Abstract
Diet is a critical factor of species’ ecology and depends on both individuals’ nutritional needs and availability of their food resources. As such, feeding strategies may vary with age, sex or physiological condition of the individuals but also depend on environmental factors and, in particular, seasonality. In cryptic species and those that are difficult to observe in their natural habitat, diet reconstruction requires the use of proxies with the ability to detect dietary variations over the short term. Analyses of dental microwear patterns along with carbon and nitrogen stable isotopes constitute a relevant approach to discriminate between diets of different species or populations. In the framework of this thesis, we assessed the predictive power of these two proxies on seasonal and inter-individual variations of diet in a natural population of mandrills (Mandrillus sphinx) for which behavioural data was available. According to the feeding behaviours observed, dental microwear patterns and isotopic signatures vary depending on the season as well as individual’s age and sex. Taken together our results indicate that the large diversity of rarely consumed food items cannot be detected by the proxies analysed, which are however, relevant to identify significant changes in the consumption of major foods such as fruits and leaves. Finally, isotopic signatures vary across females’ reproductive statuses and dominance ranks, indicating that the use of those proxies may allow the highlighting of some aspects of individuals’ physiology not detected by behavioural observations. The results presented in this thesis provide a baseline data essential for dietary reconstruction of extinct species sharing similar traits with mandrills, such as generalist primates from tropical forests.