1. Consistent proportional macronutrient intake selected by adult domestic cats (Felis catus) despite variations in macronutrient and moisture content of foods offered
- Author
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Simon Reginald Hall, Adrian K. Hewson-Hughes, David Raubenheimer, Victoria L. Hewson-Hughes, Andrew T. Miller, Stephen J. Simpson, and Alison Colyer
- Subjects
Male ,Physiology ,Nutritional geometry ,Biology ,Biochemistry ,Food Preferences ,Endocrinology ,Macronutrient composition ,Animals ,Food science ,Carnivore ,Water content ,Ecology, Evolution, Behavior and Systematics ,Right-angled mixture triangles ,Original Paper ,CATS ,Carnivore nutrition ,Domestic cat ,Water ,Human physiology ,Food Analysis ,Diet ,Macronutrient regulation ,Cats ,Animal Science and Zoology ,Female ,Felis catus ,Energy Intake - Abstract
We investigated the ability of domestic cats to regulate the macronutrient composition of their diet when provided with foods that differed not only in macronutrient content but also in texture and moisture content, as typically found in the main forms of commercially manufactured cat foods. Cats were provided with foods in different combinations (1 wet + 3 dry; 1 dry + 3 wet; 3 wet + 3 dry) in three separate experiments. Within each experiment cats were offered the wet and dry food combinations in two (naive and experienced) diet selection phases where all the foods were offered simultaneously, separated by a phase in which the foods were offered sequentially in 3-day cycles in pairs (1 wet with 1 dry). Using nutritional geometry we demonstrate convergence upon the same dietary macronutrient composition in the naive and experienced self-selection phases of each experiment as well as over the course of the 3-day cycles in the pair-wise choice phase of each experiment. Furthermore, even though the dietary options were very different in each of these experiments the macronutrient composition of the diets achieved across all experiments were remarkably similar. These results indicate that a mammalian obligate carnivore, the domestic cat, is able to regulate food selection and intake to balance macronutrient intake despite differences in moisture content and textural properties of the foods provided.
- Published
- 2012