Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 2 de 2
Filter
Add filters








Year range
1.
Rev. biol. trop ; 67(3)jun. 2019.
Article in Spanish | LILACS-Express | LILACS | ID: biblio-1507528

ABSTRACT

Varias de las especies silvestres de la familia Felidae se encuentran en riesgo y el tamaño poblacional es uno de los parámetros ecológicos más importantes para determinar acciones efectivas de conservación. El tamaño poblacional está determinado por diferentes factores, tanto bióticos como abióticos, que en conjunto satisfacen los requerimientos de los individuos para sobrevivir y reproducirse, permitiendo la permanencia de las especies a través del tiempo. Debido a que el tamaño poblacional de una especie no es homogéneo a lo largo de su distribución, se han formulado varias hipótesis para explicar sus variaciones. Una propuesta considera que las poblaciones más grandes se ubican en las regiones con mayor idoneidad ambiental y el número de individuos decrece hacia las menos favorables. Otra hipótesis considera que el tamaño poblacional está relacionado con la estructura interna del nicho ecológico, en donde las poblaciones más grandes están ubicadas en el centroide del nicho y el tamaño declina conforme aumenta la distancia a éste. El objetivo de este estudio fue evaluar la relación de la abundancia poblacional con la idoneidad ambiental y el nicho ecológico en cuatro especies de felinos silvestres de América. La densidad de Lynx rufus (lince) se correlacionó positivamente con el índice de idoneidad ambiental, la mayor densidad de Panthera onca (jaguar) se ubicó en regiones cercanas al centroide del nicho, mientras que las densidades poblacionales de Leopardus pardalis (ocelote) y de Puma concolor (puma) no se ajustaron a las predicciones de ninguna de las dos hipótesis. La relación entre densidad de felinos con las características ambientales puede ser especie-específica y no seguir un patrón generalizado.


Several wild species of the family Felidae are at risk, and population size is one of the most important ecological parameters to determine conservation actions. Population size is influenced by different biotic and abiotic factors that satisfy the requirements of the species to survive and reproduce, allowing the permanence of the species through time. Because population size is not homogeneous throughout the distribution, there are several hypotheses to explain their variations. One proposal considers that more abundant populations are located in regions with environmentally suitability, and population size decreases towards the less favorable ones. Another hypothesis considers that the population size is related to the internal structure of the ecological niche, where the largest populations are located in the centroid of the niche, and the size declines as the distance to this centroid increase. The objective of this study was to evaluate the relationship between population abundance, environmental suitability and ecological niche in four wild felids species of America. The density of Lynx rufus (bobcat) was correlated positively with the environmental suitability index, the highest density of Panthera onca (jaguar) was located in regions near the centroid of the niche, while the population densities of Leopardus pardalis (ocelot) and Puma concolor (cougar) did not conform to the predictions of either of the two hypotheses. The relationship between feline density and environmental characteristics was species-specific, with no general pattern.

2.
Mem. Inst. Oswaldo Cruz ; 113(1): 30-37, Jan. 2018. tab, graf
Article in English | LILACS | ID: biblio-894886

ABSTRACT

BACKGROUND The northern limits of Trypanosoma cruzi across the territory of the United States remain unknown. The known vectors Triatoma sanguisuga and T. lecticularia find their northernmost limits in Illinois; yet, earlier screenings of those insects did not reveal the presence of the pathogen, which has not been reported in vectors or reservoir hosts in this state. OBJECTIVES Five species of medium-sized mammals were screened for the presence of T. cruzi. METHODS Genomic DNA was isolated from heart, spleen and skeletal muscle of bobcats (Lynx rufus, n = 60), raccoons (Procyon lotor, n = 37), nine-banded armadillos (Dasypus novemcinctus, n = 5), Virginia opossums (Didelphis virginiana, n = 3), and a red fox (Vulpes vulpes). Infections were detected targeting DNA from the kinetoplast DNA minicircle (kDNA) and satellite DNA (satDNA). The discrete typing unit (DTU) was determined by amplifying two gene regions: the Spliced Leader Intergenic Region (SL), via a multiplex polymerase chain reaction, and the 24Sα ribosomal DNA via a heminested reaction. Resulting sequences were used to calculate their genetic distance against reference DTUs. FINDINGS 18.9% of raccoons were positive for strain TcIV; the rest of mammals tested negative. MAIN CONCLUSIONS These results confirm for the first time the presence of T. cruzi in wildlife from Illinois, suggesting that a sylvatic life cycle is likely to occur in the region. The analyses of sequences of SL suggest that amplicons resulting from a commonly used multiplex reaction may yield non-homologous fragments.


Subject(s)
Animals , Trypanosoma cruzi/genetics , Chagas Disease/diagnosis , Chagas Disease/veterinary , Armadillos/parasitology , Lynx , Foxes
SELECTION OF CITATIONS
SEARCH DETAIL