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Published on: April 2, 2012
Early-life infection dynamics and genomic diversity of adenoviruses in a wild primate (Theropithecus gelada)
Maya J Saroff1, Abebaw Azanaw Haile2, Alice Baniel3
1School of Life Sciences, Arizona State University, Tempe, AZ, USA.
Insights
Adenoviruses (AdVs) in geladas show different early-life dynamics than in humans. Simian adenoviruses (SAdVs) infect infants before social play begins, with risk decreasing over their lifespan.
Area of Science:
- Primate Virology
- Immunology
- Evolutionary Biology
Background:
- Human adenoviruses (AdVs) cause respiratory illnesses, especially in children and immunocompromised individuals.
- Transmission occurs in close-contact settings via fecal-oral and airborne routes.
- Adenovirus dynamics in early life are not well understood in non-human primates.
Purpose of the Study:
- To investigate simian adenovirus (SAdV) dynamics across the lifespan of geladas (Theropithecus gelada).
- To identify drivers of SAdV presence and richness in a wild primate population.
- To compare early-life AdV infection patterns in geladas with those observed in humans.
Main Methods:
- Longitudinal data collection from a gelada population in Ethiopia.
- Identification of coding-complete AdV genomes from fecal samples.
- Assessment of behavioral and seasonal factors influencing SAdV infection.
- Analysis of SAdV presence and richness across different age groups.
Main Results:
- Ten coding-complete SAdV genomes were identified, including four new species.
- SAdV infection likelihood was highest in infants under 6 months, contrary to expectations.
- Risk and richness of SAdV declined with age, with few adult infections.
- Higher minimum temperatures showed a weak negative association with SAdV richness.
Conclusions:
- Unlike humans, SAdV exposure in geladas occurs before the onset of social play, likely due to close proximity.
- Early-life SAdV infections may confer lifelong immunity in geladas, similar to human AdVs.
- SAdV prevalence remains low in adulthood across both species.
Abstract:
In humans, adenoviruses (AdVs) are frequently associated with respiratory illnesses, posing risks to children with developing immune systems and immunocompromised individuals. Outbreaks and epidemics are generally centred in close-contact settings, such as childcare facilities, and transmission occurs through faecal-oral and airborne pathways. AdVs have coevolved across the primate lineage, but very little is known about whether the early-life dynamics in non-human primates mirror those in humans. Here, we leverage longitudinal data collected on a population of geladas (Theropithecus gelada) in the Simien Mountains National Park, Ethiopia, to evaluate AdV dynamics across the gelada lifespan. We identified ten coding-complete AdV genomes representing seven unique simian adenovirus (SAdV) types, four of which are adequately different from the known ones to establish new species. We assessed behavioural and seasonal drivers of SAdV presence and richness across repeated faecal samples from known individuals. Contrary to our expectation that the highest risk would occur after the initiation of play behaviour in infancy (~6 months of age), when peer-to-peer transmission risk is expected to increase, SAdV likelihood was highest in infants under 6 months of age. Risk and richness declined over the lifespan, with very few adults infected, and higher minimum temperatures were weakly but significantly negatively associated with richness. Our results suggest that, unlike in humans, SAdV exposure occurs prior to the initiation of close-contact play behaviours and likely results from the close spatial proximity of conspecifics throughout the dependent period. Like AdVs in humans, SAdVs in geladas maintain low levels in adulthood, with early infections potentially conferring life-long immunity.
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