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Titlebook: Capybara; Biology, Use and Con José Roberto Moreira,Katia Maria P.M.B. Ferraz,Dav Book 2013 Springer Science+Business Media New York 2013 F

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Ag-Au-Te (Silver - Gold - Tellurium),e to seven young, with a mean of four (Ojasti 1973), and this while subject to seasonal variations in food availability and quality (Moreira et al. 2012). Thus it might be expected that animals reared in captivity, with a constant supply of high-quality food, would produce larger litters within lowe
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Paleontology, Evolution and Systematics of Capybaray have given rise to several extraordinary rodents including the pacas (.spp.), cavies (.spp.), vizcachas (.spp.), agouties (.spp.), as well as two giants: ., from the late Miocene (6 Ma; mega annum = million years) which probably weighed more than 400 kg (Sánchez Villagra et al. 2003), and .probabl
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Phylogenetics of Caviomorph Rodents and Genetic Perspectives on the Evolution of Sociality and Matinn and speciation (Simpson 1980; Marshall 1988). Mammalian biodiversity in South America can be partitioned into three major phases, beginning in the Paleocene (65.5–55.8 million years ago – Ma) with xenarthrans, notoungulates, marsupials, and ending with the “Great American Interchange” that occurre
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Foraging Strategies and Feeding Habits of Capybarasybara’s digestive system (Herrera 2012) allow the species to meet its energy requirements from a diet with a high fiber and low nutritional content and silica deposits. Capybara molars, for example, are structured to reduce particle size to 0.001–0.3 mm, a chewing effectiveness comparable to that ac
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Capybara Digestive Adaptations herbivores (Parra 1978). However, such highly fibrous diet components are extremely difficult to digest and, therefore, herbivores possess specific adaptations for the digestion of these materials. The best-known, and undoubtedly the most common, adaptation to a high-fiber diet among mammals is fer
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