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Transmission dynamics of Borrelia burgdorferi s.l. in a bird tick community

机译:伯氏疏螺旋体的传播动力学。在鸟类壁虱社区

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We examined the Borrelia burgdorferi sensu lato circulation in a tick community consisting of three species (Ixodes ricinus, I.frontalis, I.arboricola) with contrasting ecologies, but sharing two European songbird hosts (Parus major and Cyanistes caeruleus). Parus major had the highest infestation rates, primarily due to larger numbers of I.ricinus, and probably because of their greater low-level foraging. The prevalence of Borrelia in feeding ticks did not significantly differ between the two bird species; however, P.major in particular hosted large numbers of Borrelia-infected I.frontalis and I.ricinus larvae, suggesting that the species facilitates Borrelia transmission. The low but significant numbers of Borrelia in questing I.arboricola ticks also provides the first field data to suggest that it is competent in maintaining Borrelia. Aside from Borreliagarinii, a high number of less dominant genospecies was observed, including several mammalian genospecies and the first record of Borrelia turdi for North-Western Europe. Borrelia burgdorferi sensu lato IGS genotypes were shared between I.arboricola and I.ricinus and between I.frontalis and I.ricinus, but not between I.arboricola and I.frontalis. This suggests that the Borrelia spp. transmission cycles can be maintained by bird-specific ticks, and bridged by I.ricinus to other hosts outside bird-tick cycles.
机译:我们研究了由三个物种(蓖麻(Ixodes ricinus),额叶(I.frontalis),I.arboricola)组成的壁虱群落中的伯氏疏螺旋体(Borrelia burgdorferi sensu lato)环流,它们具有不同的生态学,但共有两个欧洲鸣禽宿主(Parus major和Cyanistes caeruleus)。大型对虾的侵扰率最高,这主要是由于大黄I的数量增加,也可能是因为它们的低水平觅食量更大。两种鸟类之间的摄食Bor中疏螺旋体的患病率没有显着差异。然而,主要的P.major寄有大量感染了Borrelia的I.frontalis和I.ricinus幼虫,这表明该物种促进了Borrelia的传播。极少量的博雷利亚(Borrelia)在搜寻I.arboricola壁虱时也提供了第一批田间数据,表明它有能力维持博雷利亚(Borrelia)。除了博雷利亚氏菌外,还观察到大量的优势种群较少的遗传物种,包括几种哺乳动物的遗传物种,以及西北北欧的首个鲍氏疏螺旋体记录。伯氏疏螺旋体的IGS基因型在I.arboricola和I.ricinus之间,I.frontalis和I.ricinus之间共享,但在I.arboricola和I.frontalis之间不共享。这表明了疏螺旋体。传播周期可以通过鸟类特有的tick来维持,并由艾里克努斯桥接到鸟类cycles周期之外的其他寄主。

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