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1.
Am J Primatol ; : e23549, 2023 Sep 10.
Artigo em Inglês | MEDLINE | ID: mdl-37690098

RESUMO

Understanding diet selectivity is a longstanding goal in primate ecology. Deciphering when and why primates consume different resources can provide insights into their nutritional ecology as well as adaptations to food scarcity. Plant pith, the spongy interior of plant stems, is occasionally eaten by primates, but the context is poorly understood. We examine the ecological, mechanical, chemical, and nutritional basis of plant pith selection by a wild, frugivorous-omnivorous primate (Cebus imitator). We test the hypothesis that pith is a fallback food, that is, consumed when fruit is less abundant, and test for differences between plant species from which pith is eaten versus avoided. We collected 3.5 years of capuchin pith consumption data to document dietary species and analyzed "pith patch visits" in relation to fruit availability, visits to fruit patches, and climatic seasonality. We analyzed dietary and non-dietary species for relative pith quantity, mechanical hardness, odor composition, and macronutrient concentrations. Capuchins ate pith from 11 of  ~300 plant species common in the dry forest, most commonly Bursera simaruba. We find that pith consumption is not directly related to fruit availability or fruit foraging but occurs most frequently (84% of patch visits) during the months of seasonal transition. Relative to common non-dietary species, dietary pith species have relatively higher pith quantity, have softer outer branches and pith, and contain more terpenoids, a class of bioactive compounds notable for their widespread medicinal properties. Our results suggest that greater pith quantity, lower hardness, and a more complex, terpenoid-rich odor profile contribute to species selectivity; further, as pith is likely to be consistently available throughout the year, the seasonality of pith foraging may point to zoopharmacognosy, as seasonal transitions typically introduce new parasites or pathogens. Our study furthers our understanding of how climatic seasonality impacts primate behavior and sheds new light on food choice by an omnivorous primate.

2.
Am J Phys Anthropol ; 176(3): 349-360, 2021 11.
Artigo em Inglês | MEDLINE | ID: mdl-34196391

RESUMO

OBJECTIVES: Infanticide in white-faced capuchins (Cebus capucinus imitator) typically occurs in association with alpha male replacements (AMRs). Although infanticide is likely adaptive for males, it imposes costs on females that are difficult to quantify without long-term demographic data. Here we investigate effects of AMRs and infanticide on female reproductive success and how these costs affect capuchin groups. We investigate (1) effects of AMR frequency on the production of surviving infants; (2) energetic and (3) temporal "opportunity costs" of infant loss; and (4) how AMR frequency impacts capuchin group sizes. MATERIALS AND METHODS: We censused six groups (7-33 years/group, 74 adult females). We modeled surviving infant production in relation to AMR. We estimated a female's energy requirements for lost infants and the temporal cost relative to the median reproductive window. We simulated how varying AMR rates would affect future capuchin group sizes. RESULTS: Females exposed to more frequent AMR tended to produce fewer surviving offspring. We estimate the average lost infant requires approximately 33% additional energy intake for its mother and represents 10% of the average reproductive opportunity window available to females. Simulated populations remain viable at the observed rate of AMR occurrence but decrease in size at even slightly higher rates. DISCUSSION: While infanticide is adaptive for males, for females it affects lifetime reproductive success and imposes energetic and opportunity costs. Although capuchin populations have evolved with AMRs and infanticide, small increases in AMR frequency may lead to population decline/extinction. Infanticide likely plays a large role in population maintenance for capuchins.


Assuntos
Cebus capucinus , Infanticídio , Animais , Cebus , Feminino , Humanos , Masculino , Reprodução
3.
R Soc Open Sci ; 7(4): 200302, 2020 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-32431912

RESUMO

Extreme climate events can have important consequences for the dynamics of natural populations, and severe droughts are predicted to become more common and intense due to climate change. We analysed infant mortality in relation to drought in two primate species (white-faced capuchins, Cebus capucinus imitator, and Geoffroy's spider monkeys, Ateles geoffroyi) in a tropical dry forest in northwestern Costa Rica. Our survival analyses combine several rare and valuable long-term datasets, including long-term primate life-history, landscape-scale fruit abundance, food-tree mortality, and climate conditions. Infant capuchins showed a threshold mortality response to drought, with exceptionally high mortality during a period of intense drought, but not during periods of moderate water shortage. By contrast, spider monkey females stopped reproducing during severe drought, and the mortality of infant spider monkeys peaked later during a period of low fruit abundance and high food-tree mortality linked to the drought. These divergent patterns implicate differing physiology, behaviour or associated factors in shaping species-specific drought responses. Our findings link predictions about the Earth's changing climate to environmental influences on primate mortality risk and thereby improve our understanding of how the increasing severity and frequency of droughts will affect the dynamics and conservation of wild primates.

