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10 results for “Nasua”
Fig. 3 in Mansonella sp. and associated Wolbachia endosymbionts in ring-tailed coatis (Nasua nasua) in periurban areas from Midwestern Brazil
Fig. 3. Phylogenetic tree based on Maximum likelihood method from 16S rRNA of Wolbachia sp. detected in blood samples from coatis (Nasua nasua) from Campo Grande city, Mato Grosso do Sul state, Brazil. Rickettsia sp. was used as outgroup. Analyses were performed based on an alignment of 337 bp and K2P + G4 as evolutionary model.
Fig. 2 in Mansonella sp. and associated Wolbachia endosymbionts in ring-tailed coatis (Nasua nasua) in periurban areas from Midwestern Brazil
Fig. 2. Phylogenetic tree based on Maximum likelihood method from filarioids detected in blood samples from coatis (Nasua nasua) from Campo Grande city, Mato Grosso do Sul state, Brazil. A) cox1 gene, Thelazia callipaeda was used as outgroup (alignment of 681 bp and TIM3+G as evolutionary model); accession numbers from the sequences detected at the present study: OQ261670-OQ261693; B) myoHC gene, Filaria latala and Protospirura muricola were used as outgroups (alignment of 480 pb and HKY + G as evolutionary model); C) hsp70 gene, Protospirura muricola was used as outgroup (alignment of 545 pb and TN + G as evolutionary model).
Fig. 1 in Mansonella sp. and associated Wolbachia endosymbionts in ring-tailed coatis (Nasua nasua) in periurban areas from Midwestern Brazil
Fig. 1. Microfilaria of Mansonella sp. from a coati (Nasua nasua) blood smear stained with Diffy Quicky. Body of the microfilariae with compact column of the nuclei purple in color, sparse osmogenes in the region of the inner body with exception of two big round areas without nuclei (arrow head), with anterior end rounded with short head space and cephalic space with scattered fine nuclei (arrow). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Host-parasite relationship in urban environments: A network analysis of hemoparasite infections in Nasua nasua Linnaeus (South American coati)
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Data from: Inter-individual spacing affects the finder's share in ring-tailed coatis (Nasua nasua)
<p>Social foraging models are often used to explain how group size can affect an individual's food intake rate and foraging strategies. The proportion of food eaten before the arrival of conspecifics, the finder's share, is hypothesized to play a major role in shaping group geometry, foraging strategy, and feeding competition. The variables which affect the finder's share in ring-tailed coatis were tested using a series of food trials. The number of grapes in the food trials had a strong negative effect on the finder's share and the probability that the finder was joined. The effect of group size on the finder's share and foraging success was not straightforward, and was mediated by socio-spatial factors. The finder's share increased when the time to arrival of the next individual was longer, the group was more spread out, and the finder was in the back of the group. Similarly, the total amount of food eaten at a trial was higher when more grapes were placed, arrival time was longer, and number of joiners was smaller. Individuals at the front edge of the group found far more food trials, but foraging success was higher at the back of the group where there were fewer conspecifics to join them. This study highlights the importance of social spacing strategies and group geometry on animal foraging tactics and the costs and benefits of sociality.</p>
Data from: Inter-individual spacing affects the finder’s share in ring-tailed coatis (Nasua nasua)
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Subspecies and Distribution. N. n. nasua Linnaeus, 1766 — French Guiana S through NE Brazil to N Bahia. N. n. dorsalis Gray, 1866 — Amazonian Brazil, Peru, and Ecuador. N. n. arcana Vieira, 1945 — Brazil (Mato Grosso), Bolivia (Santa Cruz), Paraguay, and N Argentina. N. n. boliviensis Cabrera, 1956 — Bolivia (Cochabamba, the Yungas). N. n. candace Thomas, 1912 — Colombia. N. n. anerascens Lonnberg, 1921 — N Argentina (Chaco). N. n. manium Thomas, 1912 — Ecuador W of the Andes. N. n. montana Tschudi, 1844 — Peru. N. n. quichua Thomas, 1901 — S Ecuadorian Andes (Azuay). N. n. solitaria Schinz, 1821 — SE Brazil (Minas Gerais, S. Bahia), NE Argentina (Misiones). N. n. spadicea Olfers, 1818 — S Brazil and Uruguay. N. n. vittata Tschudi, 1844 — Venezuela, the Guianas. in Procyonidae
Subspecies and Distribution. N. n. nasua Linnaeus, 1766 — French Guiana S through NE Brazil to N Bahia. N. n. dorsalis Gray, 1866 — Amazonian Brazil, Peru, and Ecuador. N. n. arcana Vieira, 1945 — Brazil (Mato Grosso), Bolivia (Santa Cruz), Paraguay, and N Argentina. N. n. boliviensis Cabrera, 1956 — Bolivia (Cochabamba, the Yungas). N. n. candace Thomas, 1912 — Colombia. N. n. anerascens Lonnberg, 1921 — N Argentina (Chaco). N. n. manium Thomas, 1912 — Ecuador W of the Andes. N. n. montana Tschudi, 1844 — Peru. N. n. quichua Thomas, 1901 — S Ecuadorian Andes (Azuay). N. n. solitaria Schinz, 1821 — SE Brazil (Minas Gerais, S. Bahia), NE Argentina (Misiones). N. n. spadicea Olfers, 1818 — S Brazil and Uruguay. N. n. vittata Tschudi, 1844 — Venezuela, the Guianas.
On following pages: 5. Cacomistle (Bassariscus sumichrasti); 6. South American Coati (Nasua nasua); 7. White-nosed Raccoon (Procyon cancrivorus); 11. Northern Raccoon (Procyon loton; 12. Cozumel Raccoon (Procyon pygmaeus) Coati (Nasua narica); 8. Mountain Coati (Nasuella olivacea); 9. Kinkajou (Potos flavus); 10. Crab-eating. in Procyonidae
On following pages: 5. Cacomistle (Bassariscus sumichrasti); 6. South American Coati (Nasua nasua); 7. White-nosed Raccoon (Procyon cancrivorus); 11. Northern Raccoon (Procyon loton; 12. Cozumel Raccoon (Procyon pygmaeus) Coati (Nasua narica); 8. Mountain Coati (Nasuella olivacea); 9. Kinkajou (Potos flavus); 10. Crab-eating.
Fig. 2 in Parasitological assessment of wild ring-tailed coatis (Nasua nasua) from the Brazilian Atlantic rainforest
Fig. 2. Helminth eggs and protozoa oocysts in wild ring-tailed coatis feces (A–H) and Pseudoparasites (I to K). A. Neoncicola potosi; B. Toxocara alienata; C. Spirometra sp.; D. Baruscapillaria procyonis; E. Atriotaenia sandgroundi; F. Spirurida; G. Strongylid; H. Eimeria nasuae; I. Gametocyte of Monocystissp. with spores; J. Sporocyst of Monocystis sp. after sporulation in potassium dichromate solution 2.5% for 10 days; K. Oxyuridae egg.
Fig. 1 in Parasitological assessment of wild ring-tailed coatis (Nasua nasua) from the Brazilian Atlantic rainforest
Fig. 1. Geographical location of Iguazu National Park, Southern Brazil.
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