Data on captive diets for black-and-white ruffed lemurs (Varecia variegata) are limited. Information on food items used, inclusion amounts, and the chemical composition of diets is needed to improve the management of nutrition-related health problems seen in captive lemurs (e.g., obesity) that have not been reported in their wild counterparts. To determine the ingredient and nutrient composition of diets for captive V. variegata, U.S. zoological institutions were surveyed. Chemical composition of reported diets was estimated using Nutritionist Pro™ (Axxya Systems, Stafford, Texas 77477, USA), and these values were compared numerically to wild lemur diets from the literature. Institutions included from six to greater than 30 different ingredients in their diets, including fruits (0.0-84.1%), vegetables (7.5-70.0%), greens (1.0-28.5%), and commercially available feeds (1.5-68.6%). Nutrient concentrations of captive diets ranged as follows: dry matter (DM), 14.5-67.6%; organic matter, 93.1-97.2% DM basis (DMB); crude protein, 7.9-23.9% DMB; fat, 2.0-6.5% DMB; total dietary fiber, 10.1-28.1% DMB; and N-free extract, 38.9-74.4% DMB. Captive diets had lower fat and total dietary fiber and higher protein and N-free extract compared to wild fruit items from Madagascar. Reducing the amount of fruit in captive diets for V. variegata would be expected to decrease digestible carbohydrate content and increase fiber content of these diets, which has implications for the prevalence of obesity in captive animals.
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http://dx.doi.org/10.1638/2015-0080.1 | DOI Listing |
FEMS Microbiol Ecol
January 2025
School of Science, Engineering and Environment, Salford University, Manchester, UK.
Diurnal rhythms of the gut microbiota are emerging as an important yet often overlooked facet of microbial ecology. Feeding is thought to stimulate gut microbial rhythmicity, but this has not been explicitly tested. Moreover, the role of the gut environment is entirely unexplored, with rhythmic changes to gut pH rather than feeding per se possibly affecting gut microbial fluctuations.
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Hebei Key Laboratory of Wetland Ecology and Conservation Hengshui China.
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Department of Morphological Sciences, Institute of Veterinary Medicine, Warsaw University of Life Sciences, Warsaw, Poland.
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Facultad de Ciencias Agropecuarias, Escuela Profesional de Ingeniería Pesquera, Universidad Nacional Jorge Basadre Grohmann, Tacna, Tacna, Peru.
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December 2024
Department of Veterinary Medicine and Animal Sciences, Università Degli Studi di Milano, Via Dell' Università 6, 26900 Lodi, Italy.
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