): Comparisons with T. rangeli KP1(+) strains and Trypanosoma lewisi (Kinetoplastea, Trypanosomatidae)
Fig. 4. Isoenzyme profiles at IDH locus presented by KP1(+) and KP1(–) Trypanosoma rangeli strains and T. lewisi.
Fig. 3 in Peculiarities of Trypanosoma rangeli KP1(-) Strains Isolated from the Wild Rodent Phyllomys dasythrix (Santa Catarina, Brazil): Comparisons with T. rangeli KP1(+) strains and Trypanosoma lewisi (Kinetoplastea, Trypanosomatidae)
Fig. 3. Diagrammatic representation of the electrophoretic patterns of malate dehydrogenase (MDH), phosphoglucomutase (PGM), glucose phosphate isomerase (GPI) and malic enzyme (ME) displayed by KP1(–) and KP1(+) Trypanosoma rangeli strains, and T. lewisi.
Fig. 1 in Peculiarities of Trypanosoma rangeli KP1(-) Strains Isolated from the Wild Rodent Phyllomys dasythrix (Santa Catarina, Brazil): Comparisons with T. rangeli KP1(+) strains and Trypanosoma lewisi (Kinetoplastea, Trypanosomatidae)
Fig. 1. Camera lucida drawings of representative bloodstream trypomastigotes of Trypanosoma rangeli KP1(–) and KP1(+) strains from experimentally infected mice by metacyclic trypomastigotes grown in DMEM medium. The position of the nucleus in each trypomastigote is indicated by arrowheads. Parasites were from Giemsa-stained smears of each strain, as seen under optical microscopy (×1,000). In a trypomastigote of the strain SC-61 are indicated the reference points for taking measurements: anterior end (A), posterior end (P), nucleus (N) and free flagellum (F).
Fig. 2 in Peculiarities of Trypanosoma rangeli KP1(-) Strains Isolated from the Wild Rodent Phyllomys dasythrix (Santa Catarina, Brazil): Comparisons with T. rangeli KP1(+) strains and Trypanosoma lewisi (Kinetoplastea, Trypanosomatidae)
Fig. 2. Comparative growth in axenic cultures of Trypanosoma rangeli strains [KP1(–) and KP1(+)] and T. lewisi. Data (106 cells/μL) are the averages and the maximum growth from the values taken at the 4th, 7th, 10th, 13th, 17th and 20th days of cultivation in liver infusion-tryptose broth supplemented with 20% fetal calf serum (LIT-20) at 27.3 ± 0.4°C.
On following pages: 90. Unicolored Tree-rat (Phyllomys unicolon; 91. Patton's Atlantic Tree-rat (Phyllomys patton); 92. Serra da Mantiqueira Atlantic Tree-rat (Phyllomys mantiqueirensis); 93. Lund's Atlantic Tree-rat (Phyllomys lundi): 94. Kerr's Atlantic Tree-rat (Phyllomys kerri); 95. Long-furred Atlantic Tree-rat (Phyllomys medius); 96. Giant Atlantic Tree-rat (Phyllomys thomasi); 97. Drab Atlantic Tree-rat (Phyllomys dasythrix); 98. Southern Atlantic Treerat (Phyllomys sulinus); 99. Black-spined Atlantic Tree-rat (Phyllomys nigrispinus). in Echimyidae
On following pages: 90. Unicolored Tree-rat (Phyllomys unicolon; 91. Patton's Atlantic Tree-rat (Phyllomys patton); 92. Serra da Mantiqueira Atlantic Tree-rat (Phyllomys mantiqueirensis); 93. Lund's Atlantic Tree-rat (Phyllomys lundi): 94. Kerr's Atlantic Tree-rat (Phyllomys kerri); 95. Long-furred Atlantic Tree-rat (Phyllomys medius); 96. Giant Atlantic Tree-rat (Phyllomys thomasi); 97. Drab Atlantic Tree-rat (Phyllomys dasythrix); 98. Southern Atlantic Treerat (Phyllomys sulinus); 99. Black-spined Atlantic Tree-rat (Phyllomys nigrispinus).
FIGURE 2 in The rediscovery and conservation status of the Bahian giant tree rat Phyllomys unicolor (Mammalia: Rodentia: Echimyidae) in the Atlantic forest of Brazil
FIGURE 2. Phylogenetic relationships among species of Phyllomys inferred using complete sequences of the mitochondial cytochrome b gene. The topology depicts the strict consensus of the two most parsimonious trees. Numbers above branches correspond to parsimony bootstrap support and decay indices, and numbers below are likelihood bootstrap values.
FIGURE 1 in The rediscovery and conservation status of the Bahian giant tree rat Phyllomys unicolor (Mammalia: Rodentia: Echimyidae) in the Atlantic forest of Brazil
FIGURE 1. Skull of the young specimen of Phyllomys unicolor recorded in NovaViçosa, Bahia, Brazil. Scale bar = 5 mm.
Figure 1 in New record of the rare Atlantic Forest rodent Phyllomys lundi (Mammalia: Rodentia)
Figure 1. Collecting localities of P. lundi including the type locality (circle) and new locality of occurrence (square). Gray area corresponds to Atlantic Forest.
Figure 2 in New record of the rare Atlantic Forest rodent Phyllomys lundi (Mammalia: Rodentia)
Figure 2. Dorsal, ventral and lateral views of skull and skin of P. lundi female MZNB 271. Scale bars: 1 cm.
ScienceDex guides
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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