4.
Am J Phys Anthropol ; 170(2): 207-216, 2019 10.
Artigo em Inglês | MEDLINE | ID: mdl-31396949

RESUMO

OBJECTIVES: Invertebrates are important foods for many primates and provide valuable nutrients often unavailable from plant sources. We examine the diet of white-faced capuchins (Cebus capucinus imitator) to determine: (a) timing and types of invertebrate food consumption; (b) whether invertebrate consumption varies with availability of plant foods; and (c) how invertebrates contribute to energy and protein intake of females during different reproductive states. MATERIALS AND METHODS: We analyze 2 years of behavioral data from 25 adult female capuchins to determine which invertebrates are eaten. We describe annual and monthly invertebrate consumption patterns, and, employing circular statistics, analyze seasonal consumption of the four most important invertebrate groups eaten. We apply logistic regression analyses to tree density and fruit energy data to determine whether capuchin invertebrate foraging is related to fruit energy availability of their most commonly consumed fruits. We evaluate the nutritional contribution of invertebrates to energetic and protein requirements of females over time and across reproductive stages. RESULTS: Capuchins consumed invertebrates from 21 identifiable groups, but their diet was dominated by four orders: Lepidoptera, Orthoptera, Hemiptera, and Hymenoptera. All four orders were consumed in a significantly seasonal pattern, and reduced fruit energy availability was a significant predictor of increased invertebrate foraging. Capuchin females often required invertebrate energy intake to meet their overall monthly energetic needs, particularly while they were lactating, even though they appear to exceed their protein requirements every month. DISCUSSION: These results indicate that invertebrate consumption is critical for capuchin energetic needs, particularly during periods of reduced fruit availability and lactation.


Assuntos
Cebus capucinus , Dieta , Comportamento Alimentar/fisiologia , Insetos , Animais , Antropologia Física , Cebus capucinus/metabolismo , Cebus capucinus/fisiologia , Costa Rica , Feminino , Valor Nutritivo/fisiologia , Estações do Ano
5.
Am J Primatol ; 81(7): e23027, 2019 07.
Artigo em Inglês | MEDLINE | ID: mdl-31286542

RESUMO

Primates have long been used as indicator species for assessing overall ecosystem health. However, area-wide census methods are time consuming, costly, and not always feasible under many field conditions. Therefore, it is important to establish whether monitoring a subset of a population accurately reflects demographic changes occurring in the population at large. Over the past 35 years, we have conducted 15 area-wide censuses in Sector Santa Rosa, Costa Rica. These efforts have revealed important trends in population growth patterns of capuchin monkeys following the protection and subsequent regeneration of native forests. During this same period, we have also intensively studied a subset of the capuchin groups. Comparing these two datasets, we investigate whether the population structures of the closely monitored groups are reliable indicators of area-wide demographic patterns. We compare the overall group size and the individual age/sex class compositions of study groups and nonstudy groups (i.e., those contacted during area-wide censuses only). Our study groups contained more individuals overall with a larger proportion of infants, and there were indications that the proportion of adult and subadult males was lower. These differences can be ascribed either to sampling errors or real differences attributable to human presence and/or better habitat quality for the study groups. No other sex/age classes differed, and major demographic changes were simultaneously evident in both study and nonstudy groups. This study suggests that the Santa Rosa capuchin population is similarly impacted by large-scale ecological patterns observable within our study groups.


Assuntos
Cebus capucinus , Ecossistema , Fatores Etários , Animais , Costa Rica , Feminino , Florestas , Estudos Longitudinais , Masculino , Dinâmica Populacional/estatística & dados numéricos , Fatores Sexuais
6.
Am J Phys Anthropol ; 161(4): 591-602, 2016 12.
Artigo em Inglês | MEDLINE | ID: mdl-27492752

RESUMO

OBJECTIVES: Our goal is to investigate flower foraging by capuchin monkeys, a behavior rarely studied in wild primates. We ask what drives seasonal variation in florivory rates: flower quality and abundance or fluctuations in fruit and invertebrate abundances. We explore how capuchins affect the reproductive success of flower food species by quantifying the potential pollination rate. MATERIALS AND METHODS: We followed capuchin groups from dawn to dusk and recorded all flower foraging bouts. Flower food nutritional composition was compared to fruit and invertebrate foods. We recorded overall flower, fruit, and invertebrate abundances and compared the rate of flower foraging to these. We estimated the likelihood of pollination from the proportion of flower patch visits to each plant species that satisfied minimum behavioral requirements. RESULTS: Flower eating was highly seasonal, and was significantly negatively related to overall fruit and invertebrate abundance but not flower abundance. Although smaller than most fruits, flowers were nutritionally comparable to fruit foods by dry mass and contained higher average concentrations of protein. Capuchins are likely pollinators for Luehea speciosa; most foraging visits to this species occurred in a manner that makes outcrossing or geitonogamous pollination likely. DISCUSSION: Flowers are an important seasonal resource for capuchins. Flowers likely act as fallback foods during periods of reduced fruit and invertebrate abundance, and may exert evolutionary pressure disproportionate to their consumption. Capuchin florivory likely affects the reproductive success of some plants, potentially shaping forest structure. Our study illustrates the value of assessing the importance of rare foods in the primate diet.


Assuntos
Cebus/fisiologia , Comportamento Alimentar/fisiologia , Flores , Animais , Antropologia Física , Evolução Biológica , Costa Rica , Comportamento de Retorno ao Território Vital/fisiologia , Estações do Ano , Clima Tropical
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