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Winans, J. C.

Publications and source records attributed to Winans, J. C..

2 recordsLinked to original sources

Demographic, behavioral, and ecological data from a long-term field study of wild baboons in Amboseli, Kenya

Long-term data sets on individually recognized animals and their environments are critical to understanding animal behavior, evolution, and ecology. However, they are resource- and time-intensive and seldom made publicly available. The Amboseli Baboon Research Project (ABRP) is one of the longest-running studies of a wild mammal population in the world and has collected extensive data on the baboon population of the Amboseli ecosystem in Kenya since 1971. Here, we describe four ABRP data sets newly available to the evolutionary biology, behavioral ecology, and primatology communities: (1) the sizes and demographic compositions of 21 social groups from 1971-2023; (2) the activity budgets of adult females and immatures from 1984-2023; (3) behavioral data on diet for adult females and immatures from 1984-2023; and (4) weather data, including precipitation from 1976-2023 and temperature from 1976-2022. Data are aggregated annually and monthly to enable cross-data set analyses. These data offer a rare longitudinal perspective on behavioral and ecological change in a wild mammal population.

animal behavior and cognition↗

High early lactational synchrony within baboon groups predicts increased infant mortality

Female-female competition may be particularly acute when many females in the same social group have dependent young at the same time, with potential negative consequences for offspring survival. Here, we used more than four decades of data on wild baboons (Papio sp.) in Amboseli, Kenya, to examine the effects of early lactational synchrony (the proportion of females in a group with an infant <90 days old) on female-female agonistic interactions and infant survival. Because early lactation is energetically demanding for mothers and high-risk for infants, we expected early lactational synchrony to intensify both female-female aggression and maternal association with males, who can buffer infants from conspecific harassment. In support of these predictions, when early lactational synchrony was high, new mothers initiated more agonistic contests. Further, high-ranking females increased their time associating with adult males, which may limit the ability of low-ranking females to receive male protective services and may have downstream consequences for female foraging efficiency. Finally, high early lactational synchrony strongly predicted infant mortality. This association may result from both aggression among adult females and infanticidal behavior by peripubertal females. Our findings provide evidence that synchronous reproduction alters competitive regimes and compromises reproductive outcomes even in nonseasonal breeders.

animal behavior and cognition↗