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Kramer-Schadt, S.

Publications and source records attributed to Kramer-Schadt, S..

2 recordsLinked to original sources

Mosquito community composition shapes virus prevalence patterns along anthropogenic disturbance gradients

Previously unknown pathogens often emerge from primary ecosystems, but there is little knowledge on the mechanism behind. Most studies analyzing the influence of land-use change on pathogen emergence focus on a single host-pathogen system and often observe contrary effects. We studied virus diversity and prevalence patterns in natural and disturbed ecosystems using a multi-host and multi-taxa approach. We detected 331 viral sequences pertaining to 49 viruses of ten RNA-virus families. Highest host and virus diversity was observed in pristine and intermediately disturbed habitats. The majority of the viruses was detected with low prevalence. However, nine viruses were found frequently of which five viruses increased in prevalence from pristine to disturbed habitats, in congruence with the dilution effect hypothesis. Interestingly, the observed increased prevalence of these five viruses in disturbed habitats was not caused by higher host infection rates but by increased host abundance, an effect tentatively named abundance effect. Impact statementOur data show that ecosystem disturbance can lead to a turnover in host community composition and that more individuals of a single species is a key driver of virus emergence.

ecology

Keeping the kids at home can limit the persistence of contagious pathogens in social animals

In social species where offspring are reared together in communal burrows or similar structures, young animals typically do not engage in between-group contact during their development - a behavioural trait we call offspring with restricted between-group contact (ORC). The impact of this trait on the persistence of contagious pathogens that generate lifelong immunity in their hosts is currently unclear. We hypothesize that in populations with ORC, the formation, in groups, of a protective barrier of only recovered adults, prevents the transmission of this type of pathogens to the new susceptible hosts (i.e. young animals), thereby increasing the probability of epidemic fade-out. We implement a spatially implicit individual-based Susceptible-Infected-Recovered (SIR) model for a large range of host and pathogen traits and show that the epidemic fade-out probability is consistently higher in populations with ORC, especially when disease spread is fast (high basic reproduction number R0). We also show that ORC can counteract the cost of group-living in terms of disease risk to a greater extent than variation in other traits. We discuss our findings in relation to herd immunity and outline how they could be used to implement efficient management measures such as vaccinations.

ecology