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Network centrality and seasonality interact to predict lice load in a social primate

机译:网络中心和季节性相互影响以预测社交灵长类中的虱子负荷

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摘要

Lice are socially-transmitted ectoparasites. Transmission depends upon their host's degree of contact with conspecifics. While grooming facilitates ectoparasite transmission via body contact, it also constrains their spread through parasite removal. We investigated relations between parasite burden and sociality in female Japanese macaques following two opposing predictions: i) central females in contact/grooming networks harbour more lice, related to their numerous contacts; ii) central females harbour fewer lice, related to receiving more grooming. We estimated lice load non-invasively using the conspicuous louse egg-picking behaviour performed by macaques during grooming. We tested for covariation in several centrality measures and lice load, controlling for season, female reproductive state and dominance rank. Results show that the interaction between degree centrality (number of partners) and seasonality predicted lice load: females interacting with more partners had fewer lice than those interacting with fewer partners in winter and summer, whereas there was no relationship between lice load and centrality in spring and fall. This is counter to the prediction that increased contact leads to greater louse burden but fits the prediction that social grooming limits louse burden. Interactions between environmental seasonality and both parasite and host biology appeared to mediate the role of social processes in louse burden.
机译:虱是社会传播的外寄生虫。传播取决于寄主与特定物种的接触程度。梳理虽然可以通过身体接触促进外寄生虫传播,但也可以通过去除寄生虫来限制它们的扩散。我们根据两个相反的预测研究了日本猕猴中寄生虫负担与社交之间的关系:i)接触/修饰网络中的中央雌性携带更多的虱子,这与她们的大量接触有关; ii)与接受更多梳理有关的中央雌性虱子较少。我们使用修饰过程中猕猴的显眼虱卵采摘行为来非侵入性地估计虱子的负荷。我们测试了几种集中度指标和虱子负荷的协方差,控制季节,女性生殖状态和优势等级。结果表明,度中心性(伴侣数量)和季节性之间的相互作用预测了虱子的负载:与更多伴侣互动的雌性的虱子数量少于冬季和夏季与伴侣较少的伙伴的虱子数量,而春季的虱子负载与中心性之间没有关系和秋天。这与增加的联系会导致更大的虱子负担的预测相反,但是与社交修饰限制虱子负担的预测相符。环境季节性与寄生虫和宿主生物学之间的相互作用似乎介导了社会过程在虱子负担中的作用。

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