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421.
Evolutionary theory predicts that in metapopulations subject to rapid extinction–recolonization dynamics, natural selection should favour evolution of traits that enhance dispersal and recolonization ability. Metapopulations of field voles (Microtus agrestis) on islands in the Stockholm archipelago, Sweden, are characterized by frequent local extinction and recolonization of subpopulations. Here, we show that voles on the islands were larger and had longer feet than expected for their body size, compared with voles from the mainland; that body size and size-specific foot length increased with increasing geographical isolation and distance from mainland; and that the differences in body size and size-specific foot length were genetically based. These findings provide rare evidence for relatively recent (less than 1000 years) and rapid (corresponding to 100–250 darwins) evolution of traits facilitating dispersal and recolonization in island metapopulations.  相似文献   
422.
Spatial and genetic relationships among females in a peak population ofMicrotus montebelli were studied by live-trapping and DNA fingerprinting. In the early period of the spring breeding season, a close genetic relationship was not observed between neighboring overwintered females, while in the late period, a proximity among highly related females and a dispersed distribution among intermediately related females was observed. These associations among relatives did not last very long, however, as female pairs who remained in the neighborhood for more than 150 days, covering two breeding seasons were not relatives. The possibility of cooperation among relatives in this species may thus be low, except among philopatric females in the late period of a single breeding season.  相似文献   
423.
In order to determine the phenotypic associations of four morphologically similar species of Microtus occurring in Turkey, we applied landmark-based shape analysis. The skulls of Microtus anatolicus, M. dogramacii, M. guentheri and M. levis (= M. rossiaemeridionalis) were found to differ significantly in terms of both size and shape. M. guentheri had the biggest skull, while M. levis had the smallest. Sexual dimorphism was found in the shape of the skull in M. dogramacii and M. levis. The tympanic bulla area is enlarged in M. anatolicus compared to the other species. Mahalanobis distances (the distance between a point and the group mean, taking into account the within-group covariance-variance matrix) confirm the distinction of the arvalis group (M. levis) and socialis group (Microtus anatolicus, M. dogramacii, M. guentheri).  相似文献   
424.
A seasonal rodent‐borne disease surveillance program was established at Dagmar North Training Area located near the demilitarized zone, Republic of Korea, from 2001 through 2005. Selected habitats surveyed included earthen banks separating rice paddies, fighting positions along a 5 m rock‐faced earthen berm, and extensive tall grasses with various degrees of herbaceous and scrub vegetation associated with dirt roads, rice paddies, ditches, ponds, or the Imjin River. Of the nine species of small mammals captured, the striped field mouse (Apodemus agrarius), the primary reservoir for Hantaan virus, was the most frequently collected, representing 92.5% of the 1,848 small mammals captured. Males were captured similarly to females during the spring and summer seasons but were captured less frequently during the fall and winter seasons. Gravid rates were highest in the fall (25.5–57.3%) with the lowest rates during the summer (0.0–2.2%). Capture rates were the lowest along earthen banks separating rice paddies (5.5%) and highest in unmanaged tall grasses and crawling vegetation (15.3–43.5%). An increased knowledge of ecological factors that impact the abundance and distribution of small mammals and the associated ectoparasites and pathogens they harbor is critical for developing accurate disease risk assessments and mitigation strategies for preventing vector‐ and rodent‐borne diseases among soldiers training in field environments.  相似文献   
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Mammals detoxicate many phenolic compounds by conjugation with glucuronic acid, and this increases urinary excretion of components of the glucuronic acid pathway. We evaluated a measure of total uronic acid excretion by prairie voles as an index of detoxication of phenolic compounds. Various levels of quercetin and tannic acid were fed at two levels of protein to weanling prairie voles. Uronic acid excretion increased greatly with increased concentrations of dietary phenolics, but was not a simple linear function of phenolic concentration. Voles fed low protein diets excreted more uronic acids than voles fed high protein diets, apparently because of more phenolic-protein complexing in the latter case. Measurement of uronic acid output appears to provide a simple, non-invasive index of detoxication loads in these mammalian herbivores.  相似文献   
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